ORF_ID | e_value | Gene_name | EC_number | CAZy | COGs | Description |
---|---|---|---|---|---|---|
JCGKACBB_00012 | 5.5e-08 | |||||
JCGKACBB_00022 | 1.3e-90 | traP | 1.14.99.57, 6.2.1.3 | S | enzyme involved in biosynthesis of extracellular polysaccharides | |
JCGKACBB_00023 | 2.2e-139 | yhfI | S | Metallo-beta-lactamase superfamily | ||
JCGKACBB_00024 | 2.7e-67 | spxA | 1.20.4.1 | K | Interferes with activator-stimulated transcription by interaction with the RNA polymerase alpha-CTD. May function to globally reduce transcription of genes involved in growth- and development-promoting processes and to increase transcription of genes involved in thiol homeostasis, during periods of extreme stress | |
JCGKACBB_00025 | 2.2e-131 | mecA | NOT | Enables the recognition and targeting of unfolded and aggregated proteins to the ClpC protease or to other proteins involved in proteolysis | ||
JCGKACBB_00026 | 6.4e-204 | coiA | 3.6.4.12 | S | Competence protein | |
JCGKACBB_00027 | 0.0 | pepF | E | oligoendopeptidase F | ||
JCGKACBB_00028 | 3.6e-114 | yjbH | Q | Thioredoxin | ||
JCGKACBB_00029 | 2.7e-120 | yjbM | 2.7.6.5 | S | RelA SpoT domain protein | |
JCGKACBB_00030 | 4.7e-151 | nadK | 2.7.1.23 | F | Involved in the regulation of the intracellular balance of NAD and NADP, and is a key enzyme in the biosynthesis of NADP. Catalyzes specifically the phosphorylation on 2'-hydroxyl of the adenosine moiety of NAD to yield NADP | |
JCGKACBB_00031 | 2.6e-174 | rluD | 5.4.99.23, 5.4.99.28, 5.4.99.29 | G | Responsible for synthesis of pseudouridine from uracil | |
JCGKACBB_00032 | 1.1e-115 | cutC | P | Participates in the control of copper homeostasis | ||
JCGKACBB_00033 | 1.3e-193 | pgl | 3.1.1.31 | G | Lactonase, 7-bladed beta-propeller | |
JCGKACBB_00034 | 3.9e-57 | srlB | 2.7.1.198 | G | PTS system glucitol/sorbitol-specific IIA component | |
JCGKACBB_00035 | 1.6e-205 | XK27_05220 | S | AI-2E family transporter | ||
JCGKACBB_00036 | 1.7e-41 | rpsN | J | Binds 16S rRNA, required for the assembly of 30S particles and may also be responsible for determining the conformation of the 16S rRNA at the A site | ||
JCGKACBB_00037 | 1.1e-161 | rrmA | 2.1.1.187 | H | Methyltransferase | |
JCGKACBB_00039 | 4.8e-209 | brnQ | U | Component of the transport system for branched-chain amino acids | ||
JCGKACBB_00040 | 2.4e-113 | ywnB | S | NAD(P)H-binding | ||
JCGKACBB_00041 | 1.4e-95 | trmL | 2.1.1.207 | J | Belongs to the class IV-like SAM-binding methyltransferase superfamily. RNA methyltransferase TrmH family. TrmL subfamily | |
JCGKACBB_00042 | 0.0 | ftsK | D | Belongs to the FtsK SpoIIIE SftA family | ||
JCGKACBB_00043 | 1.6e-174 | corA | P | CorA-like Mg2+ transporter protein | ||
JCGKACBB_00044 | 1.9e-62 | S | Protein of unknown function (DUF3397) | |||
JCGKACBB_00045 | 1.9e-77 | mraZ | K | Belongs to the MraZ family | ||
JCGKACBB_00046 | 1.6e-174 | rsmH | 2.1.1.199 | J | Specifically methylates the N4 position of cytidine in position 1402 (C1402) of 16S rRNA | |
JCGKACBB_00047 | 7.5e-54 | ftsL | D | Cell division protein FtsL | ||
JCGKACBB_00048 | 0.0 | ftsI | 3.4.16.4 | M | Penicillin-binding Protein | |
JCGKACBB_00049 | 8.3e-179 | mraY | 2.7.8.13 | M | First step of the lipid cycle reactions in the biosynthesis of the cell wall peptidoglycan | |
JCGKACBB_00050 | 1.2e-260 | murD | 6.3.2.9 | M | Cell wall formation. Catalyzes the addition of glutamate to the nucleotide precursor UDP-N-acetylmuramoyl-L-alanine (UMA) | |
JCGKACBB_00051 | 2.2e-196 | murG | 2.4.1.227, 6.3.2.8 | GT28 | M | Cell wall formation. Catalyzes the transfer of a GlcNAc subunit on undecaprenyl-pyrophosphoryl-MurNAc-pentapeptide (lipid intermediate I) to form undecaprenyl-pyrophosphoryl-MurNAc- (pentapeptide)GlcNAc (lipid intermediate II) |
JCGKACBB_00052 | 5.8e-163 | divIB | D | Cell division protein that may be involved in stabilizing or promoting the assembly of the division complex | ||
JCGKACBB_00053 | 5.5e-245 | ftsA | D | Cell division protein that is involved in the assembly of the Z ring. May serve as a membrane anchor for the Z ring | ||
JCGKACBB_00054 | 1.4e-229 | ftsZ | D | Essential cell division protein that forms a contractile ring structure (Z ring) at the future cell division site. The regulation of the ring assembly controls the timing and the location of cell division. One of the functions of the FtsZ ring is to recruit other cell division proteins to the septum to produce a new cell wall between the dividing cells. Binds GTP and shows GTPase activity | ||
JCGKACBB_00055 | 3.3e-71 | sepF | D | Cell division protein that is part of the divisome complex and is recruited early to the Z-ring. Probably stimulates Z-ring formation, perhaps through the cross-linking of FtsZ protofilaments. Its function overlaps with FtsA | ||
JCGKACBB_00056 | 1.2e-36 | yggT | S | YGGT family | ||
JCGKACBB_00057 | 3.4e-146 | ylmH | S | S4 domain protein | ||
JCGKACBB_00058 | 1.2e-86 | divIVA | D | DivIVA domain protein | ||
JCGKACBB_00059 | 0.0 | ileS | 6.1.1.5 | J | amino acids such as valine, to avoid such errors it has two additional distinct tRNA(Ile)-dependent editing activities. One activity is designated as 'pretransfer' editing and involves the hydrolysis of activated Val-AMP. The other activity is designated 'posttransfer' editing and involves deacylation of mischarged Val-tRNA(Ile) | |
JCGKACBB_00060 | 1.1e-189 | dapF | 5.1.1.7 | E | Catalyzes the stereoinversion of LL-2,6- diaminoheptanedioate (L,L-DAP) to meso-diaminoheptanedioate (meso- DAP), a precursor of L-lysine and an essential component of the bacterial peptidoglycan | |
JCGKACBB_00061 | 1.9e-95 | nudF | 3.6.1.13 | L | ADP-ribose pyrophosphatase | |
JCGKACBB_00062 | 4.6e-28 | |||||
JCGKACBB_00063 | 1.8e-122 | mtnN | 3.2.2.9 | E | Catalyzes the irreversible cleavage of the glycosidic bond in both 5'-methylthioadenosine (MTA) and S- adenosylhomocysteine (SAH AdoHcy) to adenine and the corresponding thioribose, 5'-methylthioribose and S-ribosylhomocysteine, respectively | |
JCGKACBB_00064 | 1.4e-215 | iscS | 2.8.1.7 | E | Aminotransferase class V | |
JCGKACBB_00065 | 4.9e-57 | XK27_04120 | S | Putative amino acid metabolism | ||
JCGKACBB_00066 | 9e-225 | mnmA | 2.8.1.13 | J | Catalyzes the 2-thiolation of uridine at the wobble position (U34) of tRNA, leading to the formation of s(2)U34 | |
JCGKACBB_00067 | 1.3e-241 | ktrB | P | Potassium uptake protein | ||
JCGKACBB_00068 | 2.6e-115 | ktrA | P | domain protein | ||
JCGKACBB_00069 | 2.3e-120 | N | WxL domain surface cell wall-binding | |||
JCGKACBB_00070 | 7e-192 | S | Bacterial protein of unknown function (DUF916) | |||
JCGKACBB_00071 | 2.7e-266 | N | domain, Protein | |||
JCGKACBB_00072 | 5.5e-121 | pgm6 | 5.4.2.11, 5.4.2.12 | G | phosphoglycerate mutase | |
JCGKACBB_00073 | 1.6e-120 | S | Repeat protein | |||
JCGKACBB_00074 | 0.0 | recD2 | 3.1.11.5 | L | DNA-dependent ATPase and ATP-dependent 5'-3' DNA helicase. Has no activity on blunt DNA or DNA with 3'-overhangs, requires at least 10 bases of 5'-ssDNA for helicase activity | |
JCGKACBB_00075 | 4.4e-172 | prs | 2.7.6.1 | F | Involved in the biosynthesis of the central metabolite phospho-alpha-D-ribosyl-1-pyrophosphate (PRPP) via the transfer of pyrophosphoryl group from ATP to 1-hydroxyl of ribose-5-phosphate (Rib-5-P) | |
JCGKACBB_00076 | 4.1e-108 | mltD | CBM50 | M | NlpC P60 family protein | |
JCGKACBB_00077 | 1.7e-28 | |||||
JCGKACBB_00078 | 2.2e-187 | ytlR | 2.7.1.91 | I | Diacylglycerol kinase catalytic domain | |
JCGKACBB_00079 | 0.0 | rnjA | J | An RNase that has 5'-3' exonuclease and possibly endonuclease activity. Involved in maturation of rRNA and in some organisms also mRNA maturation and or decay | ||
JCGKACBB_00080 | 3.1e-33 | ykzG | S | Belongs to the UPF0356 family | ||
JCGKACBB_00081 | 1.6e-85 | |||||
JCGKACBB_00082 | 3.1e-101 | def | 3.5.1.31, 3.5.1.88 | J | Removes the formyl group from the N-terminal Met of newly synthesized proteins. Requires at least a dipeptide for an efficient rate of reaction. N-terminal L-methionine is a prerequisite for activity but the enzyme has broad specificity at other positions | |
JCGKACBB_00083 | 1.6e-210 | pdhA | 1.2.4.1, 1.2.4.4 | C | Dehydrogenase E1 component | |
JCGKACBB_00084 | 8.4e-179 | pdhB | 1.2.4.1 | C | Transketolase, C-terminal domain protein | |
JCGKACBB_00085 | 1.8e-208 | pdhC | 2.3.1.12 | C | Dihydrolipoamide acetyltransferase component of pyruvate dehydrogenase complex | |
JCGKACBB_00086 | 1.2e-266 | lpdA | 1.8.1.4 | C | Dehydrogenase | |
JCGKACBB_00087 | 4.7e-163 | 1.1.1.27 | C | L-malate dehydrogenase activity | ||
JCGKACBB_00088 | 3.3e-46 | yktA | S | Belongs to the UPF0223 family | ||
JCGKACBB_00089 | 6.3e-137 | suhB | 3.1.3.25 | G | Belongs to the inositol monophosphatase superfamily | |
JCGKACBB_00090 | 0.0 | typA | T | GTP-binding protein TypA | ||
JCGKACBB_00091 | 2.7e-196 | |||||
JCGKACBB_00092 | 0.0 | ltaS | 2.7.8.20 | M | Phosphoglycerol transferase and related proteins, alkaline phosphatase superfamily | |
JCGKACBB_00093 | 1.1e-34 | ykuJ | S | Protein of unknown function (DUF1797) | ||
JCGKACBB_00094 | 7.7e-227 | patA | 2.6.1.1 | E | Aminotransferase | |
JCGKACBB_00095 | 1.6e-227 | dacA | 3.4.16.4 | M | Belongs to the peptidase S11 family | |
JCGKACBB_00096 | 7.4e-189 | mprF | I | Catalyzes the transfer of a lysyl group from L-lysyl- tRNA(Lys) to membrane-bound phosphatidylglycerol (PG), which produces lysylphosphatidylglycerol (LPG), a major component of the bacterial membrane with a positive net charge. LPG synthesis contributes to bacterial virulence as it is involved in the resistance mechanism against cationic antimicrobial peptides (CAMP) produces by the host's immune system (defensins, cathelicidins) and by the competing microorganisms | ||
JCGKACBB_00097 | 1.5e-199 | cpoA | GT4 | M | Glycosyltransferase, group 1 family protein | |
JCGKACBB_00098 | 1.4e-223 | mgs | 2.4.1.337 | GT4 | M | Glycosyltransferase, group 1 family protein |
JCGKACBB_00099 | 0.0 | ptsI | 2.7.3.9 | G | General (non sugar-specific) component of the phosphoenolpyruvate-dependent sugar phosphotransferase system (sugar PTS). This major carbohydrate active-transport system catalyzes the phosphorylation of incoming sugar substrates concomitantly with their translocation across the cell membrane. Enzyme I transfers the phosphoryl group from phosphoenolpyruvate (PEP) to the phosphoryl carrier protein (HPr) | |
JCGKACBB_00100 | 2.7e-39 | ptsH | G | phosphocarrier protein HPR | ||
JCGKACBB_00101 | 6.5e-30 | |||||
JCGKACBB_00102 | 0.0 | clpE | O | Belongs to the ClpA ClpB family | ||
JCGKACBB_00103 | 8.2e-102 | L | Integrase | |||
JCGKACBB_00104 | 1e-63 | K | Winged helix DNA-binding domain | |||
JCGKACBB_00105 | 3.4e-180 | oppF | P | Belongs to the ABC transporter superfamily | ||
JCGKACBB_00106 | 9.2e-203 | oppD | P | Belongs to the ABC transporter superfamily | ||
JCGKACBB_00107 | 1.1e-189 | oppC | EP | ABC-type dipeptide oligopeptide nickel transport systems, permease components | ||
JCGKACBB_00108 | 2.3e-165 | oppB | P | ABC-type dipeptide oligopeptide nickel transport systems, permease components | ||
JCGKACBB_00109 | 1.5e-308 | oppA | E | ABC transporter, substratebinding protein | ||
JCGKACBB_00110 | 3.2e-57 | ywjH | S | Protein of unknown function (DUF1634) | ||
JCGKACBB_00111 | 5.5e-126 | yxaA | S | membrane transporter protein | ||
JCGKACBB_00112 | 7.1e-161 | lysR5 | K | LysR substrate binding domain | ||
JCGKACBB_00113 | 5.5e-197 | M | MucBP domain | |||
JCGKACBB_00114 | 3.8e-273 | |||||
JCGKACBB_00115 | 6.9e-308 | prfC | J | Increases the formation of ribosomal termination complexes and stimulates activities of RF-1 and RF-2. It binds guanine nucleotides and has strong preference for UGA stop codons. It may interact directly with the ribosome. The stimulation of RF- 1 and RF-2 is significantly reduced by GTP and GDP, but not by GMP | ||
JCGKACBB_00116 | 3.4e-255 | gor | 1.8.1.7 | C | Glutathione reductase | |
JCGKACBB_00117 | 2.1e-60 | gnd | 1.1.1.343, 1.1.1.44 | G | Dehydrogenase | |
JCGKACBB_00118 | 5.7e-91 | gnd | 1.1.1.343, 1.1.1.44 | G | Dehydrogenase | |
JCGKACBB_00119 | 1.4e-239 | gntK | 2.7.1.12, 2.7.1.16, 2.7.1.17, 2.7.1.5 | G | Belongs to the FGGY kinase family | |
JCGKACBB_00120 | 9.5e-213 | gntP | EG | Gluconate | ||
JCGKACBB_00121 | 3.7e-72 | tagD | 2.7.7.15, 2.7.7.39 | IM | Glycerol-3-phosphate cytidylyltransferase | |
JCGKACBB_00122 | 9.3e-188 | yueF | S | AI-2E family transporter | ||
JCGKACBB_00123 | 2.1e-140 | ldh | 1.1.1.27 | C | Belongs to the LDH MDH superfamily | |
JCGKACBB_00124 | 1.1e-37 | S | Antitoxin component of a toxin-antitoxin (TA) module | |||
JCGKACBB_00125 | 1e-47 | K | sequence-specific DNA binding | |||
JCGKACBB_00126 | 2.5e-133 | cwlO | M | NlpC/P60 family | ||
JCGKACBB_00127 | 4.1e-106 | ygaC | J | Belongs to the UPF0374 family | ||
JCGKACBB_00128 | 2.2e-140 | recX | 2.4.1.337 | GT4 | S | Regulatory protein RecX |
JCGKACBB_00129 | 1e-125 | |||||
JCGKACBB_00130 | 1.7e-99 | K | DNA-templated transcription, initiation | |||
JCGKACBB_00131 | 1e-27 | |||||
JCGKACBB_00132 | 7e-30 | |||||
JCGKACBB_00133 | 7.3e-33 | S | Protein of unknown function (DUF2922) | |||
JCGKACBB_00134 | 3.8e-53 | |||||
JCGKACBB_00135 | 3.2e-121 | rfbP | M | Bacterial sugar transferase | ||
JCGKACBB_00136 | 8.3e-260 | rfbX | S | Membrane protein involved in the export of O-antigen and teichoic acid | ||
JCGKACBB_00137 | 2.1e-73 | K | helix_turn_helix multiple antibiotic resistance protein | |||
JCGKACBB_00138 | 0.0 | M | Forms passive diffusion pores that allow small molecular weight hydrophilic materials across the outer membrane | |||
JCGKACBB_00139 | 3.7e-108 | K | helix_turn_helix, arabinose operon control protein | |||
JCGKACBB_00140 | 1.5e-146 | cps1D | M | Domain of unknown function (DUF4422) | ||
JCGKACBB_00141 | 2.8e-199 | cps3I | G | Acyltransferase family | ||
JCGKACBB_00142 | 7.8e-205 | cps3H | ||||
JCGKACBB_00143 | 3.1e-162 | cps3F | ||||
JCGKACBB_00144 | 5.3e-110 | cps3E | ||||
JCGKACBB_00145 | 5e-196 | cps3D | ||||
JCGKACBB_00146 | 3.5e-221 | glf | 5.4.99.9 | M | UDP-galactopyranose mutase | |
JCGKACBB_00147 | 1.3e-176 | cps3B | S | Glycosyltransferase like family 2 | ||
JCGKACBB_00148 | 4.3e-169 | cps3A | S | Glycosyltransferase like family 2 | ||
JCGKACBB_00149 | 7.2e-28 | S | Barstar (barnase inhibitor) | |||
JCGKACBB_00150 | 5.5e-55 | S | Immunity protein 63 | |||
JCGKACBB_00152 | 2.2e-120 | |||||
JCGKACBB_00153 | 1.9e-15 | |||||
JCGKACBB_00154 | 4.1e-42 | ankB | S | ankyrin repeats | ||
JCGKACBB_00155 | 5.7e-17 | |||||
JCGKACBB_00156 | 2.2e-137 | L | Transposase and inactivated derivatives, IS30 family | |||
JCGKACBB_00157 | 1.5e-112 | |||||
JCGKACBB_00158 | 2e-134 | |||||
JCGKACBB_00159 | 1.1e-30 | |||||
JCGKACBB_00160 | 1.4e-35 | |||||
JCGKACBB_00161 | 8e-120 | |||||
JCGKACBB_00163 | 2.4e-43 | |||||
JCGKACBB_00164 | 4.7e-76 | M | self proteolysis | |||
JCGKACBB_00165 | 1.7e-113 | M | domain protein | |||
JCGKACBB_00166 | 1.3e-20 | relB | L | bacterial-type proximal promoter sequence-specific DNA binding | ||
JCGKACBB_00167 | 3.2e-83 | cps2J | S | Polysaccharide biosynthesis protein | ||
JCGKACBB_00168 | 9.9e-48 | epsI | GM | Exopolysaccharide biosynthesis protein | ||
JCGKACBB_00169 | 5.8e-132 | cps4I | M | Glycosyltransferase like family 2 | ||
JCGKACBB_00170 | 9e-173 | |||||
JCGKACBB_00171 | 8.7e-126 | cps4G | M | Glycosyltransferase Family 4 | ||
JCGKACBB_00172 | 1.7e-132 | cps4F | 2.4.1.306 | GT4 | M | Glycosyl transferases group 1 |
JCGKACBB_00173 | 2.4e-124 | tuaA | M | Bacterial sugar transferase | ||
JCGKACBB_00174 | 3.8e-176 | cps2D | 5.1.3.2 | M | RmlD substrate binding domain | |
JCGKACBB_00175 | 2e-143 | ywqE | 3.1.3.48 | GM | PHP domain protein | |
JCGKACBB_00176 | 7.3e-127 | ywqD | 2.7.10.1 | D | Capsular exopolysaccharide family | |
JCGKACBB_00177 | 9.7e-130 | epsB | M | biosynthesis protein | ||
JCGKACBB_00178 | 3.3e-101 | L | Integrase | |||
JCGKACBB_00179 | 4e-84 | rfbB | 4.2.1.46 | M | Belongs to the NAD(P)-dependent epimerase dehydratase family. dTDP-glucose dehydratase subfamily | |
JCGKACBB_00180 | 3.6e-71 | rfbB | 4.2.1.46 | M | Belongs to the NAD(P)-dependent epimerase dehydratase family. dTDP-glucose dehydratase subfamily | |
JCGKACBB_00181 | 1.5e-100 | M | Parallel beta-helix repeats | |||
JCGKACBB_00182 | 2.4e-63 | tagD | 2.7.7.15, 2.7.7.39 | IM | Glycerol-3-phosphate cytidylyltransferase | |
JCGKACBB_00183 | 2.6e-173 | rfbX | S | Membrane protein involved in the export of O-antigen and teichoic acid | ||
JCGKACBB_00184 | 7.9e-59 | 1.1.1.133 | S | Glycosyltransferase like family 2 | ||
JCGKACBB_00185 | 5.6e-54 | tagB | 2.7.8.12 | M | CDP-Glycerol:Poly(glycerophosphate) glycerophosphotransferase | |
JCGKACBB_00186 | 8.2e-95 | waaB | GT4 | M | Glycosyl transferases group 1 | |
JCGKACBB_00187 | 6e-79 | cps1D | M | Domain of unknown function (DUF4422) | ||
JCGKACBB_00188 | 1.6e-23 | |||||
JCGKACBB_00189 | 3e-10 | pbpX2 | V | Beta-lactamase | ||
JCGKACBB_00190 | 1.5e-08 | ywqD | 2.7.10.1 | D | Capsular exopolysaccharide family | |
JCGKACBB_00191 | 5.4e-17 | wcoI | 2.7.10.1, 2.7.10.2 | M | biosynthesis protein | |
JCGKACBB_00192 | 7.6e-216 | glf | 5.4.99.9 | M | UDP-galactopyranose mutase | |
JCGKACBB_00193 | 9.7e-132 | glpF | U | Belongs to the MIP aquaporin (TC 1.A.8) family | ||
JCGKACBB_00194 | 3.3e-156 | yihY | S | Belongs to the UPF0761 family | ||
JCGKACBB_00195 | 3.4e-208 | mnaA | 5.1.3.14 | G | Belongs to the UDP-N-acetylglucosamine 2-epimerase family | |
JCGKACBB_00196 | 3.4e-85 | pbpX1 | V | Beta-lactamase | ||
JCGKACBB_00197 | 1.4e-122 | pbpX1 | V | Beta-lactamase | ||
JCGKACBB_00198 | 9.9e-255 | gdhA | 1.4.1.4 | E | Belongs to the Glu Leu Phe Val dehydrogenases family | |
JCGKACBB_00199 | 1.4e-106 | |||||
JCGKACBB_00200 | 1.3e-73 | |||||
JCGKACBB_00202 | 6.8e-164 | S | Alpha/beta hydrolase of unknown function (DUF915) | |||
JCGKACBB_00203 | 4.6e-241 | pts14C | G | The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active - transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane | ||
JCGKACBB_00204 | 2.3e-75 | T | Universal stress protein family | |||
JCGKACBB_00206 | 8.4e-238 | yfmL | 3.6.4.13 | L | DEAD DEAH box helicase | |
JCGKACBB_00207 | 3.2e-189 | mocA | S | Oxidoreductase | ||
JCGKACBB_00208 | 7.9e-31 | cspA | K | 'Cold-shock' DNA-binding domain | ||
JCGKACBB_00209 | 1.1e-62 | S | Domain of unknown function (DUF4828) | |||
JCGKACBB_00210 | 1.2e-143 | lys | M | Glycosyl hydrolases family 25 | ||
JCGKACBB_00211 | 2.3e-151 | gntR | K | rpiR family | ||
JCGKACBB_00212 | 6.1e-168 | S | Alpha/beta hydrolase of unknown function (DUF915) | |||
JCGKACBB_00213 | 4.4e-239 | pts13C | G | The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active - transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane | ||
JCGKACBB_00214 | 0.0 | yfgQ | P | E1-E2 ATPase | ||
JCGKACBB_00215 | 7.8e-100 | yobS | K | Bacterial regulatory proteins, tetR family | ||
JCGKACBB_00216 | 1.4e-259 | rumA | 2.1.1.190 | J | Belongs to the class I-like SAM-binding methyltransferase superfamily. RNA M5U methyltransferase family | |
JCGKACBB_00217 | 1e-190 | yegS | 2.7.1.107 | G | Lipid kinase | |
JCGKACBB_00218 | 7.7e-274 | gatB | 6.1.1.12, 6.3.5.6, 6.3.5.7 | J | Allows the formation of correctly charged Asn-tRNA(Asn) or Gln-tRNA(Gln) through the transamidation of misacylated Asp- tRNA(Asn) or Glu-tRNA(Gln) in organisms which lack either or both of asparaginyl-tRNA or glutaminyl-tRNA synthetases. The reaction takes place in the presence of glutamine and ATP through an activated phospho-Asp-tRNA(Asn) or phospho-Glu-tRNA(Gln) | |
JCGKACBB_00219 | 9.4e-275 | gatA | 6.3.5.6, 6.3.5.7 | J | Allows the formation of correctly charged Gln-tRNA(Gln) through the transamidation of misacylated Glu-tRNA(Gln) in organisms which lack glutaminyl-tRNA synthetase. The reaction takes place in the presence of glutamine and ATP through an activated gamma-phospho-Glu-tRNA(Gln) | |
JCGKACBB_00220 | 3.2e-50 | gatC | 6.3.5.6, 6.3.5.7 | J | Allows the formation of correctly charged Asn-tRNA(Asn) or Gln-tRNA(Gln) through the transamidation of misacylated Asp- tRNA(Asn) or Glu-tRNA(Gln) in organisms which lack either or both of asparaginyl-tRNA or glutaminyl-tRNA synthetases. The reaction takes place in the presence of glutamine and ATP through an activated phospho-Asp-tRNA(Asn) or phospho-Glu-tRNA(Gln) | |
JCGKACBB_00221 | 2.6e-198 | camS | S | sex pheromone | ||
JCGKACBB_00222 | 0.0 | ligA | 6.5.1.2 | L | DNA ligase that catalyzes the formation of phosphodiester linkages between 5'-phosphoryl and 3'-hydroxyl groups in double-stranded DNA using NAD as a coenzyme and as the energy source for the reaction. It is essential for DNA replication and repair of damaged DNA | |
JCGKACBB_00223 | 0.0 | pcrA | 3.6.4.12 | L | ATP-dependent DNA helicase | |
JCGKACBB_00224 | 1.3e-218 | purK2 | 6.3.4.18 | F | Involved in the de novo purine biosynthesis. Catalyzes the transfer of formate to 5-phospho-ribosyl-glycinamide (GAR), producing 5-phospho-ribosyl-N-formylglycinamide (FGAR). Formate is provided by PurU via hydrolysis of 10-formyl-tetrahydrofolate | |
JCGKACBB_00225 | 1e-93 | S | UPF0316 protein | |||
JCGKACBB_00226 | 2.7e-103 | xpt | 2.4.2.22, 2.4.2.7 | F | Converts the preformed base xanthine, a product of nucleic acid breakdown, to xanthosine 5'-monophosphate (XMP), so it can be reused for RNA or DNA synthesis | |
JCGKACBB_00227 | 9e-113 | acmA | 3.2.1.17 | NU | mannosyl-glycoprotein | |
JCGKACBB_00228 | 3.3e-183 | S | Oxidoreductase family, NAD-binding Rossmann fold | |||
JCGKACBB_00229 | 1.1e-164 | menA | 2.5.1.74 | H | 1,4-dihydroxy-2-naphthoate | |
JCGKACBB_00230 | 2.3e-182 | hepT | 2.5.1.30, 2.5.1.90 | H | Belongs to the FPP GGPP synthase family | |
JCGKACBB_00231 | 9.1e-157 | ddpX | 3.4.13.22 | S | L,D-transpeptidase catalytic domain | |
JCGKACBB_00232 | 0.0 | cydD | CO | ABC transporter, CydDC cysteine exporter (CydDC-E) family, permease ATP-binding protein CydC | ||
JCGKACBB_00233 | 0.0 | cydD | CO | ABC transporter, CydDC cysteine exporter (CydDC-E) family, permease ATP-binding protein CydD | ||
JCGKACBB_00234 | 2.6e-183 | cydB | 1.10.3.14 | C | Cytochrome d ubiquinol oxidase subunit II | |
JCGKACBB_00235 | 5.4e-275 | cydA | 1.10.3.14 | C | ubiquinol oxidase | |
JCGKACBB_00236 | 0.0 | S | Alpha beta | |||
JCGKACBB_00237 | 1.8e-23 | |||||
JCGKACBB_00238 | 4e-84 | hmpT | S | Pfam:DUF3816 | ||
JCGKACBB_00239 | 3.4e-241 | tyrS | 6.1.1.1 | J | Catalyzes the attachment of tyrosine to tRNA(Tyr) in a two-step reaction tyrosine is first activated by ATP to form Tyr- AMP and then transferred to the acceptor end of tRNA(Tyr) | |
JCGKACBB_00240 | 3.9e-111 | |||||
JCGKACBB_00241 | 2.4e-149 | M | Glycosyl hydrolases family 25 | |||
JCGKACBB_00242 | 5.9e-143 | yvpB | S | Peptidase_C39 like family | ||
JCGKACBB_00243 | 1.1e-92 | yueI | S | Protein of unknown function (DUF1694) | ||
JCGKACBB_00244 | 1.6e-115 | S | Protein of unknown function (DUF554) | |||
JCGKACBB_00245 | 3.2e-147 | KT | helix_turn_helix, mercury resistance | |||
JCGKACBB_00246 | 1.7e-227 | gltP | U | Belongs to the dicarboxylate amino acid cation symporter (DAACS) (TC 2.A.23) family | ||
JCGKACBB_00247 | 1.9e-94 | S | Protein of unknown function (DUF1440) | |||
JCGKACBB_00248 | 2e-173 | hrtB | V | ABC transporter permease | ||
JCGKACBB_00249 | 5.6e-121 | devA | 3.6.3.25 | V | ABC transporter, ATP-binding protein | |
JCGKACBB_00250 | 1.4e-90 | 2.7.7.65 | T | phosphorelay sensor kinase activity | ||
JCGKACBB_00251 | 5.5e-186 | iunH | 3.2.2.1 | F | Inosine-uridine preferring nucleoside hydrolase | |
JCGKACBB_00252 | 2.4e-98 | 1.5.1.3 | H | RibD C-terminal domain | ||
JCGKACBB_00253 | 5.3e-188 | napA | P | Belongs to the monovalent cation proton antiporter 2 (CPA2) transporter (TC 2.A.37) family | ||
JCGKACBB_00254 | 4.9e-109 | S | Membrane | |||
JCGKACBB_00255 | 8e-155 | mleP3 | S | Membrane transport protein | ||
JCGKACBB_00256 | 1.3e-257 | aspA | 4.2.1.2, 4.3.1.1 | E | Fumarase C C-terminus | |
JCGKACBB_00257 | 7.6e-190 | ynfM | EGP | Major facilitator Superfamily | ||
JCGKACBB_00258 | 2.2e-122 | hadL | 3.8.1.2 | S | Haloacid dehalogenase-like hydrolase | |
JCGKACBB_00259 | 3.2e-270 | lmrB | EGP | Major facilitator Superfamily | ||
JCGKACBB_00260 | 5.8e-75 | S | Domain of unknown function (DUF4811) | |||
JCGKACBB_00261 | 2.7e-97 | rimL | J | Acetyltransferase (GNAT) domain | ||
JCGKACBB_00262 | 1.2e-172 | S | Conserved hypothetical protein 698 | |||
JCGKACBB_00263 | 3.7e-151 | rlrG | K | Transcriptional regulator | ||
JCGKACBB_00264 | 7.6e-296 | tagE5 | 2.4.1.52 | GT4 | M | Poly(Glycerol-phosphate) alpha-glucosyltransferase |
JCGKACBB_00265 | 2e-267 | tagE6 | 2.4.1.52 | GT4 | M | Glycosyl transferases group 1 |
JCGKACBB_00267 | 2.3e-52 | lytE | M | LysM domain | ||
JCGKACBB_00268 | 5.2e-92 | ogt | 2.1.1.63 | L | Methyltransferase | |
JCGKACBB_00269 | 1.2e-166 | natA | S | ABC transporter, ATP-binding protein | ||
JCGKACBB_00270 | 4.7e-211 | natB | CP | ABC-2 family transporter protein | ||
JCGKACBB_00271 | 1.4e-128 | S | Belongs to the short-chain dehydrogenases reductases (SDR) family | |||
JCGKACBB_00272 | 7.3e-55 | yphJ | 4.1.1.44 | S | Carboxymuconolactone decarboxylase family | |
JCGKACBB_00273 | 9.3e-76 | yphH | S | Cupin domain | ||
JCGKACBB_00274 | 9.8e-79 | K | transcriptional regulator, MerR family | |||
JCGKACBB_00275 | 1.7e-235 | dapE | 3.5.1.18 | E | succinyl-diaminopimelate desuccinylase | |
JCGKACBB_00276 | 0.0 | ylbB | V | ABC transporter permease | ||
JCGKACBB_00277 | 7.5e-121 | macB | V | ABC transporter, ATP-binding protein | ||
JCGKACBB_00279 | 8e-117 | nth | 4.2.99.18 | L | DNA repair enzyme that has both DNA N-glycosylase activity and AP-lyase activity. The DNA N-glycosylase activity releases various damaged pyrimidines from DNA by cleaving the N- glycosidic bond, leaving an AP (apurinic apyrimidinic) site. The AP-lyase activity cleaves the phosphodiester bond 3' to the AP site by a beta-elimination, leaving a 3'-terminal unsaturated sugar and a product with a terminal 5'-phosphate | |
JCGKACBB_00280 | 5.5e-99 | maa | 2.3.1.18, 2.3.1.79 | S | Maltose acetyltransferase | |
JCGKACBB_00281 | 8.4e-116 | lepB | 3.4.21.89 | U | Belongs to the peptidase S26 family | |
JCGKACBB_00283 | 3.8e-84 | |||||
JCGKACBB_00284 | 2.8e-85 | yvbK | 3.1.3.25 | K | GNAT family | |
JCGKACBB_00285 | 3.2e-37 | |||||
JCGKACBB_00286 | 8.2e-48 | |||||
JCGKACBB_00287 | 3.3e-10 | pgm8 | G | Histidine phosphatase superfamily (branch 1) | ||
JCGKACBB_00288 | 5e-85 | pgm8 | G | Histidine phosphatase superfamily (branch 1) | ||
JCGKACBB_00289 | 3.8e-63 | S | Domain of unknown function (DUF4440) | |||
JCGKACBB_00290 | 6.9e-156 | K | LysR substrate binding domain | |||
JCGKACBB_00291 | 1.9e-104 | GM | NAD(P)H-binding | |||
JCGKACBB_00292 | 1.5e-194 | adh | 1.1.1.1, 1.1.1.14 | E | alcohol dehydrogenase | |
JCGKACBB_00293 | 1.4e-150 | IQ | Enoyl-(Acyl carrier protein) reductase | |||
JCGKACBB_00294 | 1.3e-34 | |||||
JCGKACBB_00295 | 6.1e-76 | T | Belongs to the universal stress protein A family | |||
JCGKACBB_00296 | 6.4e-94 | maa | 2.3.1.18, 2.3.1.79 | S | Maltose O-acetyltransferase | |
JCGKACBB_00297 | 1.7e-125 | yjjG | 3.1.3.102, 3.1.3.104, 3.1.3.5, 3.8.1.2 | S | Haloacid dehalogenase-like hydrolase | |
JCGKACBB_00298 | 6.3e-62 | |||||
JCGKACBB_00299 | 3.9e-102 | 1.5.1.40 | S | NADP oxidoreductase coenzyme F420-dependent | ||
JCGKACBB_00300 | 4.8e-221 | patB | 4.4.1.8 | E | Aminotransferase, class I | |
JCGKACBB_00301 | 7.4e-102 | M | Protein of unknown function (DUF3737) | |||
JCGKACBB_00302 | 2.8e-193 | C | Aldo/keto reductase family | |||
JCGKACBB_00304 | 0.0 | mdlB | V | ABC transporter | ||
JCGKACBB_00305 | 1.9e-40 | mdlA | V | ABC transporter | ||
JCGKACBB_00306 | 2.4e-251 | mdlA | V | ABC transporter | ||
JCGKACBB_00307 | 1.3e-246 | EGP | Major facilitator Superfamily | |||
JCGKACBB_00310 | 3.6e-09 | |||||
JCGKACBB_00311 | 2.1e-198 | yhgE | V | domain protein | ||
JCGKACBB_00312 | 5.1e-96 | K | Transcriptional regulator (TetR family) | |||
JCGKACBB_00313 | 1.4e-53 | K | helix_turn_helix, Arsenical Resistance Operon Repressor | |||
JCGKACBB_00314 | 1.1e-140 | endA | F | DNA RNA non-specific endonuclease | ||
JCGKACBB_00315 | 2.6e-97 | speG | J | Acetyltransferase (GNAT) domain | ||
JCGKACBB_00316 | 2.2e-96 | 2.3.1.128 | J | Acetyltransferase (GNAT) domain | ||
JCGKACBB_00317 | 6.4e-97 | 2.7.1.89 | M | Phosphotransferase enzyme family | ||
JCGKACBB_00318 | 4.9e-23 | 2.7.1.89 | M | Phosphotransferase enzyme family | ||
JCGKACBB_00319 | 7.1e-220 | S | CAAX protease self-immunity | |||
JCGKACBB_00320 | 7.9e-307 | ybiT | S | ABC transporter, ATP-binding protein | ||
JCGKACBB_00321 | 2.6e-101 | 3.1.3.102, 3.1.3.104 | S | hydrolase | ||
JCGKACBB_00322 | 3.2e-12 | 3.1.3.102, 3.1.3.104 | S | hydrolase | ||
JCGKACBB_00323 | 0.0 | S | Predicted membrane protein (DUF2207) | |||
JCGKACBB_00324 | 0.0 | uvrA3 | L | excinuclease ABC | ||
JCGKACBB_00325 | 6.3e-208 | EGP | Major facilitator Superfamily | |||
JCGKACBB_00326 | 1.7e-173 | ropB | K | Helix-turn-helix XRE-family like proteins | ||
JCGKACBB_00327 | 1.7e-233 | yxiO | S | Vacuole effluxer Atg22 like | ||
JCGKACBB_00328 | 1.7e-256 | npp | S | type I phosphodiesterase nucleotide pyrophosphatase | ||
JCGKACBB_00329 | 2e-160 | I | alpha/beta hydrolase fold | |||
JCGKACBB_00330 | 4.8e-131 | treR | K | UTRA | ||
JCGKACBB_00331 | 1.9e-238 | |||||
JCGKACBB_00332 | 5.6e-39 | S | Cytochrome B5 | |||
JCGKACBB_00333 | 7.5e-89 | pts21A | G | phosphoenolpyruvate-dependent sugar phosphotransferase system, EIIA 1 | ||
JCGKACBB_00334 | 6.2e-218 | 2.7.7.65 | T | Diguanylate cyclase, GGDEF domain | ||
JCGKACBB_00335 | 1.2e-126 | yliE | T | EAL domain | ||
JCGKACBB_00336 | 2.9e-104 | nrdG | 1.97.1.4 | O | Activation of anaerobic ribonucleoside-triphosphate reductase under anaerobic conditions by generation of an organic free radical, using S-adenosylmethionine and reduced flavodoxin as cosubstrates to produce 5'-deoxy-adenosine | |
JCGKACBB_00337 | 0.0 | nrdD | 1.1.98.6 | F | Ribonucleoside-triphosphate reductase | |
JCGKACBB_00338 | 2e-80 | |||||
JCGKACBB_00339 | 4.9e-72 | def2 | 3.5.1.31, 3.5.1.88 | J | Removes the formyl group from the N-terminal Met of newly synthesized proteins | |
JCGKACBB_00340 | 3.7e-190 | apbE | 2.7.1.180 | H | Flavin transferase that catalyzes the transfer of the FMN moiety of FAD and its covalent binding to the hydroxyl group of a threonine residue in a target flavoprotein | |
JCGKACBB_00341 | 1.5e-191 | dus | J | Catalyzes the synthesis of 5,6-dihydrouridine (D), a modified base found in the D-loop of most tRNAs, via the reduction of the C5-C6 double bond in target uridines | ||
JCGKACBB_00342 | 8.3e-22 | |||||
JCGKACBB_00343 | 3.8e-75 | |||||
JCGKACBB_00344 | 1.2e-163 | K | LysR substrate binding domain | |||
JCGKACBB_00345 | 2.4e-243 | P | Sodium:sulfate symporter transmembrane region | |||
JCGKACBB_00346 | 3e-53 | ubiD | 4.1.1.98 | H | 3-octaprenyl-4-hydroxybenzoate carboxy-lyase | |
JCGKACBB_00347 | 1.6e-213 | ubiD | 4.1.1.98 | H | 3-octaprenyl-4-hydroxybenzoate carboxy-lyase | |
JCGKACBB_00348 | 4.1e-262 | S | response to antibiotic | |||
JCGKACBB_00349 | 3.7e-134 | S | zinc-ribbon domain | |||
JCGKACBB_00351 | 3.2e-37 | |||||
JCGKACBB_00352 | 8.2e-134 | aroD | S | Alpha/beta hydrolase family | ||
JCGKACBB_00353 | 2.6e-176 | S | Phosphotransferase system, EIIC | |||
JCGKACBB_00354 | 1.7e-268 | I | acetylesterase activity | |||
JCGKACBB_00355 | 4.4e-220 | sdrF | M | Collagen binding domain | ||
JCGKACBB_00356 | 1.9e-133 | yicL | EG | EamA-like transporter family | ||
JCGKACBB_00357 | 8.3e-128 | E | lipolytic protein G-D-S-L family | |||
JCGKACBB_00358 | 2.8e-148 | 4.1.1.52 | S | Amidohydrolase | ||
JCGKACBB_00359 | 2.1e-111 | K | Transcriptional regulator C-terminal region | |||
JCGKACBB_00360 | 7.7e-39 | 3.6.4.12 | K | HxlR-like helix-turn-helix | ||
JCGKACBB_00361 | 1.7e-162 | ypbG | 2.7.1.2 | GK | ROK family | |
JCGKACBB_00362 | 0.0 | ybfG | M | peptidoglycan-binding domain-containing protein | ||
JCGKACBB_00363 | 1.2e-88 | |||||
JCGKACBB_00364 | 0.0 | lmrA | 3.6.3.44 | V | ABC transporter | |
JCGKACBB_00365 | 5e-93 | rmaB | K | Transcriptional regulator, MarR family | ||
JCGKACBB_00366 | 9.3e-99 | ccpB | 5.1.1.1 | K | lacI family | |
JCGKACBB_00367 | 2e-36 | ccpB | 5.1.1.1 | K | lacI family | |
JCGKACBB_00368 | 3e-121 | yceE | S | haloacid dehalogenase-like hydrolase | ||
JCGKACBB_00369 | 3.8e-119 | drgA | C | Nitroreductase family | ||
JCGKACBB_00370 | 0.0 | nagE | 2.7.1.193, 2.7.1.199, 2.7.1.211 | G | phosphotransferase system, EIIB | |
JCGKACBB_00371 | 2.9e-117 | cmpC | S | ATPases associated with a variety of cellular activities | ||
JCGKACBB_00372 | 3.3e-154 | WQ51_06230 | U | Belongs to the binding-protein-dependent transport system permease family | ||
JCGKACBB_00373 | 2.3e-168 | XK27_00670 | S | ABC transporter | ||
JCGKACBB_00374 | 2.3e-260 | |||||
JCGKACBB_00375 | 7.3e-62 | |||||
JCGKACBB_00376 | 5.1e-190 | S | Cell surface protein | |||
JCGKACBB_00377 | 2.3e-91 | S | WxL domain surface cell wall-binding | |||
JCGKACBB_00378 | 5.3e-63 | acuB | S | Domain in cystathionine beta-synthase and other proteins. | ||
JCGKACBB_00379 | 1.8e-31 | cp12 | S | Domain in cystathionine beta-synthase and other proteins. | ||
JCGKACBB_00380 | 3.3e-124 | livF | E | ABC transporter | ||
JCGKACBB_00381 | 5.2e-139 | livG | E | Branched-chain amino acid ATP-binding cassette transporter | ||
JCGKACBB_00382 | 1.5e-140 | livM | E | Branched-chain amino acid transport system / permease component | ||
JCGKACBB_00383 | 2.5e-153 | livH | U | Branched-chain amino acid transport system / permease component | ||
JCGKACBB_00384 | 2.7e-211 | livJ | E | Receptor family ligand binding region | ||
JCGKACBB_00386 | 4.5e-32 | |||||
JCGKACBB_00387 | 1.7e-113 | zmp3 | O | Zinc-dependent metalloprotease | ||
JCGKACBB_00388 | 2.8e-82 | gtrA | S | GtrA-like protein | ||
JCGKACBB_00389 | 6.1e-122 | K | Helix-turn-helix XRE-family like proteins | |||
JCGKACBB_00390 | 4.1e-284 | mntH | P | H( )-stimulated, divalent metal cation uptake system | ||
JCGKACBB_00391 | 6.8e-72 | T | Belongs to the universal stress protein A family | |||
JCGKACBB_00392 | 1.1e-46 | |||||
JCGKACBB_00393 | 1.9e-116 | S | SNARE associated Golgi protein | |||
JCGKACBB_00394 | 2e-49 | K | Transcriptional regulator, ArsR family | |||
JCGKACBB_00395 | 1.2e-95 | cadD | P | Cadmium resistance transporter | ||
JCGKACBB_00396 | 0.0 | yhcA | V | ABC transporter, ATP-binding protein | ||
JCGKACBB_00397 | 0.0 | P | Concanavalin A-like lectin/glucanases superfamily | |||
JCGKACBB_00398 | 3e-56 | dps | P | Belongs to the Dps family | ||
JCGKACBB_00399 | 2.2e-115 | K | UTRA | |||
JCGKACBB_00400 | 1.2e-269 | celA | 3.2.1.86 | GT1 | G | Belongs to the glycosyl hydrolase 1 family |
JCGKACBB_00401 | 2.9e-246 | celD | G | The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active - transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane | ||
JCGKACBB_00402 | 4.1e-65 | |||||
JCGKACBB_00403 | 1.5e-11 | |||||
JCGKACBB_00404 | 3.6e-40 | 4.1.1.44 | S | Carboxymuconolactone decarboxylase family | ||
JCGKACBB_00405 | 1.3e-23 | rmeD | K | helix_turn_helix, mercury resistance | ||
JCGKACBB_00406 | 3.9e-57 | S | Protein of unknown function (DUF1093) | |||
JCGKACBB_00407 | 1.4e-205 | S | Membrane | |||
JCGKACBB_00408 | 1.1e-43 | S | Protein of unknown function (DUF3781) | |||
JCGKACBB_00409 | 1e-107 | ydeA | S | intracellular protease amidase | ||
JCGKACBB_00410 | 2.2e-41 | K | HxlR-like helix-turn-helix | |||
JCGKACBB_00411 | 3.3e-66 | |||||
JCGKACBB_00412 | 1.3e-64 | V | ABC transporter | |||
JCGKACBB_00413 | 2.3e-51 | K | Helix-turn-helix domain | |||
JCGKACBB_00414 | 1.7e-204 | mdh | 1.1.1.350 | C | Belongs to the LDH2 MDH2 oxidoreductase family | |
JCGKACBB_00415 | 1.4e-46 | K | Helix-turn-helix domain | |||
JCGKACBB_00416 | 4.4e-90 | S | ABC-2 family transporter protein | |||
JCGKACBB_00417 | 1.4e-52 | S | ABC-2 family transporter protein | |||
JCGKACBB_00418 | 7.9e-91 | V | ABC transporter, ATP-binding protein | |||
JCGKACBB_00419 | 8.8e-40 | |||||
JCGKACBB_00420 | 7.9e-131 | gpmA | 5.4.2.11 | G | Catalyzes the interconversion of 2-phosphoglycerate and 3-phosphoglycerate | |
JCGKACBB_00421 | 4.9e-172 | K | AI-2E family transporter | |||
JCGKACBB_00422 | 1.7e-210 | xylR | GK | ROK family | ||
JCGKACBB_00423 | 2.2e-81 | |||||
JCGKACBB_00424 | 4.7e-232 | cfa | 2.1.1.317, 2.1.1.79 | M | cyclopropane-fatty-acyl-phospholipid synthase | |
JCGKACBB_00425 | 3.6e-163 | |||||
JCGKACBB_00426 | 3.2e-200 | KLT | Protein tyrosine kinase | |||
JCGKACBB_00427 | 2.9e-23 | S | Protein of unknown function (DUF4064) | |||
JCGKACBB_00428 | 6e-97 | S | Domain of unknown function (DUF4352) | |||
JCGKACBB_00429 | 4.9e-70 | S | Psort location Cytoplasmic, score | |||
JCGKACBB_00430 | 2.9e-24 | |||||
JCGKACBB_00431 | 3.6e-110 | S | membrane transporter protein | |||
JCGKACBB_00432 | 2.3e-54 | azlD | S | branched-chain amino acid | ||
JCGKACBB_00433 | 5.1e-131 | azlC | E | branched-chain amino acid | ||
JCGKACBB_00434 | 2.4e-89 | ywnH | 2.3.1.183 | M | Acetyltransferase (GNAT) domain | |
JCGKACBB_00435 | 3.5e-236 | dacA | 3.4.16.4 | M | Belongs to the peptidase S11 family | |
JCGKACBB_00436 | 1.3e-213 | hpk31 | 2.7.13.3 | T | Histidine kinase | |
JCGKACBB_00437 | 3.2e-124 | K | response regulator | |||
JCGKACBB_00438 | 2.7e-123 | yoaK | S | Protein of unknown function (DUF1275) | ||
JCGKACBB_00439 | 2.6e-161 | prsA | 3.1.3.16, 5.2.1.8 | M | Plays a major role in protein secretion by helping the post-translocational extracellular folding of several secreted proteins | |
JCGKACBB_00440 | 2.3e-212 | guaB | 1.1.1.205 | F | Catalyzes the irreversible NADPH-dependent deamination of GMP to IMP. It functions in the conversion of nucleobase, nucleoside and nucleotide derivatives of G to A nucleotides, and in maintaining the intracellular balance of A and G nucleotides | |
JCGKACBB_00441 | 2e-124 | XK27_01040 | S | Protein of unknown function (DUF1129) | ||
JCGKACBB_00442 | 2e-200 | ychF | J | ATPase that binds to both the 70S ribosome and the 50S ribosomal subunit in a nucleotide-independent manner | ||
JCGKACBB_00443 | 9.8e-31 | yyzM | S | Bacterial protein of unknown function (DUF951) | ||
JCGKACBB_00444 | 2.4e-156 | spo0J | K | Belongs to the ParB family | ||
JCGKACBB_00445 | 1.8e-136 | soj | D | Sporulation initiation inhibitor | ||
JCGKACBB_00446 | 7.9e-149 | noc | K | Belongs to the ParB family | ||
JCGKACBB_00447 | 7.1e-130 | rsmG | 2.1.1.170 | J | Specifically methylates the N7 position of a guanine in 16S rRNA | |
JCGKACBB_00448 | 4.1e-226 | nupG | F | Nucleoside | ||
JCGKACBB_00449 | 0.0 | S | Bacterial membrane protein YfhO | |||
JCGKACBB_00450 | 3.6e-146 | S | Alpha/beta hydrolase of unknown function (DUF915) | |||
JCGKACBB_00451 | 2.1e-168 | K | LysR substrate binding domain | |||
JCGKACBB_00452 | 1.9e-236 | EK | Aminotransferase, class I | |||
JCGKACBB_00453 | 2.3e-126 | tcyA | ET | Belongs to the bacterial solute-binding protein 3 family | ||
JCGKACBB_00454 | 8.1e-123 | tcyB | E | ABC transporter | ||
JCGKACBB_00455 | 3.6e-137 | glnQ | 3.6.3.21 | E | ABC transporter, ATP-binding protein | |
JCGKACBB_00456 | 1.9e-120 | tcyA | ET | Belongs to the bacterial solute-binding protein 3 family | ||
JCGKACBB_00457 | 1.7e-78 | KT | response to antibiotic | |||
JCGKACBB_00458 | 9.8e-52 | K | Transcriptional regulator | |||
JCGKACBB_00459 | 1.1e-70 | XK27_06920 | S | Protein of unknown function (DUF1700) | ||
JCGKACBB_00460 | 1.6e-126 | S | Putative adhesin | |||
JCGKACBB_00461 | 0.0 | scrA | 2.7.1.193, 2.7.1.211 | G | phosphotransferase system | |
JCGKACBB_00462 | 0.0 | malA | 3.2.1.10, 3.2.1.20 | GH13,GH31 | G | Alpha amylase, catalytic domain protein |
JCGKACBB_00463 | 1.2e-180 | 5.1.1.1 | K | Periplasmic binding proteins and sugar binding domain of LacI family | ||
JCGKACBB_00464 | 2.6e-205 | S | DUF218 domain | |||
JCGKACBB_00465 | 6.8e-128 | ybbM | S | Uncharacterised protein family (UPF0014) | ||
JCGKACBB_00466 | 3e-116 | ybbL | S | ABC transporter, ATP-binding protein | ||
JCGKACBB_00467 | 3.5e-274 | rumA | 2.1.1.190, 2.1.1.35 | J | Belongs to the class I-like SAM-binding methyltransferase superfamily. RNA M5U methyltransferase family | |
JCGKACBB_00468 | 9.4e-77 | |||||
JCGKACBB_00469 | 2.5e-150 | qorB | 1.6.5.2 | GM | NmrA-like family | |
JCGKACBB_00470 | 4.8e-140 | cof | S | haloacid dehalogenase-like hydrolase | ||
JCGKACBB_00471 | 2.4e-92 | scrK | 2.7.1.2, 2.7.1.4 | GK | ROK family | |
JCGKACBB_00472 | 1.3e-306 | mngB | 3.2.1.170, 3.2.1.24 | GH38 | G | Glycosyl hydrolases family 38 N-terminal domain |
JCGKACBB_00473 | 2.8e-122 | mngA | 2.7.1.195, 2.7.1.202 | U | Phosphotransferase system, EIIC | |
JCGKACBB_00474 | 2.4e-26 | mngA | 2.7.1.195, 2.7.1.202 | G | PTS system, Lactose/Cellobiose specific IIB subunit | |
JCGKACBB_00475 | 1.7e-20 | fryA | 2.7.1.202 | G | COG1762 Phosphotransferase system mannitol fructose-specific IIA domain (Ntr-type) | |
JCGKACBB_00476 | 2.2e-90 | 2.7.1.194, 2.7.1.200, 2.7.1.202 | GKT | Phosphoenolpyruvate-dependent sugar phosphotransferase system, EIIA 2 | ||
JCGKACBB_00477 | 2e-77 | merR | K | MerR family regulatory protein | ||
JCGKACBB_00478 | 2.6e-155 | 1.6.5.2 | GM | NmrA-like family | ||
JCGKACBB_00479 | 0.0 | treB | 2.7.1.193, 2.7.1.211 | G | phosphotransferase system | |
JCGKACBB_00480 | 1.1e-126 | magIII | L | Base excision DNA repair protein, HhH-GPD family | ||
JCGKACBB_00481 | 1.4e-08 | |||||
JCGKACBB_00482 | 1.4e-22 | S | NADPH-dependent FMN reductase | |||
JCGKACBB_00483 | 1.6e-49 | S | NADPH-dependent FMN reductase | |||
JCGKACBB_00484 | 4.3e-236 | S | module of peptide synthetase | |||
JCGKACBB_00485 | 6.9e-107 | |||||
JCGKACBB_00486 | 9.8e-88 | perR | P | Belongs to the Fur family | ||
JCGKACBB_00487 | 7.1e-59 | S | Enterocin A Immunity | |||
JCGKACBB_00488 | 5.4e-36 | S | Phospholipase_D-nuclease N-terminal | |||
JCGKACBB_00489 | 2e-168 | cpdA | 2.1.2.2, 3.1.4.17, 3.1.4.53 | S | Calcineurin-like phosphoesterase | |
JCGKACBB_00490 | 3.8e-104 | J | Acetyltransferase (GNAT) domain | |||
JCGKACBB_00491 | 4.3e-63 | lrgA | S | LrgA family | ||
JCGKACBB_00492 | 7.3e-127 | lrgB | M | LrgB-like family | ||
JCGKACBB_00493 | 2.5e-145 | DegV | S | EDD domain protein, DegV family | ||
JCGKACBB_00494 | 4.1e-25 | |||||
JCGKACBB_00495 | 3.5e-118 | yugP | S | Putative neutral zinc metallopeptidase | ||
JCGKACBB_00496 | 1.4e-294 | crtI | 1.3.99.26, 1.3.99.28, 1.3.99.29, 1.3.99.31 | Q | Flavin containing amine oxidoreductase | |
JCGKACBB_00497 | 2.2e-162 | crtB | 2.5.1.21, 2.5.1.32, 2.5.1.99 | I | Squalene/phytoene synthase | |
JCGKACBB_00498 | 6.4e-184 | D | Alpha beta | |||
JCGKACBB_00499 | 4.1e-198 | glxK | 2.7.1.165 | G | Belongs to the glycerate kinase type-1 family | |
JCGKACBB_00500 | 9.5e-258 | gor | 1.8.1.7 | C | Glutathione reductase | |
JCGKACBB_00501 | 1.7e-54 | S | Enterocin A Immunity | |||
JCGKACBB_00502 | 9.6e-247 | purB | 4.3.2.2 | F | Belongs to the lyase 1 family. Adenylosuccinate lyase subfamily | |
JCGKACBB_00503 | 4e-253 | purA | 6.3.4.4 | F | Plays an important role in the de novo pathway of purine nucleotide biosynthesis. Catalyzes the first committed step in the biosynthesis of AMP from IMP | |
JCGKACBB_00504 | 1.3e-184 | guaC | 1.1.1.205, 1.7.1.7 | F | Catalyzes the irreversible NADPH-dependent deamination of GMP to IMP. It functions in the conversion of nucleobase, nucleoside and nucleotide derivatives of G to A nucleotides, and in maintaining the intracellular balance of A and G nucleotides | |
JCGKACBB_00505 | 1.9e-188 | oppD | P | Belongs to the ABC transporter superfamily | ||
JCGKACBB_00506 | 5.3e-157 | amiD | EP | ABC-type dipeptide oligopeptide nickel transport systems, permease components | ||
JCGKACBB_00507 | 3.1e-257 | amiC | U | Binding-protein-dependent transport system inner membrane component | ||
JCGKACBB_00508 | 0.0 | amiA | E | Bacterial extracellular solute-binding proteins, family 5 Middle | ||
JCGKACBB_00509 | 6.4e-145 | ptp2 | 3.1.3.48 | T | Tyrosine phosphatase family | |
JCGKACBB_00510 | 4.8e-279 | cls | I | Catalyzes the reversible phosphatidyl group transfer from one phosphatidylglycerol molecule to another to form cardiolipin (CL) (diphosphatidylglycerol) and glycerol | ||
JCGKACBB_00512 | 3.1e-81 | |||||
JCGKACBB_00513 | 3.3e-256 | yhdG | E | C-terminus of AA_permease | ||
JCGKACBB_00514 | 1.7e-44 | yefM | 2.3.1.15 | D | Antitoxin component of a toxin-antitoxin (TA) module | |
JCGKACBB_00515 | 3.2e-59 | yafQ | S | Bacterial toxin of type II toxin-antitoxin system, YafQ | ||
JCGKACBB_00516 | 1.2e-52 | K | Helix-turn-helix XRE-family like proteins | |||
JCGKACBB_00517 | 2.6e-267 | L | helicase superfamily c-terminal domain | |||
JCGKACBB_00518 | 1.3e-293 | V | Type II restriction enzyme, methylase subunits | |||
JCGKACBB_00519 | 8e-43 | |||||
JCGKACBB_00520 | 2.9e-176 | L | Initiator Replication protein | |||
JCGKACBB_00521 | 3.5e-28 | |||||
JCGKACBB_00522 | 8.2e-63 | |||||
JCGKACBB_00523 | 6.1e-121 | zmp2 | O | Zinc-dependent metalloprotease | ||
JCGKACBB_00524 | 2.1e-128 | gpmA | 5.4.2.11 | G | Catalyzes the interconversion of 2-phosphoglycerate and 3-phosphoglycerate | |
JCGKACBB_00525 | 4.9e-177 | EG | EamA-like transporter family | |||
JCGKACBB_00526 | 3.3e-167 | mleP2 | S | Transporter, auxin efflux carrier (AEC) family protein | ||
JCGKACBB_00527 | 4.8e-168 | brpA | K | Cell envelope-like function transcriptional attenuator common domain protein | ||
JCGKACBB_00528 | 4.1e-136 | accA | 2.1.3.15, 6.4.1.2 | I | Acetyl co-enzyme A carboxylase carboxyltransferase alpha subunit | |
JCGKACBB_00529 | 3.7e-140 | accD | 2.1.3.15, 6.4.1.2 | I | Component of the acetyl coenzyme A carboxylase (ACC) complex. Biotin carboxylase (BC) catalyzes the carboxylation of biotin on its carrier protein (BCCP) and then the CO(2) group is transferred by the transcarboxylase to acetyl-CoA to form malonyl- CoA | |
JCGKACBB_00530 | 1.2e-247 | accC2 | 6.3.4.14, 6.4.1.2 | I | Biotin carboxylase C-terminal domain | |
JCGKACBB_00531 | 9.7e-65 | accB | 2.3.1.12 | I | Biotin-requiring enzyme | |
JCGKACBB_00532 | 5.4e-178 | fabH | 2.3.1.180 | I | Catalyzes the condensation reaction of fatty acid synthesis by the addition to an acyl acceptor of two carbons from malonyl-ACP. Catalyzes the first condensation reaction which initiates fatty acid synthesis and may therefore play a role in governing the total rate of fatty acid production. Possesses both acetoacetyl-ACP synthase and acetyl transacylase activities. Its substrate specificity determines the biosynthesis of branched- chain and or straight-chain of fatty acids | |
JCGKACBB_00533 | 3.1e-87 | pts10B | 2.7.1.191, 2.7.1.202 | G | PTS system sorbose subfamily IIB component | |
JCGKACBB_00534 | 8.6e-72 | pts10A | 2.7.1.191 | G | PTS system fructose IIA component | |
JCGKACBB_00535 | 0.0 | levR | K | Sigma-54 interaction domain | ||
JCGKACBB_00536 | 4.7e-64 | S | Domain of unknown function (DUF956) | |||
JCGKACBB_00537 | 6.8e-170 | manN | G | system, mannose fructose sorbose family IID component | ||
JCGKACBB_00538 | 8.1e-135 | manY | G | PTS system | ||
JCGKACBB_00539 | 3.9e-168 | manL | 2.7.1.191 | G | PTS system sorbose subfamily IIB component | |
JCGKACBB_00540 | 3.9e-153 | G | Peptidase_C39 like family | |||
JCGKACBB_00541 | 4.2e-79 | ps461 | M | Glycosyl hydrolases family 25 | ||
JCGKACBB_00544 | 1.7e-38 | |||||
JCGKACBB_00546 | 7.6e-19 | S | Protein of unknown function (DUF1617) | |||
JCGKACBB_00547 | 1.5e-95 | sidC | GT2,GT4 | LM | DNA recombination | |
JCGKACBB_00548 | 4.5e-32 | S | Phage tail protein | |||
JCGKACBB_00549 | 1.6e-128 | M | Phage tail tape measure protein TP901 | |||
JCGKACBB_00552 | 8.2e-39 | S | Phage tail tube protein | |||
JCGKACBB_00553 | 3.1e-21 | |||||
JCGKACBB_00554 | 6.5e-32 | |||||
JCGKACBB_00555 | 7.3e-25 | |||||
JCGKACBB_00556 | 8.6e-14 | |||||
JCGKACBB_00557 | 1.6e-107 | S | Phage capsid family | |||
JCGKACBB_00558 | 5.5e-58 | clpP | 3.4.21.92 | OU | Clp protease | |
JCGKACBB_00559 | 1.1e-102 | S | Phage portal protein | |||
JCGKACBB_00560 | 2.4e-173 | S | Terminase | |||
JCGKACBB_00561 | 1.8e-12 | S | Phage terminase, small subunit | |||
JCGKACBB_00565 | 1.7e-171 | |||||
JCGKACBB_00566 | 3.6e-133 | dam | 2.1.1.72 | H | Site-specific DNA-methyltransferase (adenine-specific) | |
JCGKACBB_00567 | 2.9e-22 | |||||
JCGKACBB_00569 | 5.4e-59 | |||||
JCGKACBB_00575 | 4.7e-36 | S | hydrolase activity, acting on ester bonds | |||
JCGKACBB_00576 | 6.3e-134 | S | Virulence-associated protein E | |||
JCGKACBB_00577 | 3.7e-76 | S | Bifunctional DNA primase/polymerase, N-terminal | |||
JCGKACBB_00578 | 1.1e-25 | |||||
JCGKACBB_00579 | 2e-73 | L | AAA domain | |||
JCGKACBB_00580 | 8.9e-157 | S | helicase activity | |||
JCGKACBB_00581 | 1.3e-42 | S | Siphovirus Gp157 | |||
JCGKACBB_00589 | 2.1e-07 | |||||
JCGKACBB_00590 | 4.2e-70 | S | Uncharacterized protein conserved in bacteria (DUF2321) | |||
JCGKACBB_00591 | 1.4e-19 | |||||
JCGKACBB_00594 | 1.4e-25 | yvaO | K | Helix-turn-helix XRE-family like proteins | ||
JCGKACBB_00595 | 4.8e-17 | E | Pfam:DUF955 | |||
JCGKACBB_00602 | 5.1e-08 | |||||
JCGKACBB_00608 | 2.8e-91 | apt | 2.4.2.22, 2.4.2.7 | F | Phosphoribosyl transferase domain | |
JCGKACBB_00609 | 5.2e-182 | P | secondary active sulfate transmembrane transporter activity | |||
JCGKACBB_00610 | 3.4e-94 | |||||
JCGKACBB_00611 | 5.8e-94 | K | Acetyltransferase (GNAT) domain | |||
JCGKACBB_00612 | 2.8e-134 | T | Calcineurin-like phosphoesterase superfamily domain | |||
JCGKACBB_00614 | 5e-114 | rhaS6 | K | helix_turn_helix, arabinose operon control protein | ||
JCGKACBB_00615 | 4.2e-145 | I | Carboxylesterase family | |||
JCGKACBB_00616 | 1.5e-116 | yhjX | P | Major Facilitator Superfamily | ||
JCGKACBB_00617 | 7.3e-33 | yhjX | P | Major Facilitator Superfamily | ||
JCGKACBB_00618 | 9e-111 | bglK_1 | GK | ROK family | ||
JCGKACBB_00619 | 2.6e-231 | mntH | P | H( )-stimulated, divalent metal cation uptake system | ||
JCGKACBB_00620 | 4.4e-188 | hemH | 4.99.1.1, 4.99.1.9 | H | Catalyzes the ferrous insertion into protoporphyrin IX | |
JCGKACBB_00621 | 1.6e-255 | mmuP | E | amino acid | ||
JCGKACBB_00622 | 5.4e-167 | mmuM | 1.5.1.20, 2.1.1.10 | H | homocysteine S-methyltransferase | |
JCGKACBB_00623 | 4.1e-144 | tagE1 | 2.4.1.52 | GT4 | M | Glycosyl transferases group 1 |
JCGKACBB_00624 | 7.5e-132 | tagE1 | 2.4.1.52 | GT4 | M | Glycosyl transferases group 1 |
JCGKACBB_00625 | 1.6e-121 | |||||
JCGKACBB_00626 | 4.1e-212 | metK | 2.5.1.6 | H | Catalyzes the formation of S-adenosylmethionine (AdoMet) from methionine and ATP. The overall synthetic reaction is composed of two sequential steps, AdoMet formation and the subsequent tripolyphosphate hydrolysis which occurs prior to release of AdoMet from the enzyme | |
JCGKACBB_00627 | 4.2e-278 | bmr3 | EGP | Major facilitator Superfamily | ||
JCGKACBB_00628 | 7.3e-23 | N | Cell shape-determining protein MreB | |||
JCGKACBB_00630 | 0.0 | S | Pfam Methyltransferase | |||
JCGKACBB_00631 | 1.8e-268 | tagE2 | 2.4.1.52 | GT4 | M | Glycosyl transferases group 1 |
JCGKACBB_00632 | 1.8e-297 | tagE3 | 2.4.1.52 | GT4 | M | Glycosyl transferases group 1 |
JCGKACBB_00633 | 4.2e-29 | |||||
JCGKACBB_00634 | 1.2e-94 | ytqB | 2.1.1.176 | J | Putative rRNA methylase | |
JCGKACBB_00635 | 8.8e-124 | 3.6.1.27 | I | Acid phosphatase homologues | ||
JCGKACBB_00636 | 0.0 | leuS | 6.1.1.4 | J | Belongs to the class-I aminoacyl-tRNA synthetase family | |
JCGKACBB_00637 | 3.9e-301 | ytgP | S | Polysaccharide biosynthesis protein | ||
JCGKACBB_00638 | 1.8e-136 | rsuA | 5.4.99.19, 5.4.99.22 | J | Belongs to the pseudouridine synthase RsuA family | |
JCGKACBB_00639 | 4.1e-150 | nnrD | 4.2.1.136, 5.1.99.6 | H | Catalyzes the dehydration of the S-form of NAD(P)HX at the expense of ADP, which is converted to AMP. Together with NAD(P)HX epimerase, which catalyzes the epimerization of the S- and R-forms, the enzyme allows the repair of both epimers of NAD(P)HX, a damaged form of NAD(P)H that is a result of enzymatic or heat-dependent hydration | |
JCGKACBB_00640 | 3.8e-273 | pepV | 3.5.1.18 | E | dipeptidase PepV | |
JCGKACBB_00641 | 4.1e-84 | uspA | T | Belongs to the universal stress protein A family | ||
JCGKACBB_00642 | 6.1e-202 | ugpC | 3.6.3.20 | E | Belongs to the ABC transporter superfamily | |
JCGKACBB_00643 | 4e-173 | ugpA | U | Binding-protein-dependent transport system inner membrane component | ||
JCGKACBB_00644 | 2.4e-150 | ugpE | G | ABC transporter permease | ||
JCGKACBB_00645 | 2.1e-260 | ugpB | G | Bacterial extracellular solute-binding protein | ||
JCGKACBB_00646 | 9.9e-126 | glpQ1 | 3.1.4.46 | C | glycerophosphoryl diester phosphodiesterase | |
JCGKACBB_00647 | 3.8e-119 | dck | 2.7.1.74 | F | deoxynucleoside kinase | |
JCGKACBB_00648 | 5.5e-41 | mscL | M | Channel that opens in response to stretch forces in the membrane lipid bilayer. May participate in the regulation of osmotic pressure changes within the cell | ||
JCGKACBB_00649 | 1e-179 | XK27_06930 | V | domain protein | ||
JCGKACBB_00651 | 1.2e-124 | V | Transport permease protein | |||
JCGKACBB_00652 | 2.3e-156 | V | ABC transporter | |||
JCGKACBB_00653 | 4e-176 | K | LytTr DNA-binding domain | |||
JCGKACBB_00655 | 3.1e-155 | msrA | 1.8.4.11, 1.8.4.12 | O | Has an important function as a repair enzyme for proteins that have been inactivated by oxidation. Catalyzes the reversible oxidation-reduction of methionine sulfoxide in proteins to methionine | |
JCGKACBB_00656 | 3.6e-64 | K | helix_turn_helix, mercury resistance | |||
JCGKACBB_00657 | 3.5e-117 | GM | NAD(P)H-binding | |||
JCGKACBB_00658 | 8.1e-124 | ypaH | EG | COG0697 Permeases of the drug metabolite transporter (DMT) superfamily | ||
JCGKACBB_00659 | 6.5e-148 | S | Sucrose-6F-phosphate phosphohydrolase | |||
JCGKACBB_00660 | 1.7e-108 | |||||
JCGKACBB_00661 | 2.2e-224 | pltK | 2.7.13.3 | T | GHKL domain | |
JCGKACBB_00662 | 1.6e-137 | pltR | K | LytTr DNA-binding domain | ||
JCGKACBB_00663 | 4.5e-55 | |||||
JCGKACBB_00664 | 2.5e-59 | |||||
JCGKACBB_00665 | 1.9e-113 | S | CAAX protease self-immunity | |||
JCGKACBB_00666 | 1.6e-85 | ohrR | K | helix_turn_helix multiple antibiotic resistance protein | ||
JCGKACBB_00667 | 1e-90 | |||||
JCGKACBB_00668 | 2.5e-46 | |||||
JCGKACBB_00669 | 0.0 | uvrA2 | L | ABC transporter | ||
JCGKACBB_00672 | 5.9e-52 | |||||
JCGKACBB_00673 | 3.5e-10 | |||||
JCGKACBB_00674 | 2.1e-180 | |||||
JCGKACBB_00675 | 1.9e-89 | gtcA | S | Teichoic acid glycosylation protein | ||
JCGKACBB_00676 | 3.6e-58 | S | Protein of unknown function (DUF1516) | |||
JCGKACBB_00677 | 0.0 | yitJ | 1.5.1.20, 2.1.1.10, 2.1.1.13 | E | catalyzes the formation of 5,10-methylenetetrahydrofolate from 5-methyltetrahydrofolate and S-adenosyl-L-homocysteine and methionine from S-adenosyl-L-methionine and L-homocysteine | |
JCGKACBB_00678 | 0.0 | metE | 2.1.1.14 | E | Catalyzes the transfer of a methyl group from 5- methyltetrahydrofolate to homocysteine resulting in methionine formation | |
JCGKACBB_00679 | 1.2e-307 | S | Protein conserved in bacteria | |||
JCGKACBB_00680 | 1.6e-229 | sat | 2.7.7.4 | H | the enzyme from Thermus thermophilus is dimeric and binds a zinc ion that is coordinated by cysteine and histidine residues that are not found in all related proteins but is found in some thermophilic organisms | |
JCGKACBB_00681 | 7.4e-112 | cysC | 2.7.1.25, 2.7.7.4 | F | Catalyzes the synthesis of activated sulfate | |
JCGKACBB_00682 | 4.2e-175 | nrnA | 3.1.13.3, 3.1.3.7 | S | DHHA1 domain | |
JCGKACBB_00683 | 2.1e-305 | astA | 2.8.2.22 | M | Arylsulfotransferase Ig-like domain | |
JCGKACBB_00684 | 0.0 | yfbS | P | Sodium:sulfate symporter transmembrane region | ||
JCGKACBB_00685 | 2.1e-244 | dinF | V | MatE | ||
JCGKACBB_00686 | 1.9e-31 | |||||
JCGKACBB_00689 | 1.5e-77 | elaA | S | Acetyltransferase (GNAT) domain | ||
JCGKACBB_00690 | 0.0 | argS | 6.1.1.19 | J | Arginyl-tRNA synthetase | |
JCGKACBB_00691 | 1.4e-81 | |||||
JCGKACBB_00692 | 0.0 | yhcA | V | MacB-like periplasmic core domain | ||
JCGKACBB_00693 | 7.6e-107 | |||||
JCGKACBB_00694 | 0.0 | K | PRD domain | |||
JCGKACBB_00695 | 2.4e-62 | S | Domain of unknown function (DUF3284) | |||
JCGKACBB_00696 | 1.4e-51 | chbA | 2.7.1.196, 2.7.1.205 | G | PTS system, Lactose/Cellobiose specific IIA subunit | |
JCGKACBB_00697 | 1.1e-47 | pts15B | 2.7.1.196, 2.7.1.205 | G | PTS system, Lactose/Cellobiose specific IIB subunit | |
JCGKACBB_00698 | 5.2e-219 | pts15C | G | The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active - transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane | ||
JCGKACBB_00699 | 4.7e-290 | 3.2.1.86 | GT1 | G | Belongs to the glycosyl hydrolase 1 family | |
JCGKACBB_00700 | 9.5e-209 | EGP | Major facilitator Superfamily | |||
JCGKACBB_00701 | 2e-114 | M | ErfK YbiS YcfS YnhG | |||
JCGKACBB_00702 | 4e-34 | dltC | 6.1.1.13 | J | Carrier protein involved in the D-alanylation of lipoteichoic acid (LTA). The loading of thioester-linked D-alanine onto DltC is catalyzed by D-alanine--D-alanyl carrier protein ligase DltA. The DltC-carried D-alanyl group is further transferred to cell membrane phosphatidylglycerol (PG) by forming an ester bond, probably catalyzed by DltD. D-alanylation of LTA plays an important role in modulating the properties of the cell wall in Gram-positive bacteria, influencing the net charge of the cell wall | |
JCGKACBB_00703 | 8.4e-284 | ydfD | K | Alanine-glyoxylate amino-transferase | ||
JCGKACBB_00704 | 1.4e-102 | argO | S | LysE type translocator | ||
JCGKACBB_00705 | 2.1e-213 | arcT | 2.6.1.1 | E | Aminotransferase | |
JCGKACBB_00706 | 4.4e-77 | argR | K | Regulates arginine biosynthesis genes | ||
JCGKACBB_00707 | 2.9e-12 | |||||
JCGKACBB_00708 | 0.0 | pbp2A | 2.4.1.129, 3.4.16.4 | GT51 | M | penicillin-binding protein |
JCGKACBB_00709 | 1e-54 | yheA | S | Belongs to the UPF0342 family | ||
JCGKACBB_00710 | 5.7e-233 | yhaO | L | Ser Thr phosphatase family protein | ||
JCGKACBB_00711 | 0.0 | L | AAA domain | |||
JCGKACBB_00712 | 2.9e-187 | yhaM | S | Metal dependent phosphohydrolases with conserved 'HD' motif. | ||
JCGKACBB_00713 | 2.4e-212 | |||||
JCGKACBB_00714 | 5.8e-180 | 3.4.21.102 | M | Peptidase family S41 | ||
JCGKACBB_00715 | 1.2e-177 | K | LysR substrate binding domain | |||
JCGKACBB_00716 | 2.1e-111 | 1.3.5.4 | S | NADPH-dependent FMN reductase | ||
JCGKACBB_00717 | 0.0 | 1.3.5.4 | C | FAD binding domain | ||
JCGKACBB_00718 | 1.7e-99 | |||||
JCGKACBB_00719 | 3.5e-76 | 2.4.2.6 | F | Nucleoside 2-deoxyribosyltransferase | ||
JCGKACBB_00720 | 6.1e-185 | ykoT | GT2 | M | Glycosyl transferase family 2 | |
JCGKACBB_00721 | 0.0 | M | 4-amino-4-deoxy-L-arabinose transferase and related glycosyltransferases of PMT family | |||
JCGKACBB_00722 | 1.7e-19 | S | NUDIX domain | |||
JCGKACBB_00723 | 0.0 | S | membrane | |||
JCGKACBB_00724 | 3.7e-172 | ribD | 1.1.1.193, 3.5.4.26 | H | Converts 2,5-diamino-6-(ribosylamino)-4(3h)-pyrimidinone 5'-phosphate into 5-amino-6-(ribosylamino)-2,4(1h,3h)- pyrimidinedione 5'-phosphate | |
JCGKACBB_00725 | 1.8e-86 | ribE | 2.5.1.9, 3.5.4.25, 4.1.99.12 | H | Riboflavin synthase | |
JCGKACBB_00726 | 6.9e-223 | ribBA | 3.5.4.25, 4.1.99.12 | H | Catalyzes the conversion of GTP to 2,5-diamino-6- ribosylamino-4(3H)-pyrimidinone 5'-phosphate (DARP), formate and pyrophosphate | |
JCGKACBB_00727 | 1.4e-81 | ribH | 2.5.1.78 | H | Catalyzes the formation of 6,7-dimethyl-8- ribityllumazine by condensation of 5-amino-6-(D- ribitylamino)uracil with 3,4-dihydroxy-2-butanone 4-phosphate. This is the penultimate step in the biosynthesis of riboflavin | |
JCGKACBB_00728 | 9.3e-106 | GBS0088 | S | Nucleotidyltransferase | ||
JCGKACBB_00729 | 5.5e-106 | |||||
JCGKACBB_00730 | 7.9e-117 | flpA | 4.1.99.16, 4.2.3.22, 4.2.3.75 | K | helix_turn_helix, cAMP Regulatory protein | |
JCGKACBB_00731 | 1.3e-111 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_00732 | 2.1e-241 | npr | 1.11.1.1 | C | NADH oxidase | |
JCGKACBB_00733 | 0.0 | |||||
JCGKACBB_00734 | 3.5e-61 | |||||
JCGKACBB_00735 | 2.4e-192 | S | Fn3-like domain | |||
JCGKACBB_00736 | 4e-103 | S | WxL domain surface cell wall-binding | |||
JCGKACBB_00737 | 3.5e-78 | S | WxL domain surface cell wall-binding | |||
JCGKACBB_00738 | 1.5e-119 | draG | 3.2.2.24 | O | ADP-ribosylglycohydrolase | |
JCGKACBB_00739 | 3.3e-129 | prsA | 5.2.1.8 | M | Plays a major role in protein secretion by helping the post-translocational extracellular folding of several secreted proteins | |
JCGKACBB_00740 | 5.8e-42 | |||||
JCGKACBB_00741 | 9.9e-82 | hit | FG | histidine triad | ||
JCGKACBB_00742 | 1.6e-134 | ecsA | V | ABC transporter, ATP-binding protein | ||
JCGKACBB_00743 | 6.2e-224 | ecsB | U | ABC transporter | ||
JCGKACBB_00744 | 3.2e-152 | ytmP | 2.7.1.89 | M | Choline/ethanolamine kinase | |
JCGKACBB_00745 | 1.7e-120 | trmB | 2.1.1.297, 2.1.1.33 | J | Catalyzes the formation of N(7)-methylguanine at position 46 (m7G46) in tRNA | |
JCGKACBB_00746 | 1.6e-54 | ytzB | S | Peptidase propeptide and YPEB domain | ||
JCGKACBB_00747 | 7.4e-115 | pheT | 6.1.1.20 | J | Belongs to the phenylalanyl-tRNA synthetase beta subunit family. Type 1 subfamily | |
JCGKACBB_00748 | 0.0 | sftA | D | Belongs to the FtsK SpoIIIE SftA family | ||
JCGKACBB_00749 | 1.1e-253 | mpl | 6.3.2.4, 6.3.2.45, 6.3.2.8 | M | Belongs to the MurCDEF family | |
JCGKACBB_00750 | 7.9e-21 | S | Virus attachment protein p12 family | |||
JCGKACBB_00751 | 0.0 | feoB | P | transporter of a GTP-driven Fe(2 ) uptake system | ||
JCGKACBB_00752 | 1.3e-34 | feoA | P | FeoA domain | ||
JCGKACBB_00753 | 4.2e-144 | sufC | O | FeS assembly ATPase SufC | ||
JCGKACBB_00754 | 2.6e-244 | sufD | O | FeS assembly protein SufD | ||
JCGKACBB_00755 | 3.1e-234 | sufS | 2.8.1.7, 4.4.1.16 | E | Catalyzes the removal of elemental sulfur and selenium atoms from L-cysteine, L-cystine, L-selenocysteine, and L- selenocystine to produce L-alanine | |
JCGKACBB_00756 | 7.1e-83 | nifU | C | SUF system FeS assembly protein, NifU family | ||
JCGKACBB_00757 | 4.2e-272 | sufB | O | assembly protein SufB | ||
JCGKACBB_00758 | 5.5e-45 | yitW | S | Iron-sulfur cluster assembly protein | ||
JCGKACBB_00759 | 3.1e-111 | hipB | K | Helix-turn-helix | ||
JCGKACBB_00760 | 4.5e-121 | ybhL | S | Belongs to the BI1 family | ||
JCGKACBB_00761 | 0.0 | polA | 2.7.7.7 | L | In addition to polymerase activity, this DNA polymerase exhibits 5'-3' exonuclease activity | |
JCGKACBB_00762 | 5.9e-157 | fpg | 3.2.2.23, 4.2.99.18 | L | Involved in base excision repair of DNA damaged by oxidation or by mutagenic agents. Acts as DNA glycosylase that recognizes and removes damaged bases. Has a preference for oxidized purines, such as 7,8-dihydro-8-oxoguanine (8-oxoG). Has AP (apurinic apyrimidinic) lyase activity and introduces nicks in the DNA strand. Cleaves the DNA backbone by beta-delta elimination to generate a single-strand break at the site of the removed base with both 3'- and 5'-phosphates | |
JCGKACBB_00763 | 1e-102 | coaE | 2.7.1.24 | F | Catalyzes the phosphorylation of the 3'-hydroxyl group of dephosphocoenzyme A to form coenzyme A | |
JCGKACBB_00764 | 4.6e-91 | nrdR | K | Negatively regulates transcription of bacterial ribonucleotide reductase nrd genes and operons by binding to NrdR- boxes | ||
JCGKACBB_00765 | 1.9e-248 | dnaB | L | replication initiation and membrane attachment | ||
JCGKACBB_00766 | 2.1e-171 | dnaI | L | Primosomal protein DnaI | ||
JCGKACBB_00767 | 0.0 | thrS | 6.1.1.3 | J | Catalyzes the attachment of threonine to tRNA(Thr) in a two-step reaction L-threonine is first activated by ATP to form Thr-AMP and then transferred to the acceptor end of tRNA(Thr) | |
JCGKACBB_00768 | 1.8e-84 | infC | J | IF-3 binds to the 30S ribosomal subunit and shifts the equilibrum between 70S ribosomes and their 50S and 30S subunits in favor of the free subunits, thus enhancing the availability of 30S subunits on which protein synthesis initiation begins | ||
JCGKACBB_00769 | 1.9e-26 | rpmI | J | Belongs to the bacterial ribosomal protein bL35 family | ||
JCGKACBB_00770 | 7.3e-56 | rplT | J | Binds directly to 23S ribosomal RNA and is necessary for the in vitro assembly process of the 50S ribosomal subunit. It is not involved in the protein synthesizing functions of that subunit | ||
JCGKACBB_00771 | 3.8e-56 | |||||
JCGKACBB_00772 | 3.2e-239 | yrvN | L | AAA C-terminal domain | ||
JCGKACBB_00773 | 8e-196 | qor | 1.1.1.1, 1.6.5.5 | C | Belongs to the zinc-containing alcohol dehydrogenase family. Quinone oxidoreductase subfamily | |
JCGKACBB_00774 | 1e-62 | hxlR | K | Transcriptional regulator, HxlR family | ||
JCGKACBB_00775 | 9.7e-135 | racD | 5.1.1.13 | G | Belongs to the aspartate glutamate racemases family | |
JCGKACBB_00777 | 3e-252 | dtpT | U | amino acid peptide transporter | ||
JCGKACBB_00778 | 2e-151 | yjjH | S | Calcineurin-like phosphoesterase | ||
JCGKACBB_00782 | 1.2e-49 | 5.3.3.19 | S | Cupin 2, conserved barrel domain protein | ||
JCGKACBB_00783 | 9.3e-53 | S | Cupin domain | |||
JCGKACBB_00784 | 7.1e-166 | pphA | 3.1.3.16 | T | Calcineurin-like phosphoesterase | |
JCGKACBB_00785 | 4.7e-194 | ybiR | P | Citrate transporter | ||
JCGKACBB_00786 | 1.6e-151 | pnuC | H | nicotinamide mononucleotide transporter | ||
JCGKACBB_00787 | 1.7e-137 | proC | 1.5.1.2 | E | Catalyzes the reduction of 1-pyrroline-5-carboxylate (PCA) to L-proline | |
JCGKACBB_00788 | 6.1e-221 | nagA | 3.5.1.25 | G | Belongs to the metallo-dependent hydrolases superfamily. NagA family | |
JCGKACBB_00789 | 1.6e-123 | gntR1 | K | UbiC transcription regulator-associated domain protein | ||
JCGKACBB_00790 | 1.3e-136 | tagA | 2.4.1.187 | GT26 | F | Catalyzes the conversion of GlcNAc-PP-undecaprenol into ManNAc-GlcNAc-PP-undecaprenol, the first committed lipid intermediate in the de novo synthesis of teichoic acid |
JCGKACBB_00791 | 5.2e-289 | pncB | 6.3.4.21 | F | Catalyzes the synthesis of beta-nicotinate D- ribonucleotide from nicotinate and 5-phospho-D-ribose 1-phosphate at the expense of ATP | |
JCGKACBB_00792 | 4.7e-154 | nadE | 6.3.1.5 | F | Catalyzes the ATP-dependent amidation of deamido-NAD to form NAD. Uses ammonia as a nitrogen source | |
JCGKACBB_00793 | 0.0 | pacL | 3.6.3.8 | P | P-type ATPase | |
JCGKACBB_00794 | 8.9e-72 | |||||
JCGKACBB_00795 | 0.0 | yhgF | K | Tex-like protein N-terminal domain protein | ||
JCGKACBB_00796 | 4.4e-82 | ydcK | S | Belongs to the SprT family | ||
JCGKACBB_00797 | 4e-237 | hom | 1.1.1.3, 2.7.2.4 | E | homoserine dehydrogenase | |
JCGKACBB_00798 | 6.2e-157 | thrB | 2.7.1.39 | F | Catalyzes the ATP-dependent phosphorylation of L- homoserine to L-homoserine phosphate | |
JCGKACBB_00800 | 4.5e-54 | sip | L | Belongs to the 'phage' integrase family | ||
JCGKACBB_00802 | 2.5e-291 | lysS | 6.1.1.6 | J | Belongs to the class-II aminoacyl-tRNA synthetase family | |
JCGKACBB_00803 | 1.1e-189 | dus | J | Catalyzes the synthesis of 5,6-dihydrouridine (D), a modified base found in the D-loop of most tRNAs, via the reduction of the C5-C6 double bond in target uridines | ||
JCGKACBB_00804 | 2e-163 | hslO | O | Redox regulated molecular chaperone. Protects both thermally unfolding and oxidatively damaged proteins from irreversible aggregation. Plays an important role in the bacterial defense system toward oxidative stress | ||
JCGKACBB_00805 | 0.0 | ftsH | O | Acts as a processive, ATP-dependent zinc metallopeptidase for both cytoplasmic and membrane proteins. Plays a role in the quality control of integral membrane proteins | ||
JCGKACBB_00806 | 1.7e-96 | hpt | 2.4.2.8 | F | Belongs to the purine pyrimidine phosphoribosyltransferase family | |
JCGKACBB_00807 | 2.2e-254 | tilS | 2.4.2.8, 6.3.4.19 | J | Ligates lysine onto the cytidine present at position 34 of the AUA codon-specific tRNA(Ile) that contains the anticodon CAU, in an ATP-dependent manner. Cytidine is converted to lysidine, thus changing the amino acid specificity of the tRNA from methionine to isoleucine | |
JCGKACBB_00808 | 3.1e-74 | yabR | J | RNA binding | ||
JCGKACBB_00809 | 1.1e-63 | divIC | D | Septum formation initiator | ||
JCGKACBB_00811 | 2.2e-42 | yabO | J | S4 domain protein | ||
JCGKACBB_00812 | 1.6e-283 | yabM | S | Polysaccharide biosynthesis protein | ||
JCGKACBB_00813 | 0.0 | mfd | L | Couples transcription and DNA repair by recognizing RNA polymerase (RNAP) stalled at DNA lesions. Mediates ATP-dependent release of RNAP and its truncated transcript from the DNA, and recruitment of nucleotide excision repair machinery to the damaged site | ||
JCGKACBB_00814 | 1.5e-100 | pth | 3.1.1.29 | J | The natural substrate for this enzyme may be peptidyl- tRNAs which drop off the ribosome during protein synthesis | |
JCGKACBB_00815 | 3.5e-177 | ldh | 1.1.1.27 | C | Belongs to the LDH MDH superfamily. LDH family | |
JCGKACBB_00816 | 4.2e-264 | S | Putative peptidoglycan binding domain | |||
JCGKACBB_00817 | 2.1e-114 | S | (CBS) domain | |||
JCGKACBB_00818 | 4.1e-84 | S | QueT transporter | |||
JCGKACBB_00819 | 3.9e-187 | argF | 2.1.3.3 | E | Reversibly catalyzes the transfer of the carbamoyl group from carbamoyl phosphate (CP) to the N(epsilon) atom of ornithine (ORN) to produce L-citrulline | |
JCGKACBB_00820 | 5.1e-215 | argD | 2.6.1.11, 2.6.1.17 | E | acetylornithine | |
JCGKACBB_00821 | 9.4e-130 | argB | 2.7.2.8 | F | Belongs to the acetylglutamate kinase family. ArgB subfamily | |
JCGKACBB_00822 | 6.9e-231 | argJ | 2.3.1.1, 2.3.1.35, 2.7.2.8 | E | Catalyzes two activities which are involved in the cyclic version of arginine biosynthesis the synthesis of N- acetylglutamate from glutamate and acetyl-CoA as the acetyl donor, and of ornithine by transacetylation between N(2)-acetylornithine and glutamate | |
JCGKACBB_00823 | 3.6e-188 | argC | 1.2.1.38 | E | Catalyzes the NADPH-dependent reduction of N-acetyl-5- glutamyl phosphate to yield N-acetyl-L-glutamate 5-semialdehyde | |
JCGKACBB_00824 | 2.2e-204 | carA | 6.3.5.5 | F | Carbamoyl-phosphate synthetase glutamine chain | |
JCGKACBB_00825 | 0.0 | carB | 6.3.5.5 | F | Carbamoyl-phosphate synthase | |
JCGKACBB_00826 | 5.5e-133 | P | ATPases associated with a variety of cellular activities | |||
JCGKACBB_00827 | 7.5e-130 | ssuC2 | U | Binding-protein-dependent transport system inner membrane component | ||
JCGKACBB_00828 | 5e-193 | P | ABC transporter, substratebinding protein | |||
JCGKACBB_00829 | 0.0 | kup | P | Transport of potassium into the cell | ||
JCGKACBB_00830 | 4.7e-64 | ndoA | L | Toxic component of a toxin-antitoxin (TA) module | ||
JCGKACBB_00831 | 4.9e-215 | alr | 5.1.1.1 | E | Catalyzes the interconversion of L-alanine and D- alanine. May also act on other amino acids | |
JCGKACBB_00832 | 1e-60 | acpS | 2.7.6.3, 2.7.8.7, 5.1.1.1 | I | Transfers the 4'-phosphopantetheine moiety from coenzyme A to a Ser of acyl-carrier-protein | |
JCGKACBB_00833 | 1.5e-257 | cshA | 3.6.4.13 | F | DEAD-box RNA helicase possibly involved in RNA degradation. Unwinds dsRNA in both 5'- and 3'-directions, has RNA- dependent ATPase activity | |
JCGKACBB_00834 | 5.6e-261 | murF | 6.3.2.10, 6.3.2.13 | M | Involved in cell wall formation. Catalyzes the final step in the synthesis of UDP-N-acetylmuramoyl-pentapeptide, the precursor of murein | |
JCGKACBB_00835 | 7.5e-146 | |||||
JCGKACBB_00836 | 5.1e-138 | htpX | O | Belongs to the peptidase M48B family | ||
JCGKACBB_00837 | 1.7e-91 | lemA | S | LemA family | ||
JCGKACBB_00838 | 3.5e-126 | srtA | 3.4.22.70 | M | sortase family | |
JCGKACBB_00839 | 2.7e-213 | J | translation release factor activity | |||
JCGKACBB_00840 | 7.8e-41 | rpmE2 | J | Ribosomal protein L31 | ||
JCGKACBB_00841 | 1.1e-239 | rho | K | Facilitates transcription termination by a mechanism that involves Rho binding to the nascent RNA, activation of Rho's RNA-dependent ATPase activity, and release of the mRNA from the DNA template | ||
JCGKACBB_00842 | 3.6e-238 | murA | 2.5.1.7 | M | Cell wall formation. Adds enolpyruvyl to UDP-N- acetylglucosamine | |
JCGKACBB_00843 | 2.5e-26 | |||||
JCGKACBB_00844 | 6.4e-131 | S | YheO-like PAS domain | |||
JCGKACBB_00845 | 8.4e-157 | sdaAA | 4.3.1.17 | E | L-serine dehydratase, iron-sulfur-dependent, alpha subunit | |
JCGKACBB_00846 | 9.8e-123 | sdaAB | 4.3.1.17 | E | Serine dehydratase beta chain | |
JCGKACBB_00847 | 2.3e-229 | tdcC | E | amino acid | ||
JCGKACBB_00848 | 4.7e-246 | serS | 6.1.1.11 | J | Catalyzes the attachment of serine to tRNA(Ser). Is also able to aminoacylate tRNA(Sec) with serine, to form the misacylated tRNA L-seryl-tRNA(Sec), which will be further converted into selenocysteinyl-tRNA(Sec) | |
JCGKACBB_00849 | 3.8e-309 | pyrG | 6.3.4.2 | F | Catalyzes the ATP-dependent amination of UTP to CTP with either L-glutamine or ammonia as the source of nitrogen. Regulates intracellular CTP levels through interactions with the four ribonucleotide triphosphates | |
JCGKACBB_00850 | 4e-46 | rpoE | K | Participates in both the initiation and recycling phases of transcription. In the presence of the delta subunit, RNAP displays an increased specificity of transcription, a decreased affinity for nucleic acids, and an increased efficiency of RNA synthesis because of enhanced recycling | ||
JCGKACBB_00851 | 3.8e-78 | ywiB | S | Domain of unknown function (DUF1934) | ||
JCGKACBB_00852 | 4.8e-154 | lipL | 2.3.1.200, 2.3.1.204 | H | biotin lipoate A B protein ligase | |
JCGKACBB_00853 | 9e-264 | ywfO | S | HD domain protein | ||
JCGKACBB_00854 | 1.7e-148 | yxeH | S | hydrolase | ||
JCGKACBB_00855 | 2.7e-124 | |||||
JCGKACBB_00856 | 2.5e-181 | S | DUF218 domain | |||
JCGKACBB_00857 | 1.2e-177 | prs | 2.7.6.1 | F | Involved in the biosynthesis of the central metabolite phospho-alpha-D-ribosyl-1-pyrophosphate (PRPP) via the transfer of pyrophosphoryl group from ATP to 1-hydroxyl of ribose-5-phosphate (Rib-5-P) | |
JCGKACBB_00858 | 2.2e-148 | bla1 | 3.5.2.6 | V | Beta-lactamase enzyme family | |
JCGKACBB_00859 | 3.9e-206 | glmU | 2.3.1.157, 2.7.7.23 | M | Catalyzes the last two sequential reactions in the de novo biosynthetic pathway for UDP-N-acetylglucosamine (UDP- GlcNAc). The C-terminal domain catalyzes the transfer of acetyl group from acetyl coenzyme A to glucosamine-1-phosphate (GlcN-1-P) to produce N-acetylglucosamine-1-phosphate (GlcNAc-1-P), which is converted into UDP-GlcNAc by the transfer of uridine 5- monophosphate (from uridine 5-triphosphate), a reaction catalyzed by the N-terminal domain | |
JCGKACBB_00860 | 6.6e-148 | purR | 2.4.2.22, 2.4.2.7 | F | pur operon repressor | |
JCGKACBB_00861 | 2.1e-31 | |||||
JCGKACBB_00862 | 1.7e-43 | ankB | S | ankyrin repeats | ||
JCGKACBB_00864 | 9.2e-131 | znuB | U | ABC 3 transport family | ||
JCGKACBB_00865 | 9.8e-129 | fhuC | 3.6.3.35 | P | ABC transporter | |
JCGKACBB_00866 | 4.3e-67 | S | Prolyl oligopeptidase family | |||
JCGKACBB_00867 | 2e-93 | S | Prolyl oligopeptidase family | |||
JCGKACBB_00868 | 8.3e-162 | ispE | 2.1.1.182, 2.7.1.148 | F | Catalyzes the phosphorylation of the position 2 hydroxy group of 4-diphosphocytidyl-2C-methyl-D-erythritol | |
JCGKACBB_00869 | 3.2e-37 | veg | S | Biofilm formation stimulator VEG | ||
JCGKACBB_00870 | 8e-160 | ksgA | 2.1.1.182 | J | Specifically dimethylates two adjacent adenosines (A1518 and A1519) in the loop of a conserved hairpin near the 3'-end of 16S rRNA in the 30S particle. May play a critical role in biogenesis of 30S subunits | |
JCGKACBB_00871 | 1.8e-96 | rnmV | 3.1.26.8 | J | Required for correct processing of both the 5' and 3' ends of 5S rRNA precursor. Cleaves both sides of a double-stranded region yielding mature 5S rRNA in one step | |
JCGKACBB_00872 | 1.5e-146 | tatD | L | hydrolase, TatD family | ||
JCGKACBB_00874 | 3.5e-42 | mutR | K | sequence-specific DNA binding | ||
JCGKACBB_00875 | 1.2e-52 | mutR | K | sequence-specific DNA binding | ||
JCGKACBB_00876 | 3.7e-213 | bcr1 | EGP | Major facilitator Superfamily | ||
JCGKACBB_00878 | 0.0 | metG | 6.1.1.10, 6.1.1.20 | J | Is required not only for elongation of protein synthesis but also for the initiation of all mRNA translation through initiator tRNA(fMet) aminoacylation | |
JCGKACBB_00879 | 6.8e-71 | mutT | 3.6.1.55 | F | DNA mismatch repair protein MutT | |
JCGKACBB_00880 | 9.9e-160 | yunF | F | Protein of unknown function DUF72 | ||
JCGKACBB_00881 | 8.6e-133 | cobB | K | SIR2 family | ||
JCGKACBB_00882 | 3.1e-178 | |||||
JCGKACBB_00883 | 4e-229 | mvaA | 1.1.1.34, 1.1.1.88, 2.3.1.9 | C | Belongs to the HMG-CoA reductase family | |
JCGKACBB_00884 | 8.2e-168 | ppx | 3.6.1.11, 3.6.1.40 | FP | exopolyphosphatase | |
JCGKACBB_00885 | 4e-190 | dus | J | Catalyzes the synthesis of 5,6-dihydrouridine (D), a modified base found in the D-loop of most tRNAs, via the reduction of the C5-C6 double bond in target uridines | ||
JCGKACBB_00886 | 1.2e-132 | K | Helix-turn-helix domain, rpiR family | |||
JCGKACBB_00887 | 1e-162 | GK | ROK family | |||
JCGKACBB_00888 | 7.3e-296 | celA | 3.2.1.86 | GT1 | G | Belongs to the glycosyl hydrolase 1 family |
JCGKACBB_00889 | 3.3e-250 | chbC | G | The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active - transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane | ||
JCGKACBB_00890 | 7.6e-76 | S | Domain of unknown function (DUF3284) | |||
JCGKACBB_00891 | 3.9e-24 | |||||
JCGKACBB_00892 | 2.7e-252 | celB | G | The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active - transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane | ||
JCGKACBB_00893 | 9e-130 | K | UbiC transcription regulator-associated domain protein | |||
JCGKACBB_00894 | 1.4e-189 | trpS | 6.1.1.2 | J | Belongs to the class-I aminoacyl-tRNA synthetase family | |
JCGKACBB_00895 | 9.5e-141 | mtnU | 3.5.1.3 | S | Carbon-nitrogen hydrolase | |
JCGKACBB_00896 | 0.0 | helD | 3.6.4.12 | L | DNA helicase | |
JCGKACBB_00897 | 1.2e-157 | glxR | 1.1.1.31, 1.1.1.60 | I | Dehydrogenase | |
JCGKACBB_00898 | 4.8e-137 | terC | P | membrane | ||
JCGKACBB_00899 | 5.3e-85 | maa | 2.3.1.18, 2.3.1.79 | S | Maltose acetyltransferase | |
JCGKACBB_00900 | 3.4e-126 | hisC | 2.6.1.9 | E | Belongs to the class-II pyridoxal-phosphate-dependent aminotransferase family. Histidinol-phosphate aminotransferase subfamily | |
JCGKACBB_00901 | 3.9e-63 | hisC | 2.6.1.9 | E | Belongs to the class-II pyridoxal-phosphate-dependent aminotransferase family. Histidinol-phosphate aminotransferase subfamily | |
JCGKACBB_00902 | 7.6e-52 | hisE | 3.5.4.19, 3.6.1.31, 5.3.1.16 | E | phosphoribosyl-ATP diphosphatase activity | |
JCGKACBB_00903 | 3.8e-59 | hisI | 3.5.4.19, 3.5.4.25, 3.6.1.31, 5.3.1.16 | E | Catalyzes the hydrolysis of the adenine ring of phosphoribosyl-AMP | |
JCGKACBB_00904 | 1.7e-134 | hisF | 3.5.4.19, 3.6.1.31 | E | IGPS catalyzes the conversion of PRFAR and glutamine to IGP, AICAR and glutamate. The HisF subunit catalyzes the cyclization activity that produces IGP and AICAR from PRFAR using the ammonia provided by the HisH subunit | |
JCGKACBB_00905 | 3.5e-129 | hisA | 5.3.1.16 | E | 1-(5-phosphoribosyl)-5- (5-phosphoribosylamino)methylideneamino imidazole-4-carboxamide isomerase | |
JCGKACBB_00906 | 4.1e-110 | hisH | E | IGPS catalyzes the conversion of PRFAR and glutamine to IGP, AICAR and glutamate. The HisH subunit provides the glutamine amidotransferase activity that produces the ammonia necessary to HisF for the synthesis of IGP and AICAR | ||
JCGKACBB_00907 | 7.9e-108 | hisB | 1.1.1.23, 2.6.1.9, 3.1.3.15, 4.2.1.19 | E | imidazoleglycerol-phosphate dehydratase | |
JCGKACBB_00908 | 1.2e-233 | hisD | 1.1.1.23, 1.1.1.308 | E | Catalyzes the sequential NAD-dependent oxidations of L- histidinol to L-histidinaldehyde and then to L-histidine | |
JCGKACBB_00909 | 4.3e-118 | hisG | 2.4.2.17 | F | Catalyzes the condensation of ATP and 5-phosphoribose 1- diphosphate to form N'-(5'-phosphoribosyl)-ATP (PR-ATP). Has a crucial role in the pathway because the rate of histidine biosynthesis seems to be controlled primarily by regulation of HisG enzymatic activity | |
JCGKACBB_00910 | 8e-213 | hisZ | 2.4.2.17, 6.1.1.21 | E | Required for the first step of histidine biosynthesis. May allow the feedback regulation of ATP phosphoribosyltransferase activity by histidine | |
JCGKACBB_00911 | 3.8e-164 | hisK | 3.1.3.15 | E | Histidinol phosphate phosphatase, HisJ | |
JCGKACBB_00912 | 7.9e-216 | ysaA | V | RDD family | ||
JCGKACBB_00913 | 7.6e-166 | corA | P | CorA-like Mg2+ transporter protein | ||
JCGKACBB_00914 | 2.1e-55 | S | Domain of unknown function (DU1801) | |||
JCGKACBB_00915 | 5.9e-91 | rmeB | K | transcriptional regulator, MerR family | ||
JCGKACBB_00916 | 6.5e-148 | GM | Belongs to the short-chain dehydrogenases reductases (SDR) family | |||
JCGKACBB_00917 | 8.6e-98 | J | glyoxalase III activity | |||
JCGKACBB_00918 | 8e-199 | asd | 1.2.1.11 | E | Catalyzes the NADPH-dependent formation of L-aspartate- semialdehyde (L-ASA) by the reductive dephosphorylation of L- aspartyl-4-phosphate | |
JCGKACBB_00919 | 3.7e-34 | |||||
JCGKACBB_00920 | 9.2e-112 | S | Protein of unknown function (DUF1211) | |||
JCGKACBB_00921 | 0.0 | ydgH | S | MMPL family | ||
JCGKACBB_00922 | 6.7e-163 | M | domain protein | |||
JCGKACBB_00923 | 4.8e-109 | M | domain protein | |||
JCGKACBB_00924 | 1.1e-74 | yjcF | S | Acetyltransferase (GNAT) domain | ||
JCGKACBB_00925 | 0.0 | ltaS | 2.7.8.20 | M | Phosphoglycerol transferase and related proteins, alkaline phosphatase superfamily | |
JCGKACBB_00926 | 0.0 | glpQ | 3.1.4.46 | C | phosphodiesterase | |
JCGKACBB_00927 | 2.3e-184 | trxB1 | 1.18.1.2, 1.19.1.1 | C | Ferredoxin--NADP reductase | |
JCGKACBB_00928 | 4.4e-143 | S | Alpha/beta hydrolase of unknown function (DUF915) | |||
JCGKACBB_00929 | 1.1e-307 | uup | S | ABC transporter, ATP-binding protein | ||
JCGKACBB_00930 | 1.4e-119 | rex | K | Modulates transcription in response to changes in cellular NADH NAD( ) redox state | ||
JCGKACBB_00931 | 1e-108 | ydiL | S | CAAX protease self-immunity | ||
JCGKACBB_00932 | 1e-31 | groS | O | Binds to Cpn60 in the presence of Mg-ATP and suppresses the ATPase activity of the latter | ||
JCGKACBB_00933 | 5.5e-292 | groL | O | Prevents misfolding and promotes the refolding and proper assembly of unfolded polypeptides generated under stress conditions | ||
JCGKACBB_00934 | 0.0 | ydaO | E | amino acid | ||
JCGKACBB_00935 | 2.7e-181 | tagO | 2.7.8.33, 2.7.8.35 | M | transferase | |
JCGKACBB_00936 | 4.3e-145 | pstS | P | Phosphate | ||
JCGKACBB_00937 | 1.7e-114 | yvyE | 3.4.13.9 | S | YigZ family | |
JCGKACBB_00938 | 5.7e-258 | comFA | L | Helicase C-terminal domain protein | ||
JCGKACBB_00939 | 7.5e-126 | comFC | S | Competence protein | ||
JCGKACBB_00940 | 3.5e-100 | hpf | J | Required for dimerization of active 70S ribosomes into 100S ribosomes in stationary phase | ||
JCGKACBB_00941 | 0.0 | secA | U | Part of the Sec protein translocase complex. Interacts with the SecYEG preprotein conducting channel. Has a central role in coupling the hydrolysis of ATP to the transfer of proteins into and across the cell membrane, serving as an ATP-driven molecular motor driving the stepwise translocation of polypeptide chains across the membrane | ||
JCGKACBB_00942 | 3.2e-203 | prfB | J | Peptide chain release factor 2 directs the termination of translation in response to the peptide chain termination codons UGA and UAA | ||
JCGKACBB_00943 | 4.7e-216 | minJ | O | Domain present in PSD-95, Dlg, and ZO-1/2. | ||
JCGKACBB_00944 | 1.5e-132 | K | response regulator | |||
JCGKACBB_00945 | 1e-249 | phoR | 2.7.13.3 | T | Histidine kinase | |
JCGKACBB_00946 | 4.3e-150 | pstS | P | Phosphate | ||
JCGKACBB_00947 | 2e-161 | pstC | P | probably responsible for the translocation of the substrate across the membrane | ||
JCGKACBB_00948 | 5.9e-155 | pstA | P | Phosphate transport system permease protein PstA | ||
JCGKACBB_00949 | 1.1e-147 | pstB | 3.6.3.27 | P | Part of the ABC transporter complex PstSACB involved in phosphate import. Responsible for energy coupling to the transport system | |
JCGKACBB_00950 | 1e-139 | pstB | 3.6.3.27 | P | Part of the ABC transporter complex PstSACB involved in phosphate import. Responsible for energy coupling to the transport system | |
JCGKACBB_00951 | 8.3e-117 | phoU | P | Plays a role in the regulation of phosphate uptake | ||
JCGKACBB_00952 | 2e-49 | pspC | KT | positive regulation of macromolecule biosynthetic process | ||
JCGKACBB_00953 | 9.2e-54 | yvlD | S | Mycobacterial 4 TMS phage holin, superfamily IV | ||
JCGKACBB_00954 | 1.4e-176 | hprK | F | Catalyzes the ATP- as well as the pyrophosphate- dependent phosphorylation of a specific serine residue in HPr, a phosphocarrier protein of the phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS). HprK P also catalyzes the pyrophosphate-producing, inorganic phosphate-dependent dephosphorylation (phosphorolysis) of seryl-phosphorylated HPr (P- Ser-HPr). The two antagonistic activities of HprK P are regulated by several intracellular metabolites, which change their concentration in response to the absence or presence of rapidly metabolisable carbon sources (glucose, fructose, etc.) in the growth medium. Therefore, by controlling the phosphorylation state of HPr, HPrK P is a sensor enzyme that plays a major role in the regulation of carbon metabolism and sugar transport it mediates carbon catabolite repression (CCR), and regulates PTS-catalyzed carbohydrate uptake and inducer exclusion | ||
JCGKACBB_00955 | 6.6e-164 | lgt | 2.1.1.199 | M | Transfers the N-acyl diglyceride group on what will become the N-terminal cysteine of membrane lipoproteins | |
JCGKACBB_00956 | 8.5e-182 | gpsA | 1.1.1.94 | I | Glycerol-3-phosphate dehydrogenase | |
JCGKACBB_00957 | 2.1e-171 | galU | 2.7.7.9 | M | UTP-glucose-1-phosphate uridylyltransferase | |
JCGKACBB_00958 | 4.1e-124 | yliE | T | Putative diguanylate phosphodiesterase | ||
JCGKACBB_00959 | 1.4e-270 | nox | C | NADH oxidase | ||
JCGKACBB_00960 | 2.2e-176 | trxB | 1.8.1.9 | C | Belongs to the class-II pyridine nucleotide-disulfide oxidoreductase family | |
JCGKACBB_00961 | 2e-109 | yviA | S | Protein of unknown function (DUF421) | ||
JCGKACBB_00962 | 1.1e-31 | S | Protein of unknown function (DUF3290) | |||
JCGKACBB_00963 | 0.0 | pgm | 5.4.2.2, 5.4.2.8 | G | Phosphoglucomutase phosphomannomutase, alpha beta alpha domain | |
JCGKACBB_00964 | 2.1e-131 | yliE | T | Putative diguanylate phosphodiesterase | ||
JCGKACBB_00965 | 8.9e-259 | nox | S | Pyridine nucleotide-disulphide oxidoreductase, dimerisation domain | ||
JCGKACBB_00966 | 1.1e-103 | ddpX | 3.4.13.22 | E | Catalyzes hydrolysis of the D-alanyl-D-alanine dipeptide | |
JCGKACBB_00967 | 1.9e-209 | norA | EGP | Major facilitator Superfamily | ||
JCGKACBB_00968 | 1.4e-116 | yfbR | S | HD containing hydrolase-like enzyme | ||
JCGKACBB_00969 | 0.0 | uvrB | L | damaged site, the DNA wraps around one UvrB monomer. DNA wrap is dependent on ATP binding by UvrB and probably causes local melting of the DNA helix, facilitating insertion of UvrB beta-hairpin between the DNA strands. Then UvrB probes one DNA strand for the presence of a lesion. If a lesion is found the UvrA subunits dissociate and the UvrB-DNA preincision complex is formed. This complex is subsequently bound by UvrC and the second UvrB is released. If no lesion is found, the DNA wraps around the other UvrB subunit that will check the other stand for damage | ||
JCGKACBB_00970 | 0.0 | uvrA | L | The UvrABC repair system catalyzes the recognition and processing of DNA lesions. UvrA is an ATPase and a DNA-binding protein. A damage recognition complex composed of 2 UvrA and 2 UvrB subunits scans DNA for abnormalities. When the presence of a lesion has been verified by UvrB, the UvrA molecules dissociate | ||
JCGKACBB_00971 | 6.7e-89 | luxS | 4.4.1.21 | H | Involved in the synthesis of autoinducer 2 (AI-2) which is secreted by bacteria and is used to communicate both the cell density and the metabolic potential of the environment. The regulation of gene expression in response to changes in cell density is called quorum sensing. Catalyzes the transformation of S-ribosylhomocysteine (RHC) to homocysteine (HC) and 4,5- dihydroxy-2,3-pentadione (DPD) | |
JCGKACBB_00972 | 1.8e-231 | argG | 6.3.4.5 | E | Belongs to the argininosuccinate synthase family. Type 1 subfamily | |
JCGKACBB_00973 | 1.3e-262 | argH | 4.3.2.1 | E | argininosuccinate lyase | |
JCGKACBB_00974 | 9.3e-87 | S | Short repeat of unknown function (DUF308) | |||
JCGKACBB_00975 | 1.1e-161 | rapZ | S | Displays ATPase and GTPase activities | ||
JCGKACBB_00976 | 1.9e-189 | ybhK | S | Required for morphogenesis under gluconeogenic growth conditions | ||
JCGKACBB_00977 | 3.7e-168 | whiA | K | May be required for sporulation | ||
JCGKACBB_00978 | 7.6e-289 | oppA | E | ABC transporter, substratebinding protein | ||
JCGKACBB_00979 | 6.7e-176 | 1.1.1.26 | CH | Belongs to the D-isomer specific 2-hydroxyacid dehydrogenase family | ||
JCGKACBB_00980 | 3e-102 | clpP | 3.4.21.92 | O | Cleaves peptides in various proteins in a process that requires ATP hydrolysis. Has a chymotrypsin-like activity. Plays a major role in the degradation of misfolded proteins | |
JCGKACBB_00982 | 4.2e-245 | rpoN | K | Sigma-54 factor, core binding domain | ||
JCGKACBB_00983 | 7.3e-189 | cggR | K | Putative sugar-binding domain | ||
JCGKACBB_00984 | 2.6e-191 | gap | 1.2.1.12 | G | Belongs to the glyceraldehyde-3-phosphate dehydrogenase family | |
JCGKACBB_00985 | 8.1e-224 | pgk | 2.7.2.3, 5.3.1.1 | F | Belongs to the phosphoglycerate kinase family | |
JCGKACBB_00986 | 1.2e-137 | tpiA | 2.7.2.3, 5.3.1.1 | G | Involved in the gluconeogenesis. Catalyzes stereospecifically the conversion of dihydroxyacetone phosphate (DHAP) to D-glyceraldehyde-3-phosphate (G3P) | |
JCGKACBB_00987 | 1.6e-249 | eno | 4.2.1.11 | G | Catalyzes the reversible conversion of 2- phosphoglycerate into phosphoenolpyruvate. It is essential for the degradation of carbohydrates via glycolysis | |
JCGKACBB_00988 | 2.9e-130 | |||||
JCGKACBB_00989 | 6.6e-295 | clcA | P | chloride | ||
JCGKACBB_00990 | 1.2e-30 | secG | U | Preprotein translocase | ||
JCGKACBB_00991 | 5e-139 | est | 3.1.1.1 | S | Serine aminopeptidase, S33 | |
JCGKACBB_00992 | 0.0 | rnr | J | 3'-5' exoribonuclease that releases 5'-nucleoside monophosphates and is involved in maturation of structured RNAs | ||
JCGKACBB_00993 | 9.3e-83 | smpB | J | the 2 termini fold to resemble tRNA(Ala) and it encodes a tag peptide , a short internal open reading frame. During trans-translation Ala- aminoacylated tmRNA acts like a tRNA, entering the A-site of stalled ribosomes, displacing the stalled mRNA. The ribosome then switches to translate the ORF on the tmRNA | ||
JCGKACBB_00994 | 0.0 | 3.4.21.72 | M | Bacterial Ig-like domain (group 3) | ||
JCGKACBB_00995 | 5.6e-256 | glnP | P | ABC transporter | ||
JCGKACBB_00996 | 1.2e-132 | glnQ | 3.6.3.21 | E | ABC transporter, ATP-binding protein | |
JCGKACBB_00997 | 2.3e-104 | yxjI | ||||
JCGKACBB_00998 | 4.4e-155 | ycsE | S | Sucrose-6F-phosphate phosphohydrolase | ||
JCGKACBB_00999 | 1.6e-136 | ung | 3.2.2.27 | L | Excises uracil residues from the DNA which can arise as a result of misincorporation of dUMP residues by DNA polymerase or due to deamination of cytosine | |
JCGKACBB_01000 | 1.4e-178 | pta | 2.3.1.8, 3.6.3.21 | C | phosphate acetyltransferase | |
JCGKACBB_01001 | 5e-81 | ydiB | 2.7.1.221, 5.1.1.1 | O | Hydrolase, P-loop family | |
JCGKACBB_01002 | 1.2e-86 | 2.3.1.128, 2.3.1.178 | J | Acetyltransferase (GNAT) domain | ||
JCGKACBB_01003 | 5.6e-100 | dnaQ | 2.7.7.7 | L | DNA polymerase III | |
JCGKACBB_01004 | 5.6e-154 | xth | 3.1.11.2 | L | exodeoxyribonuclease III | |
JCGKACBB_01005 | 1.9e-161 | yceM | 1.1.1.18, 1.1.1.369 | S | Oxidoreductase family, NAD-binding Rossmann fold | |
JCGKACBB_01006 | 6.2e-168 | murB | 1.3.1.98 | M | Cell wall formation | |
JCGKACBB_01007 | 0.0 | yjcE | P | Sodium proton antiporter | ||
JCGKACBB_01008 | 1.3e-90 | K | helix_turn_helix multiple antibiotic resistance protein | |||
JCGKACBB_01009 | 3.9e-119 | S | Protein of unknown function (DUF1361) | |||
JCGKACBB_01010 | 6e-149 | dacA | 2.7.7.85 | S | Catalyzes the condensation of 2 ATP molecules into cyclic di-AMP (c-di-AMP), a second messenger used to regulate differing processes in different bacteria | |
JCGKACBB_01011 | 1.6e-129 | ybbR | S | YbbR-like protein | ||
JCGKACBB_01012 | 1.6e-252 | glmM | 5.4.2.10 | G | Catalyzes the conversion of glucosamine-6-phosphate to glucosamine-1-phosphate | |
JCGKACBB_01013 | 0.0 | glmS | 2.6.1.16 | M | Catalyzes the first step in hexosamine metabolism, converting fructose-6P into glucosamine-6P using glutamine as a nitrogen source | |
JCGKACBB_01014 | 4.5e-123 | yliE | T | EAL domain | ||
JCGKACBB_01015 | 6.4e-148 | 3.1.3.23 | S | Sucrose-6F-phosphate phosphohydrolase | ||
JCGKACBB_01016 | 3.1e-104 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_01017 | 1.2e-207 | galM | 5.1.3.3 | G | Catalyzes the interconversion of alpha and beta anomers of maltose | |
JCGKACBB_01018 | 1.5e-52 | |||||
JCGKACBB_01019 | 3e-72 | |||||
JCGKACBB_01020 | 3e-131 | 1.5.1.39 | C | nitroreductase | ||
JCGKACBB_01021 | 4e-154 | G | Transmembrane secretion effector | |||
JCGKACBB_01022 | 3.1e-297 | glpK | 2.7.1.30 | F | Key enzyme in the regulation of glycerol uptake and metabolism. Catalyzes the phosphorylation of glycerol to yield sn- glycerol 3-phosphate | |
JCGKACBB_01023 | 4.6e-143 | |||||
JCGKACBB_01025 | 1.9e-71 | spxA | 1.20.4.1 | P | ArsC family | |
JCGKACBB_01026 | 1.5e-33 | |||||
JCGKACBB_01027 | 9.5e-89 | V | VanZ like family | |||
JCGKACBB_01028 | 1.1e-238 | EGP | Major facilitator Superfamily | |||
JCGKACBB_01029 | 3.2e-175 | ppx | 3.6.1.11, 3.6.1.40 | FP | exopolyphosphatase | |
JCGKACBB_01030 | 0.0 | ppk | 2.7.4.1 | P | Catalyzes the reversible transfer of the terminal phosphate of ATP to form a long-chain polyphosphate (polyP) | |
JCGKACBB_01031 | 1.8e-289 | ppx3 | 3.6.1.11, 3.6.1.40 | FP | exopolyphosphatase | |
JCGKACBB_01032 | 2.5e-152 | licD | M | LicD family | ||
JCGKACBB_01033 | 1.3e-82 | K | Transcriptional regulator | |||
JCGKACBB_01034 | 1.5e-19 | |||||
JCGKACBB_01035 | 1.2e-225 | pbuG | S | permease | ||
JCGKACBB_01036 | 0.0 | poxB | 1.2.3.3, 1.2.5.1 | EH | Belongs to the TPP enzyme family | |
JCGKACBB_01037 | 1.8e-153 | ribF | 2.7.1.26, 2.7.7.2 | H | Belongs to the ribF family | |
JCGKACBB_01038 | 0.0 | poxB | 1.2.3.3, 1.2.5.1 | EH | Belongs to the TPP enzyme family | |
JCGKACBB_01039 | 9.3e-180 | pip | 3.4.11.5 | E | Releases the N-terminal proline from various substrates | |
JCGKACBB_01040 | 5.9e-180 | birA | 6.3.4.15 | H | Acts both as a biotin-- acetyl-CoA-carboxylase ligase and a repressor | |
JCGKACBB_01041 | 0.0 | oatA | I | Acyltransferase | ||
JCGKACBB_01042 | 0.0 | pepX | 3.4.14.11 | E | Removes N-terminal dipeptides sequentially from polypeptides having unsubstituted N-termini provided that the penultimate residue is proline | |
JCGKACBB_01043 | 4.4e-63 | O | OsmC-like protein | |||
JCGKACBB_01044 | 2.6e-46 | |||||
JCGKACBB_01045 | 1.1e-251 | yfnA | E | Amino Acid | ||
JCGKACBB_01046 | 2.5e-88 | |||||
JCGKACBB_01047 | 1.6e-146 | pdxK | 2.7.1.35 | H | Phosphomethylpyrimidine kinase | |
JCGKACBB_01048 | 4.6e-73 | apfA | 2.7.7.72, 3.6.1.61 | F | Nudix hydrolase | |
JCGKACBB_01049 | 1.8e-19 | |||||
JCGKACBB_01050 | 2.6e-103 | gmk2 | 2.7.4.8 | F | Guanylate kinase | |
JCGKACBB_01051 | 1.3e-81 | zur | P | Belongs to the Fur family | ||
JCGKACBB_01052 | 7.1e-12 | 3.2.1.14 | GH18 | |||
JCGKACBB_01053 | 4.9e-148 | |||||
JCGKACBB_01054 | 8.8e-113 | gph | 3.1.3.18 | S | HAD hydrolase, family IA, variant | |
JCGKACBB_01055 | 3e-210 | patA | 2.6.1.1, 2.6.1.57 | E | Aminotransferase | |
JCGKACBB_01056 | 4.3e-170 | ldhD | 1.1.1.28 | CH | Belongs to the D-isomer specific 2-hydroxyacid dehydrogenase family | |
JCGKACBB_01057 | 3.6e-41 | |||||
JCGKACBB_01059 | 9e-133 | glnQ | 3.6.3.21 | E | ABC transporter, ATP-binding protein | |
JCGKACBB_01060 | 7.8e-149 | glnH | ET | ABC transporter substrate-binding protein | ||
JCGKACBB_01061 | 3.5e-109 | gluC | P | ABC transporter permease | ||
JCGKACBB_01062 | 4e-108 | glnP | P | ABC transporter permease | ||
JCGKACBB_01063 | 4.4e-83 | G | phosphoenolpyruvate-dependent sugar phosphotransferase system, EIIA 1 | |||
JCGKACBB_01064 | 1.4e-153 | K | CAT RNA binding domain | |||
JCGKACBB_01065 | 4.4e-256 | 2.7.1.193, 2.7.1.211 | G | phosphotransferase system, EIIB | ||
JCGKACBB_01066 | 6.1e-140 | G | YdjC-like protein | |||
JCGKACBB_01067 | 8.3e-246 | steT | E | amino acid | ||
JCGKACBB_01068 | 7.4e-74 | mgrA | K | helix_turn_helix multiple antibiotic resistance protein | ||
JCGKACBB_01069 | 3.7e-149 | XK27_00825 | S | Sulfite exporter TauE/SafE | ||
JCGKACBB_01070 | 5.7e-71 | K | MarR family | |||
JCGKACBB_01071 | 4.9e-210 | EGP | Major facilitator Superfamily | |||
JCGKACBB_01072 | 6.4e-85 | S | membrane transporter protein | |||
JCGKACBB_01073 | 7.1e-98 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_01074 | 9.6e-231 | hflX | S | GTPase that associates with the 50S ribosomal subunit and may have a role during protein synthesis or ribosome biogenesis | ||
JCGKACBB_01075 | 2.9e-78 | 3.6.1.55 | F | NUDIX domain | ||
JCGKACBB_01076 | 9.2e-40 | sugE | U | Multidrug resistance protein | ||
JCGKACBB_01077 | 3.4e-26 | |||||
JCGKACBB_01078 | 2.8e-128 | pgm3 | G | Phosphoglycerate mutase family | ||
JCGKACBB_01079 | 4.7e-125 | pgm3 | G | Phosphoglycerate mutase family | ||
JCGKACBB_01080 | 0.0 | yjbQ | P | TrkA C-terminal domain protein | ||
JCGKACBB_01081 | 7e-178 | yqkA | 3.6.1.55 | F | Belongs to the Nudix hydrolase family | |
JCGKACBB_01082 | 2.5e-110 | dedA | S | SNARE associated Golgi protein | ||
JCGKACBB_01083 | 0.0 | helD | 3.6.4.12 | L | DNA helicase | |
JCGKACBB_01084 | 5e-165 | fabK | 1.3.1.9 | S | Nitronate monooxygenase | |
JCGKACBB_01085 | 1.2e-179 | coaA | 2.7.1.33 | F | Pantothenic acid kinase | |
JCGKACBB_01086 | 1.6e-301 | guaA | 2.3.1.128, 6.3.5.2 | F | Catalyzes the synthesis of GMP from XMP | |
JCGKACBB_01088 | 3.3e-142 | spoVK | O | ATPase family associated with various cellular activities (AAA) | ||
JCGKACBB_01090 | 7.6e-46 | L | Helix-turn-helix domain | |||
JCGKACBB_01091 | 2e-18 | L | hmm pf00665 | |||
JCGKACBB_01092 | 6.9e-29 | L | hmm pf00665 | |||
JCGKACBB_01093 | 8.9e-23 | L | hmm pf00665 | |||
JCGKACBB_01094 | 7.4e-64 | |||||
JCGKACBB_01095 | 3.4e-160 | T | Calcineurin-like phosphoesterase superfamily domain | |||
JCGKACBB_01096 | 3.2e-55 | |||||
JCGKACBB_01097 | 5.3e-150 | dicA | K | Helix-turn-helix domain | ||
JCGKACBB_01098 | 6.8e-75 | pts23A | G | phosphoenolpyruvate-dependent sugar phosphotransferase system, EIIA 1 | ||
JCGKACBB_01099 | 7e-53 | ptcB | 2.7.1.196, 2.7.1.205 | G | PTS system, Lactose/Cellobiose specific IIB subunit | |
JCGKACBB_01100 | 3.5e-269 | pts23C | G | The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active - transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane | ||
JCGKACBB_01101 | 8.3e-281 | pbg6 | 3.2.1.86 | GT1 | G | Belongs to the glycosyl hydrolase 1 family |
JCGKACBB_01102 | 4.4e-186 | 1.1.1.219 | GM | Male sterility protein | ||
JCGKACBB_01103 | 5.1e-75 | K | helix_turn_helix, mercury resistance | |||
JCGKACBB_01104 | 1.1e-64 | M | LysM domain | |||
JCGKACBB_01105 | 4.3e-94 | M | Lysin motif | |||
JCGKACBB_01106 | 1.8e-107 | S | SdpI/YhfL protein family | |||
JCGKACBB_01107 | 1.8e-54 | nudA | S | ASCH | ||
JCGKACBB_01108 | 1.9e-161 | psaA | P | Belongs to the bacterial solute-binding protein 9 family | ||
JCGKACBB_01109 | 1.1e-92 | |||||
JCGKACBB_01110 | 1.2e-120 | tag | 3.2.2.20 | L | Methyladenine glycosylase | |
JCGKACBB_01111 | 2.1e-213 | T | diguanylate cyclase | |||
JCGKACBB_01112 | 7e-69 | S | Psort location Cytoplasmic, score | |||
JCGKACBB_01113 | 4.8e-282 | dinB | 2.7.7.7 | L | impB/mucB/samB family C-terminal domain | |
JCGKACBB_01114 | 1.1e-46 | uvrX | 2.7.7.7 | L | Belongs to the DNA polymerase type-Y family | |
JCGKACBB_01115 | 2.1e-121 | uvrX | 2.7.7.7 | L | Belongs to the DNA polymerase type-Y family | |
JCGKACBB_01116 | 3.8e-29 | |||||
JCGKACBB_01117 | 2.3e-47 | adhR | K | helix_turn_helix, mercury resistance | ||
JCGKACBB_01118 | 9.3e-37 | fldA | C | Flavodoxin | ||
JCGKACBB_01119 | 4.4e-146 | S | Hydrolases of the alpha beta superfamily | |||
JCGKACBB_01120 | 6.8e-136 | C | Aldo/keto reductase family | |||
JCGKACBB_01121 | 2.7e-80 | GM | NmrA-like family | |||
JCGKACBB_01122 | 3.6e-52 | darA | C | Flavodoxin | ||
JCGKACBB_01123 | 4.6e-113 | L | Transposase | |||
JCGKACBB_01124 | 1.8e-52 | lytE | M | LysM domain protein | ||
JCGKACBB_01125 | 1.4e-65 | gcvH | E | Glycine cleavage H-protein | ||
JCGKACBB_01126 | 5.7e-177 | sepS16B | ||||
JCGKACBB_01127 | 3.1e-130 | |||||
JCGKACBB_01128 | 0.0 | dinG | 3.1.12.1, 3.6.4.12 | KL | DEAD_2 | |
JCGKACBB_01129 | 6.8e-57 | |||||
JCGKACBB_01130 | 3.1e-223 | ackA | 2.7.2.1 | F | Catalyzes the formation of acetyl phosphate from acetate and ATP. Can also catalyze the reverse reaction | |
JCGKACBB_01131 | 5.5e-77 | elaA | S | GNAT family | ||
JCGKACBB_01132 | 1.7e-75 | K | Transcriptional regulator | |||
JCGKACBB_01133 | 3e-226 | ndh | 1.6.99.3 | C | NADH dehydrogenase | |
JCGKACBB_01134 | 4.3e-40 | |||||
JCGKACBB_01135 | 1.5e-205 | potD | P | ABC transporter | ||
JCGKACBB_01136 | 2.9e-140 | potC | P | ABC transporter permease | ||
JCGKACBB_01137 | 2e-149 | potB | P | ABC transporter permease | ||
JCGKACBB_01138 | 1e-204 | potA | 3.6.3.30, 3.6.3.31 | P | Part of the ABC transporter complex PotABCD involved in spermidine putrescine import. Responsible for energy coupling to the transport system | |
JCGKACBB_01139 | 1.3e-96 | puuR | K | Cupin domain | ||
JCGKACBB_01140 | 1.1e-83 | 6.3.3.2 | S | ASCH | ||
JCGKACBB_01141 | 1e-84 | K | GNAT family | |||
JCGKACBB_01142 | 4.4e-89 | K | acetyltransferase | |||
JCGKACBB_01143 | 8.1e-22 | |||||
JCGKACBB_01144 | 1.4e-59 | ytrA | K | helix_turn_helix gluconate operon transcriptional repressor | ||
JCGKACBB_01145 | 5.9e-163 | ytrB | V | ABC transporter | ||
JCGKACBB_01146 | 4.9e-190 | |||||
JCGKACBB_01147 | 1e-254 | adhE | 1.1.1.1, 1.2.1.10 | C | Aldehyde dehydrogenase family | |
JCGKACBB_01148 | 2.8e-162 | fba | 4.1.2.13, 4.1.2.29 | G | Fructose-1,6-bisphosphate aldolase, class II | |
JCGKACBB_01150 | 2.3e-240 | xylP1 | G | MFS/sugar transport protein | ||
JCGKACBB_01151 | 3e-122 | qmcA | O | prohibitin homologues | ||
JCGKACBB_01152 | 3e-30 | |||||
JCGKACBB_01153 | 5e-281 | pipD | E | Dipeptidase | ||
JCGKACBB_01154 | 3e-40 | |||||
JCGKACBB_01155 | 2.6e-95 | bioY | S | BioY family | ||
JCGKACBB_01156 | 2.1e-177 | birA | 6.3.4.15 | H | Acts both as a biotin-- acetyl-CoA-carboxylase ligase and a repressor | |
JCGKACBB_01157 | 3e-61 | S | CHY zinc finger | |||
JCGKACBB_01158 | 9.2e-223 | mtnE | 2.6.1.83 | E | Aminotransferase | |
JCGKACBB_01159 | 2.2e-218 | |||||
JCGKACBB_01160 | 3.5e-154 | tagG | U | Transport permease protein | ||
JCGKACBB_01161 | 1e-201 | tagH | 3.6.3.38, 3.6.3.40 | GM | Part of the ABC transporter complex TagGH involved in teichoic acids export. Responsible for energy coupling to the transport system | |
JCGKACBB_01162 | 7.1e-43 | |||||
JCGKACBB_01163 | 2.8e-91 | K | Transcriptional regulator PadR-like family | |||
JCGKACBB_01164 | 1.1e-94 | P | Major Facilitator Superfamily | |||
JCGKACBB_01165 | 4e-151 | P | Major Facilitator Superfamily | |||
JCGKACBB_01166 | 5.2e-240 | amtB | P | ammonium transporter | ||
JCGKACBB_01167 | 2.7e-177 | ldh | 1.1.1.27 | C | Belongs to the LDH MDH superfamily | |
JCGKACBB_01168 | 3.7e-44 | |||||
JCGKACBB_01169 | 4.1e-101 | zmp1 | O | Zinc-dependent metalloprotease | ||
JCGKACBB_01170 | 1.4e-119 | rpiA | 5.3.1.6 | G | Ribose 5-phosphate isomerase A (phosphoriboisomerase A) | |
JCGKACBB_01171 | 4.2e-310 | mco | Q | Multicopper oxidase | ||
JCGKACBB_01172 | 1.1e-54 | ypaA | S | Protein of unknown function (DUF1304) | ||
JCGKACBB_01173 | 8.8e-95 | yxkA | S | Phosphatidylethanolamine-binding protein | ||
JCGKACBB_01174 | 1.6e-232 | flhF | N | Uncharacterized conserved protein (DUF2075) | ||
JCGKACBB_01175 | 1.6e-82 | ywnA | K | Winged helix-turn-helix transcription repressor, HrcA DNA-binding | ||
JCGKACBB_01176 | 9.3e-80 | |||||
JCGKACBB_01177 | 1.4e-69 | accB | 2.3.1.12 | I | first, biotin carboxylase catalyzes the carboxylation of the carrier protein and then the transcarboxylase transfers the carboxyl group to form malonyl-CoA | |
JCGKACBB_01178 | 5.9e-174 | rihC | 3.2.2.1 | F | Nucleoside | |
JCGKACBB_01179 | 4.6e-163 | vdlC | S | Belongs to the short-chain dehydrogenases reductases (SDR) family | ||
JCGKACBB_01180 | 0.0 | |||||
JCGKACBB_01181 | 5.5e-77 | 3.1.26.4 | L | RNA-DNA hybrid ribonuclease activity | ||
JCGKACBB_01182 | 6.1e-277 | proWX | EM | Periplasmic glycine betaine choline-binding (lipo)protein of an ABC-type transport system (osmoprotectant binding protein) | ||
JCGKACBB_01183 | 9.9e-180 | proV | E | ABC transporter, ATP-binding protein | ||
JCGKACBB_01184 | 7.5e-255 | gshR | 1.8.1.7 | C | Pyridine nucleotide-disulphide oxidoreductase | |
JCGKACBB_01185 | 1.9e-299 | glpK | 2.7.1.30 | F | Key enzyme in the regulation of glycerol uptake and metabolism. Catalyzes the phosphorylation of glycerol to yield sn- glycerol 3-phosphate | |
JCGKACBB_01186 | 0.0 | glpD | 1.1.3.21, 1.1.5.3 | C | C-terminal domain of alpha-glycerophosphate oxidase | |
JCGKACBB_01187 | 4.7e-134 | glpF | U | Belongs to the MIP aquaporin (TC 1.A.8) family | ||
JCGKACBB_01188 | 9.6e-120 | lacA | 2.3.1.18, 2.3.1.79 | S | Maltose acetyltransferase | |
JCGKACBB_01189 | 1.1e-196 | uhpT | EGP | Major facilitator Superfamily | ||
JCGKACBB_01190 | 1.2e-146 | 3.1.3.102, 3.1.3.104 | G | Sucrose-6F-phosphate phosphohydrolase | ||
JCGKACBB_01191 | 4.3e-166 | K | Transcriptional regulator | |||
JCGKACBB_01192 | 1.4e-150 | S | hydrolase | |||
JCGKACBB_01193 | 1.5e-253 | brnQ | U | Component of the transport system for branched-chain amino acids | ||
JCGKACBB_01194 | 2.1e-208 | napA | P | Belongs to the monovalent cation proton antiporter 2 (CPA2) transporter (TC 2.A.37) family | ||
JCGKACBB_01198 | 1.4e-52 | napA | P | Belongs to the monovalent cation proton antiporter 2 (CPA2) transporter (TC 2.A.37) family | ||
JCGKACBB_01199 | 7.2e-32 | |||||
JCGKACBB_01200 | 2.9e-17 | plnR | ||||
JCGKACBB_01201 | 1.2e-28 | asnB | 6.3.5.4 | E | Asparagine synthase | |
JCGKACBB_01202 | 2.4e-133 | K | LytTr DNA-binding domain | |||
JCGKACBB_01203 | 3e-205 | 2.7.13.3 | T | GHKL domain | ||
JCGKACBB_01204 | 8.2e-97 | fadR | K | Bacterial regulatory proteins, tetR family | ||
JCGKACBB_01205 | 1.8e-167 | GM | NmrA-like family | |||
JCGKACBB_01206 | 2e-266 | gabD | 1.2.1.16, 1.2.1.20, 1.2.1.79 | C | Belongs to the aldehyde dehydrogenase family | |
JCGKACBB_01207 | 1.7e-307 | M | Glycosyl hydrolases family 25 | |||
JCGKACBB_01208 | 1e-47 | S | Domain of unknown function (DUF1905) | |||
JCGKACBB_01209 | 3.7e-63 | hxlR | K | HxlR-like helix-turn-helix | ||
JCGKACBB_01210 | 9.8e-132 | ydfG | S | KR domain | ||
JCGKACBB_01211 | 8e-97 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_01212 | 6e-191 | 1.1.1.219 | GM | Male sterility protein | ||
JCGKACBB_01213 | 4.1e-101 | S | Protein of unknown function (DUF1211) | |||
JCGKACBB_01214 | 4.8e-179 | S | Aldo keto reductase | |||
JCGKACBB_01215 | 3.5e-253 | yfjF | U | Sugar (and other) transporter | ||
JCGKACBB_01216 | 7.4e-109 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_01217 | 4.6e-152 | fhuD | P | Periplasmic binding protein | ||
JCGKACBB_01218 | 1.1e-144 | fhuC | 3.6.3.34 | HP | ABC transporter | |
JCGKACBB_01219 | 9.5e-178 | sirB | U | Belongs to the binding-protein-dependent transport system permease family. FecCD subfamily | ||
JCGKACBB_01220 | 3.3e-170 | fhuG | U | Belongs to the binding-protein-dependent transport system permease family. FecCD subfamily | ||
JCGKACBB_01221 | 5.4e-92 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_01222 | 1e-162 | GM | NmrA-like family | |||
JCGKACBB_01223 | 2.5e-130 | S | Belongs to the short-chain dehydrogenases reductases (SDR) family | |||
JCGKACBB_01224 | 1.3e-68 | maa | S | transferase hexapeptide repeat | ||
JCGKACBB_01225 | 3.3e-34 | IQ | Enoyl-(Acyl carrier protein) reductase | |||
JCGKACBB_01226 | 1e-99 | IQ | Enoyl-(Acyl carrier protein) reductase | |||
JCGKACBB_01227 | 3.9e-63 | K | helix_turn_helix, mercury resistance | |||
JCGKACBB_01228 | 0.0 | pelX | UW | LPXTG-motif cell wall anchor domain protein | ||
JCGKACBB_01229 | 6.5e-31 | S | Bacterial protein of unknown function (DUF916) | |||
JCGKACBB_01230 | 2.1e-129 | S | Bacterial protein of unknown function (DUF916) | |||
JCGKACBB_01231 | 4.3e-90 | S | WxL domain surface cell wall-binding | |||
JCGKACBB_01232 | 1.3e-122 | NU | Mycoplasma protein of unknown function, DUF285 | |||
JCGKACBB_01233 | 1.7e-137 | gntT | EG | Gluconate | ||
JCGKACBB_01234 | 8.6e-173 | 4.2.1.6, 5.1.2.2 | M | Mandelate racemase muconate lactonizing enzyme | ||
JCGKACBB_01235 | 1.6e-144 | pgl | 3.1.1.31 | G | Lactonase, 7-bladed beta-propeller | |
JCGKACBB_01236 | 4.2e-121 | pgm6 | 5.4.2.11, 5.4.2.12 | G | Phosphoglycerate mutase family | |
JCGKACBB_01237 | 8.2e-102 | 3.2.2.20 | K | FR47-like protein | ||
JCGKACBB_01238 | 1.3e-126 | yibF | S | overlaps another CDS with the same product name | ||
JCGKACBB_01239 | 2.8e-219 | yibE | S | overlaps another CDS with the same product name | ||
JCGKACBB_01240 | 3.3e-178 | |||||
JCGKACBB_01241 | 1.5e-138 | S | NADPH-dependent FMN reductase | |||
JCGKACBB_01242 | 1.5e-50 | K | helix_turn_helix, Arsenical Resistance Operon Repressor | |||
JCGKACBB_01243 | 8.4e-162 | rluD | 5.4.99.23, 5.4.99.28, 5.4.99.29 | J | Responsible for synthesis of pseudouridine from uracil | |
JCGKACBB_01244 | 0.0 | recQ | 3.6.4.12 | L | ATP-dependent DNA helicase RecQ | |
JCGKACBB_01245 | 4.1e-32 | L | leucine-zipper of insertion element IS481 | |||
JCGKACBB_01246 | 8.5e-41 | |||||
JCGKACBB_01247 | 4.9e-216 | 2.7.7.7, 3.6.4.12 | L | DNA polymerase III is a complex, multichain enzyme responsible for most of the replicative synthesis in bacteria. The epsilon subunit contain the editing function and is a proofreading 3'-5' exonuclease | ||
JCGKACBB_01248 | 2.5e-277 | pipD | E | Dipeptidase | ||
JCGKACBB_01249 | 1.1e-197 | asnA | 6.3.1.1 | F | aspartate--ammonia ligase | |
JCGKACBB_01250 | 6.9e-253 | asnS | 6.1.1.22 | J | Asparaginyl-tRNA synthetase | |
JCGKACBB_01251 | 3.2e-104 | azoR | I | Catalyzes the reductive cleavage of azo bond in aromatic azo compounds to the corresponding amines. Requires NADH, but not NADPH, as an electron donor for its activity | ||
JCGKACBB_01252 | 2.5e-80 | rmaD | K | Transcriptional regulator | ||
JCGKACBB_01254 | 0.0 | 1.3.5.4 | C | FMN_bind | ||
JCGKACBB_01255 | 9.5e-172 | K | Transcriptional regulator | |||
JCGKACBB_01256 | 2.3e-96 | K | Helix-turn-helix domain | |||
JCGKACBB_01257 | 4.3e-138 | K | sequence-specific DNA binding | |||
JCGKACBB_01258 | 4.6e-48 | S | AAA domain | |||
JCGKACBB_01259 | 7.5e-25 | S | AAA domain | |||
JCGKACBB_01262 | 0.0 | nagH | 2.7.13.3, 3.2.1.4, 3.2.1.52, 3.2.1.78, 3.2.1.8 | GH20,GH26,GH5,GH9 | M | MucBP domain |
JCGKACBB_01263 | 4.7e-91 | XK27_09665 | 5.4.2.11 | G | Phosphoglycerate mutase family | |
JCGKACBB_01264 | 6.3e-46 | 3.1.21.3 | V | type I restriction modification DNA specificity domain | ||
JCGKACBB_01265 | 2.7e-171 | L | Belongs to the 'phage' integrase family | |||
JCGKACBB_01266 | 1.1e-67 | hsdS | 3.1.21.3 | V | Type I restriction modification DNA specificity domain | |
JCGKACBB_01267 | 2.5e-297 | hsdM | 2.1.1.72 | V | type I restriction-modification system | |
JCGKACBB_01268 | 0.0 | hsdR | 3.1.21.3 | V | Subunit R is required for both nuclease and ATPase activities, but not for modification | |
JCGKACBB_01269 | 0.0 | pepN | 3.4.11.2 | E | aminopeptidase | |
JCGKACBB_01270 | 1.1e-101 | G | Glycogen debranching enzyme | |||
JCGKACBB_01271 | 7.9e-156 | yjdB | S | Domain of unknown function (DUF4767) | ||
JCGKACBB_01272 | 2.6e-149 | Q | Fumarylacetoacetate (FAA) hydrolase family | |||
JCGKACBB_01273 | 5.3e-72 | asp2 | S | Asp23 family, cell envelope-related function | ||
JCGKACBB_01274 | 8.7e-72 | asp | S | Asp23 family, cell envelope-related function | ||
JCGKACBB_01275 | 7.2e-23 | |||||
JCGKACBB_01276 | 4.4e-84 | |||||
JCGKACBB_01277 | 7.1e-37 | S | Transglycosylase associated protein | |||
JCGKACBB_01278 | 0.0 | XK27_09800 | I | Acyltransferase family | ||
JCGKACBB_01279 | 2.2e-37 | S | MORN repeat | |||
JCGKACBB_01280 | 2.8e-141 | S | Cysteine-rich secretory protein family | |||
JCGKACBB_01281 | 2.5e-231 | EGP | Major facilitator Superfamily | |||
JCGKACBB_01282 | 1.7e-159 | L | hmm pf00665 | |||
JCGKACBB_01283 | 1.5e-129 | L | Helix-turn-helix domain | |||
JCGKACBB_01284 | 1.1e-56 | hxlR | K | HxlR-like helix-turn-helix | ||
JCGKACBB_01285 | 2.9e-109 | XK27_07075 | V | CAAX protease self-immunity | ||
JCGKACBB_01286 | 2.4e-43 | K | Helix-turn-helix XRE-family like proteins | |||
JCGKACBB_01287 | 4e-49 | |||||
JCGKACBB_01289 | 8.6e-162 | K | Transcriptional regulator | |||
JCGKACBB_01290 | 2.8e-162 | akr5f | 1.1.1.346 | S | reductase | |
JCGKACBB_01291 | 2.8e-165 | S | Oxidoreductase, aldo keto reductase family protein | |||
JCGKACBB_01292 | 7.9e-79 | K | Winged helix DNA-binding domain | |||
JCGKACBB_01293 | 2.2e-268 | ycaM | E | amino acid | ||
JCGKACBB_01294 | 3e-128 | aroD | 1.1.1.25, 4.2.1.10 | E | Type I 3-dehydroquinase | |
JCGKACBB_01295 | 2.7e-32 | |||||
JCGKACBB_01296 | 0.0 | M | Bacterial surface protein 26-residue PARCEL repeat (3 repeats) | |||
JCGKACBB_01297 | 0.0 | M | Bacterial Ig-like domain (group 3) | |||
JCGKACBB_01298 | 1.1e-77 | fld | C | Flavodoxin | ||
JCGKACBB_01299 | 2.4e-234 | |||||
JCGKACBB_01300 | 1.2e-100 | 1.5.1.40 | S | NADP oxidoreductase coenzyme F420-dependent | ||
JCGKACBB_01301 | 1.3e-176 | pdxB | 1.1.1.399, 1.1.1.95 | EH | D-isomer specific 2-hydroxyacid dehydrogenase, NAD binding domain | |
JCGKACBB_01302 | 7e-151 | EG | EamA-like transporter family | |||
JCGKACBB_01303 | 2.7e-180 | panE | 1.1.1.169 | H | Catalyzes the NADPH-dependent reduction of ketopantoate into pantoic acid | |
JCGKACBB_01304 | 9.8e-152 | S | hydrolase | |||
JCGKACBB_01305 | 1.8e-81 | |||||
JCGKACBB_01306 | 6.5e-122 | pgm7 | 5.4.2.11, 5.4.2.12 | G | Phosphoglycerate mutase family | |
JCGKACBB_01307 | 6.8e-141 | epsV | 2.7.8.12 | S | glycosyl transferase family 2 | |
JCGKACBB_01308 | 1.8e-130 | gntR | K | UTRA | ||
JCGKACBB_01309 | 2.3e-48 | pts20B | 2.7.1.196, 2.7.1.205 | G | PTS system, Lactose/Cellobiose specific IIB subunit | |
JCGKACBB_01310 | 1.8e-54 | chbA | 2.7.1.196, 2.7.1.205 | G | PTS system, Lactose Cellobiose specific IIA subunit | |
JCGKACBB_01311 | 3.6e-295 | celA | 3.2.1.86 | GT1 | G | Belongs to the glycosyl hydrolase 1 family |
JCGKACBB_01312 | 6.8e-294 | celA | 3.2.1.86 | GT1 | G | Belongs to the glycosyl hydrolase 1 family |
JCGKACBB_01313 | 4.1e-245 | dsdA | 4.3.1.18 | E | Belongs to the serine threonine dehydratase family. DsdA subfamily | |
JCGKACBB_01314 | 1.8e-133 | V | AAA domain, putative AbiEii toxin, Type IV TA system | |||
JCGKACBB_01315 | 1.1e-162 | V | ABC-type multidrug transport system, permease component | |||
JCGKACBB_01316 | 5.9e-115 | K | Transcriptional regulator | |||
JCGKACBB_01317 | 6.6e-265 | pncB | 6.3.4.21 | F | Catalyzes the synthesis of beta-nicotinate D- ribonucleotide from nicotinate and 5-phospho-D-ribose 1-phosphate at the expense of ATP | |
JCGKACBB_01318 | 3.6e-88 | niaR | S | 3H domain | ||
JCGKACBB_01319 | 3e-205 | EGP | Major facilitator Superfamily | |||
JCGKACBB_01320 | 7.9e-232 | S | Sterol carrier protein domain | |||
JCGKACBB_01321 | 2.1e-210 | S | Bacterial protein of unknown function (DUF871) | |||
JCGKACBB_01322 | 1.8e-36 | XK27_01315 | S | Protein of unknown function (DUF2829) | ||
JCGKACBB_01323 | 7.5e-135 | IQ | Enoyl-(Acyl carrier protein) reductase | |||
JCGKACBB_01324 | 7.8e-69 | FG | Scavenger mRNA decapping enzyme C-term binding | |||
JCGKACBB_01325 | 1.7e-102 | 3.6.1.13 | L | Belongs to the Nudix hydrolase family | ||
JCGKACBB_01326 | 2.1e-111 | maa | 2.3.1.18, 2.3.1.79 | S | Maltose acetyltransferase | |
JCGKACBB_01327 | 4.4e-11 | mcbG | S | Pentapeptide repeats (8 copies) | ||
JCGKACBB_01328 | 6.5e-145 | XK27_02985 | S | Sucrose-6F-phosphate phosphohydrolase | ||
JCGKACBB_01329 | 6.9e-281 | thrC | 4.2.3.1 | E | Threonine synthase | |
JCGKACBB_01330 | 0.0 | nplT | 3.2.1.133, 3.2.1.135, 3.2.1.54 | GH13 | G | Belongs to the glycosyl hydrolase 13 family |
JCGKACBB_01332 | 1.5e-52 | |||||
JCGKACBB_01333 | 1.6e-117 | |||||
JCGKACBB_01334 | 7.3e-86 | 2.7.7.1, 3.6.1.55 | F | belongs to the nudix hydrolase family | ||
JCGKACBB_01335 | 2.8e-232 | malY | 4.4.1.8 | E | Aminotransferase, class I | |
JCGKACBB_01337 | 9.4e-50 | |||||
JCGKACBB_01338 | 1.1e-88 | |||||
JCGKACBB_01339 | 4.2e-71 | gtcA | S | Teichoic acid glycosylation protein | ||
JCGKACBB_01340 | 1.2e-35 | |||||
JCGKACBB_01341 | 6.7e-81 | uspA | T | universal stress protein | ||
JCGKACBB_01342 | 0.0 | 1.3.5.4 | C | FAD binding domain | ||
JCGKACBB_01343 | 4.8e-179 | apbE | 2.7.1.180 | H | Flavin transferase that catalyzes the transfer of the FMN moiety of FAD and its covalent binding to the hydroxyl group of a threonine residue in a target flavoprotein | |
JCGKACBB_01344 | 2.4e-133 | aroD | 1.1.1.25, 4.2.1.10 | E | Involved in the third step of the chorismate pathway, which leads to the biosynthesis of aromatic amino acids. Catalyzes the cis-dehydration of 3-dehydroquinate (DHQ) and introduces the first double bond of the aromatic ring to yield 3- dehydroshikimate | |
JCGKACBB_01345 | 9.7e-166 | aroE | 1.1.1.25, 1.1.1.282, 1.3.5.4 | E | Involved in the biosynthesis of the chorismate, which leads to the biosynthesis of aromatic amino acids. Catalyzes the reversible NADPH linked reduction of 3-dehydroshikimate (DHSA) to yield shikimate (SA) | |
JCGKACBB_01346 | 9.2e-175 | K | Transcriptional regulator, LysR family | |||
JCGKACBB_01347 | 1.4e-218 | ydiN | EGP | Major Facilitator Superfamily | ||
JCGKACBB_01348 | 5e-162 | aroE | 1.1.1.25 | E | Involved in the biosynthesis of the chorismate, which leads to the biosynthesis of aromatic amino acids. Catalyzes the reversible NADPH linked reduction of 3-dehydroshikimate (DHSA) to yield shikimate (SA) | |
JCGKACBB_01349 | 2.1e-160 | aroE | 1.1.1.25 | E | Involved in the biosynthesis of the chorismate, which leads to the biosynthesis of aromatic amino acids. Catalyzes the reversible NADPH linked reduction of 3-dehydroshikimate (DHSA) to yield shikimate (SA) | |
JCGKACBB_01350 | 2.3e-156 | IQ | Enoyl-(Acyl carrier protein) reductase | |||
JCGKACBB_01351 | 7.9e-165 | G | Xylose isomerase-like TIM barrel | |||
JCGKACBB_01352 | 4e-167 | K | Transcriptional regulator, LysR family | |||
JCGKACBB_01353 | 3.7e-200 | EGP | Major Facilitator Superfamily | |||
JCGKACBB_01354 | 2.9e-63 | |||||
JCGKACBB_01355 | 9e-155 | estA | S | Putative esterase | ||
JCGKACBB_01356 | 1.6e-134 | K | UTRA domain | |||
JCGKACBB_01357 | 1.4e-248 | pts29C | G | The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active - transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane | ||
JCGKACBB_01358 | 2.6e-164 | murQ | 4.2.1.126 | G | Specifically catalyzes the cleavage of the D-lactyl ether substituent of MurNAc 6-phosphate, producing GlcNAc 6- phosphate and D-lactate | |
JCGKACBB_01359 | 1.7e-157 | 2.7.1.59 | G | BadF/BadG/BcrA/BcrD ATPase family | ||
JCGKACBB_01360 | 9.3e-211 | S | Bacterial protein of unknown function (DUF871) | |||
JCGKACBB_01361 | 1.4e-291 | bglH | 3.2.1.86 | GT1 | G | Belongs to the glycosyl hydrolase 1 family |
JCGKACBB_01362 | 0.0 | pts30BCA | 2.7.1.193, 2.7.1.211 | G | phosphotransferase system | |
JCGKACBB_01363 | 6.2e-154 | licT | K | CAT RNA binding domain | ||
JCGKACBB_01364 | 3.4e-293 | bglH | 3.2.1.86 | GT1 | G | Belongs to the glycosyl hydrolase 1 family |
JCGKACBB_01365 | 1.9e-291 | pbg10 | 3.2.1.86 | GT1 | G | Belongs to the glycosyl hydrolase 1 family |
JCGKACBB_01366 | 0.0 | bglP | 2.7.1.193, 2.7.1.211 | G | phosphotransferase system | |
JCGKACBB_01367 | 2.3e-90 | licT | K | CAT RNA binding domain | ||
JCGKACBB_01368 | 3.1e-57 | licT | K | CAT RNA binding domain | ||
JCGKACBB_01369 | 0.0 | treP | 2.4.1.64 | GH65 | G | hydrolase, family 65, central catalytic |
JCGKACBB_01370 | 1.1e-173 | K | Transcriptional regulator, LacI family | |||
JCGKACBB_01371 | 6.8e-270 | G | Major Facilitator | |||
JCGKACBB_01372 | 0.0 | malZ | 3.2.1.20 | GH31 | G | Belongs to the glycosyl hydrolase 31 family |
JCGKACBB_01374 | 1.1e-186 | cbh | 3.5.1.24 | M | Linear amide C-N hydrolase, choloylglycine hydrolase family protein | |
JCGKACBB_01375 | 4.3e-144 | yxeH | S | hydrolase | ||
JCGKACBB_01376 | 0.0 | tkt | 2.2.1.1 | H | Catalyzes the transfer of a two-carbon ketol group from a ketose donor to an aldose acceptor, via a covalent intermediate with the cofactor thiamine pyrophosphate | |
JCGKACBB_01377 | 2.2e-114 | tal | 2.2.1.2 | F | Transaldolase is important for the balance of metabolites in the pentose-phosphate pathway | |
JCGKACBB_01378 | 7e-240 | ulaA | 2.7.1.194 | S | PTS system sugar-specific permease component | |
JCGKACBB_01379 | 2.2e-45 | ulaB | 2.7.1.194, 2.7.1.200 | G | Phosphotransferase system galactitol-specific IIB component | |
JCGKACBB_01380 | 6.7e-78 | 2.7.1.194, 2.7.1.200, 2.7.1.202 | G | Phosphoenolpyruvate-dependent sugar phosphotransferase system, EIIA 2 | ||
JCGKACBB_01381 | 0.0 | 2.7.1.194, 2.7.1.200, 2.7.1.202 | G | Phosphoenolpyruvate-dependent sugar phosphotransferase system, EIIA 2 | ||
JCGKACBB_01382 | 1.8e-113 | gph | 3.1.3.18 | S | Haloacid dehalogenase-like hydrolase | |
JCGKACBB_01383 | 3e-188 | gutB | 1.1.1.1, 1.1.1.14 | C | Zinc-binding dehydrogenase | |
JCGKACBB_01384 | 1.1e-231 | gatC | G | PTS system sugar-specific permease component | ||
JCGKACBB_01385 | 1.1e-44 | 2.7.1.194, 2.7.1.200 | G | PTS system, Lactose/Cellobiose specific IIB subunit | ||
JCGKACBB_01386 | 1.5e-80 | 2.7.1.194, 2.7.1.200, 2.7.1.202 | G | Phosphoenolpyruvate-dependent sugar phosphotransferase system, EIIA 2 | ||
JCGKACBB_01387 | 2.7e-111 | K | DeoR C terminal sensor domain | |||
JCGKACBB_01388 | 0.0 | xfp | 4.1.2.22, 4.1.2.9 | G | Phosphoketolase | |
JCGKACBB_01389 | 3e-56 | dps | P | Belongs to the Dps family | ||
JCGKACBB_01390 | 1.1e-84 | |||||
JCGKACBB_01391 | 1.6e-28 | |||||
JCGKACBB_01392 | 2.6e-79 | L | Phage integrase family | |||
JCGKACBB_01393 | 0.0 | pacL | 3.6.3.8 | P | P-type ATPase | |
JCGKACBB_01394 | 1.3e-41 | |||||
JCGKACBB_01395 | 7.4e-56 | repA | S | Replication initiator protein A | ||
JCGKACBB_01396 | 9.4e-185 | U | Relaxase/Mobilisation nuclease domain | |||
JCGKACBB_01397 | 1.1e-54 | S | Bacterial mobilisation protein (MobC) | |||
JCGKACBB_01398 | 8.1e-91 | L | Reverse transcriptase (RNA-dependent DNA polymerase) | |||
JCGKACBB_01399 | 6.6e-51 | L | Integrase | |||
JCGKACBB_01400 | 4.8e-44 | T | Antidote-toxin recognition MazE, bacterial antitoxin | |||
JCGKACBB_01401 | 4.9e-57 | pemK | T | PemK-like, MazF-like toxin of type II toxin-antitoxin system | ||
JCGKACBB_01402 | 0.0 | ybfG | M | peptidoglycan-binding domain-containing protein | ||
JCGKACBB_01404 | 1.1e-129 | cat | 2.3.1.28 | V | Chloramphenicol acetyltransferase | |
JCGKACBB_01405 | 1.2e-69 | S | LuxR family transcriptional regulator | |||
JCGKACBB_01406 | 8.6e-136 | S | Uncharacterized protein conserved in bacteria (DUF2087) | |||
JCGKACBB_01408 | 2.2e-90 | 3.6.1.55 | F | NUDIX domain | ||
JCGKACBB_01409 | 2.3e-162 | V | ABC transporter, ATP-binding protein | |||
JCGKACBB_01410 | 6e-110 | S | ABC-2 family transporter protein | |||
JCGKACBB_01411 | 0.0 | FbpA | K | Fibronectin-binding protein | ||
JCGKACBB_01412 | 1.9e-66 | K | Transcriptional regulator | |||
JCGKACBB_01413 | 7e-161 | degV | S | EDD domain protein, DegV family | ||
JCGKACBB_01414 | 8.3e-78 | yjcF | 3.5.4.33, 4.4.1.8 | K | protein acetylation | |
JCGKACBB_01415 | 1.3e-131 | S | Protein of unknown function (DUF975) | |||
JCGKACBB_01416 | 6.2e-09 | |||||
JCGKACBB_01417 | 1.4e-49 | |||||
JCGKACBB_01418 | 3.3e-149 | 2.7.7.12 | C | Domain of unknown function (DUF4931) | ||
JCGKACBB_01419 | 1.6e-211 | pmrB | EGP | Major facilitator Superfamily | ||
JCGKACBB_01420 | 6.1e-12 | |||||
JCGKACBB_01421 | 5.2e-50 | XK27_08430 | S | Staphylococcal protein of unknown function (DUF960) | ||
JCGKACBB_01422 | 4.6e-129 | yejC | S | Protein of unknown function (DUF1003) | ||
JCGKACBB_01423 | 3.1e-129 | XK27_00890 | S | Domain of unknown function (DUF368) | ||
JCGKACBB_01424 | 2.1e-244 | cycA | E | Amino acid permease | ||
JCGKACBB_01425 | 3.5e-123 | |||||
JCGKACBB_01426 | 4.1e-59 | |||||
JCGKACBB_01427 | 1.1e-279 | lldP | C | L-lactate permease | ||
JCGKACBB_01428 | 4.4e-226 | |||||
JCGKACBB_01429 | 5.9e-126 | ispD | 1.1.1.405, 2.7.7.40, 2.7.7.60, 4.6.1.12 | I | Catalyzes the transfer of the cytidylyl group of CTP to D-ribitol 5-phosphate | |
JCGKACBB_01430 | 3.7e-193 | tarJ | 1.1.1.137, 1.1.1.303, 1.1.1.4, 1.1.1.405 | E | Catalyzes the NADPH dependent reduction of D-ribulose 5- phosphate to D-ribitol 5-phosphate | |
JCGKACBB_01431 | 7.5e-214 | tarK | 2.7.8.14, 2.7.8.47 | H | CDP-Glycerol:Poly(glycerophosphate) glycerophosphotransferase | |
JCGKACBB_01432 | 0.0 | tarL | 2.7.8.14, 2.7.8.47 | H | CDP-Glycerol:Poly(glycerophosphate) glycerophosphotransferase | |
JCGKACBB_01433 | 2.6e-43 | paiA | 2.3.1.57 | K | Acetyltransferase (GNAT) domain | |
JCGKACBB_01434 | 2.9e-30 | paiA | 2.3.1.57 | K | Acetyltransferase (GNAT) domain | |
JCGKACBB_01435 | 1.7e-75 | mgrA | K | helix_turn_helix multiple antibiotic resistance protein | ||
JCGKACBB_01436 | 1.9e-253 | gshR1 | 1.8.1.7 | C | Glutathione reductase | |
JCGKACBB_01437 | 1.8e-66 | |||||
JCGKACBB_01438 | 1.4e-242 | M | Glycosyl transferase family group 2 | |||
JCGKACBB_01439 | 2.3e-271 | GT89 | M | 4-amino-4-deoxy-L-arabinose transferase and related glycosyltransferases of PMT family | ||
JCGKACBB_01440 | 1e-156 | xerD | L | Phage integrase, N-terminal SAM-like domain | ||
JCGKACBB_01441 | 4.2e-32 | S | YozE SAM-like fold | |||
JCGKACBB_01442 | 1e-95 | msrA | 1.8.4.11, 1.8.4.12 | O | Has an important function as a repair enzyme for proteins that have been inactivated by oxidation. Catalyzes the reversible oxidation-reduction of methionine sulfoxide in proteins to methionine | |
JCGKACBB_01443 | 4e-80 | msrB | 1.8.4.11, 1.8.4.12 | O | peptide methionine sulfoxide reductase | |
JCGKACBB_01444 | 1.4e-167 | ppaC | 3.6.1.1 | C | inorganic pyrophosphatase | |
JCGKACBB_01445 | 1.2e-177 | K | Transcriptional regulator | |||
JCGKACBB_01446 | 0.0 | parC | 5.99.1.3 | L | Topoisomerase IV is essential for chromosome segregation. It relaxes supercoiled DNA. Performs the decatenation events required during the replication of a circular DNA molecule | |
JCGKACBB_01447 | 0.0 | parE | 5.99.1.3 | L | Topoisomerase IV is essential for chromosome segregation. It relaxes supercoiled DNA. Performs the decatenation events required during the replication of a circular DNA molecule | |
JCGKACBB_01448 | 5.2e-105 | plsY | 2.3.1.15, 3.5.1.104 | I | Catalyzes the transfer of an acyl group from acyl- phosphate (acyl-PO(4)) to glycerol-3-phosphate (G3P) to form lysophosphatidic acid (LPA). This enzyme utilizes acyl-phosphate as fatty acyl donor, but not acyl-CoA or acyl-ACP | |
JCGKACBB_01449 | 2.2e-170 | lacX | 5.1.3.3 | G | Aldose 1-epimerase | |
JCGKACBB_01450 | 2.3e-257 | hslU | O | this subunit has chaperone activity. The binding of ATP and its subsequent hydrolysis by HslU are essential for unfolding of protein substrates subsequently hydrolyzed by HslV. HslU recognizes the N-terminal part of its protein substrates and unfolds these before they are guided to HslV for hydrolysis | ||
JCGKACBB_01451 | 6.7e-93 | hslV | 3.4.25.2 | O | Protease subunit of a proteasome-like degradation complex believed to be a general protein degrading machinery | |
JCGKACBB_01452 | 1.5e-177 | xerC | D | Belongs to the 'phage' integrase family. XerC subfamily | ||
JCGKACBB_01453 | 2.8e-249 | trmFO | 2.1.1.74 | J | Catalyzes the folate-dependent formation of 5-methyl- uridine at position 54 (M-5-U54) in all tRNAs | |
JCGKACBB_01454 | 0.0 | topA | 5.99.1.2 | L | Releases the supercoiling and torsional tension of DNA, which is introduced during the DNA replication and transcription, by transiently cleaving and rejoining one strand of the DNA duplex. Introduces a single-strand break via transesterification at a target site in duplex DNA. The scissile phosphodiester is attacked by the catalytic tyrosine of the enzyme, resulting in the formation of a DNA-(5'-phosphotyrosyl)-enzyme intermediate and the expulsion of a 3'-OH DNA strand. The free DNA strand then undergoes passage around the unbroken strand, thus removing DNA supercoils. Finally, in the religation step, the DNA 3'-OH attacks the covalent intermediate to expel the active-site tyrosine and restore the DNA phosphodiester backbone | |
JCGKACBB_01455 | 4.7e-157 | dprA | LU | DNA protecting protein DprA | ||
JCGKACBB_01456 | 1.5e-135 | rnhB | 3.1.26.4 | L | Endonuclease that specifically degrades the RNA of RNA- DNA hybrids | |
JCGKACBB_01457 | 3.1e-161 | ylqF | S | Required for a late step of 50S ribosomal subunit assembly. Has GTPase activity | ||
JCGKACBB_01459 | 1.4e-228 | XK27_05470 | E | Methionine synthase | ||
JCGKACBB_01460 | 8.9e-170 | cpsY | K | Transcriptional regulator, LysR family | ||
JCGKACBB_01461 | 2.3e-173 | L | restriction endonuclease | |||
JCGKACBB_01462 | 4.2e-124 | 1.5.1.40 | S | NADP oxidoreductase coenzyme F420-dependent | ||
JCGKACBB_01463 | 5.7e-197 | XK27_00915 | C | Luciferase-like monooxygenase | ||
JCGKACBB_01464 | 2.8e-250 | emrY | EGP | Major facilitator Superfamily | ||
JCGKACBB_01465 | 1.2e-261 | ctpA | 3.4.21.102 | M | Belongs to the peptidase S41A family | |
JCGKACBB_01466 | 2.2e-34 | yozE | S | Belongs to the UPF0346 family | ||
JCGKACBB_01467 | 3.1e-113 | ypmS | S | Uncharacterized protein conserved in bacteria (DUF2140) | ||
JCGKACBB_01468 | 5.1e-149 | ypmR | E | GDSL-like Lipase/Acylhydrolase | ||
JCGKACBB_01469 | 5.1e-148 | DegV | S | EDD domain protein, DegV family | ||
JCGKACBB_01470 | 5.1e-92 | folA | 1.5.1.3 | H | Key enzyme in folate metabolism. Catalyzes an essential reaction for de novo glycine and purine synthesis, and for DNA precursor synthesis | |
JCGKACBB_01471 | 1.5e-188 | thyA | 2.1.1.45 | F | Catalyzes the reductive methylation of 2'-deoxyuridine- 5'-monophosphate (dUMP) to 2'-deoxythymidine-5'-monophosphate (dTMP) while utilizing 5,10-methylenetetrahydrofolate (mTHF) as the methyl donor and reductant in the reaction, yielding dihydrofolate (DHF) as a by-product. This enzymatic reaction provides an intracellular de novo source of dTMP, an essential precursor for DNA biosynthesis | |
JCGKACBB_01472 | 0.0 | yfmR | S | ABC transporter, ATP-binding protein | ||
JCGKACBB_01473 | 9.6e-85 | |||||
JCGKACBB_01474 | 2.5e-228 | cca | 2.7.7.19, 2.7.7.72 | J | Catalyzes the addition and repair of the essential 3'- terminal CCA sequence in tRNAs without using a nucleic acid template. Adds these three nucleotides in the order of C, C, and A to the tRNA nucleotide-73, using CTP and ATP as substrates and producing inorganic pyrophosphate | |
JCGKACBB_01475 | 5.4e-144 | dapB | 1.17.1.8 | E | Catalyzes the conversion of 4-hydroxy- tetrahydrodipicolinate (HTPA) to tetrahydrodipicolinate | |
JCGKACBB_01476 | 1.3e-148 | 3.1.3.102, 3.1.3.104 | S | hydrolase | ||
JCGKACBB_01477 | 3.3e-215 | S | Tetratricopeptide repeat protein | |||
JCGKACBB_01478 | 1.1e-40 | hup | L | Histone-like DNA-binding protein which is capable of wrapping DNA to stabilize it, and thus to prevent its denaturation under extreme environmental conditions | ||
JCGKACBB_01479 | 5.1e-248 | der | 1.1.1.399, 1.1.1.95 | S | GTPase that plays an essential role in the late steps of ribosome biogenesis | |
JCGKACBB_01480 | 1.8e-213 | rpsA | 1.17.7.4 | J | Ribosomal protein S1 | |
JCGKACBB_01481 | 3.8e-117 | cmk | 1.17.7.4, 2.5.1.19, 2.7.1.26, 2.7.4.25, 2.7.7.2, 6.3.2.1 | F | Belongs to the cytidylate kinase family. Type 1 subfamily | |
JCGKACBB_01482 | 2e-19 | M | Lysin motif | |||
JCGKACBB_01483 | 5.8e-269 | recQ1 | 3.6.4.12 | L | ATP-dependent DNA helicase RecQ | |
JCGKACBB_01484 | 1.7e-190 | ypbB | 5.1.3.1 | S | Helix-turn-helix domain | |
JCGKACBB_01485 | 1.1e-96 | U | Mediates riboflavin uptake, may also transport FMN and roseoflavin. Probably a riboflavin-binding protein that interacts with the energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates. The substrates themselves are bound by transmembrane, not extracytoplasmic soluble proteins | |||
JCGKACBB_01486 | 1.1e-130 | rluB | 5.4.99.19, 5.4.99.21, 5.4.99.22 | J | Belongs to the pseudouridine synthase RsuA family | |
JCGKACBB_01487 | 7.9e-103 | scpB | D | Participates in chromosomal partition during cell division. May act via the formation of a condensin-like complex containing Smc and ScpA that pull DNA away from mid-cell into both cell halves | ||
JCGKACBB_01488 | 5.7e-130 | scpA | D | Participates in chromosomal partition during cell division. May act via the formation of a condensin-like complex containing Smc and ScpB that pull DNA away from mid-cell into both cell halves | ||
JCGKACBB_01489 | 4.8e-69 | ribT | K | COG0454 Histone acetyltransferase HPA2 and related acetyltransferases | ||
JCGKACBB_01490 | 3.2e-164 | xerD | D | recombinase XerD | ||
JCGKACBB_01491 | 2.9e-170 | cvfB | S | S1 domain | ||
JCGKACBB_01492 | 1.5e-74 | yeaL | S | Protein of unknown function (DUF441) | ||
JCGKACBB_01493 | 0.0 | pyk | 2.7.1.40, 2.7.7.4 | G | Belongs to the pyruvate kinase family | |
JCGKACBB_01494 | 1.5e-180 | pfkA | 2.7.1.11 | F | Catalyzes the phosphorylation of D-fructose 6-phosphate to fructose 1,6-bisphosphate by ATP, the first committing step of glycolysis | |
JCGKACBB_01495 | 0.0 | dnaE | 2.7.7.7 | L | DNA polymerase | |
JCGKACBB_01496 | 5.6e-29 | S | Protein of unknown function (DUF2929) | |||
JCGKACBB_01498 | 0.0 | clpB | O | Part of a stress-induced multi-chaperone system, it is involved in the recovery of the cell from heat-induced damage, in cooperation with DnaK, DnaJ and GrpE | ||
JCGKACBB_01499 | 2.3e-234 | pepT | 3.4.11.4 | E | Cleaves the N-terminal amino acid of tripeptides | |
JCGKACBB_01500 | 7.2e-197 | yqfO | 3.5.4.16 | S | Belongs to the GTP cyclohydrolase I type 2 NIF3 family | |
JCGKACBB_01501 | 1e-125 | trmK | 2.1.1.217 | S | SAM-dependent methyltransferase | |
JCGKACBB_01502 | 6.9e-223 | M | O-Antigen ligase | |||
JCGKACBB_01503 | 1.6e-119 | drrB | U | ABC-2 type transporter | ||
JCGKACBB_01504 | 2.3e-165 | drrA | V | ABC transporter | ||
JCGKACBB_01505 | 9.1e-84 | K | helix_turn_helix multiple antibiotic resistance protein | |||
JCGKACBB_01506 | 0.0 | ppsA | 2.7.9.2 | H | Catalyzes the phosphorylation of pyruvate to phosphoenolpyruvate | |
JCGKACBB_01507 | 5.1e-60 | P | Rhodanese Homology Domain | |||
JCGKACBB_01508 | 8.1e-91 | yetL | K | helix_turn_helix multiple antibiotic resistance protein | ||
JCGKACBB_01509 | 1.7e-207 | |||||
JCGKACBB_01510 | 1.5e-216 | I | transferase activity, transferring acyl groups other than amino-acyl groups | |||
JCGKACBB_01511 | 2.6e-180 | C | Zinc-binding dehydrogenase | |||
JCGKACBB_01512 | 0.0 | 3.6.3.6 | P | Cation transporter/ATPase, N-terminus | ||
JCGKACBB_01513 | 2.6e-244 | eno | 4.2.1.11 | G | Catalyzes the reversible conversion of 2- phosphoglycerate into phosphoenolpyruvate. It is essential for the degradation of carbohydrates via glycolysis | |
JCGKACBB_01514 | 9.3e-128 | EGP | Major facilitator Superfamily | |||
JCGKACBB_01515 | 2.4e-80 | EGP | Major facilitator Superfamily | |||
JCGKACBB_01516 | 4.3e-77 | K | Transcriptional regulator | |||
JCGKACBB_01517 | 3.5e-208 | dapE | 3.5.1.18 | E | succinyl-diaminopimelate desuccinylase | |
JCGKACBB_01518 | 0.0 | naoX | P | Pyridine nucleotide-disulphide oxidoreductase, dimerisation domain | ||
JCGKACBB_01519 | 8e-137 | K | DeoR C terminal sensor domain | |||
JCGKACBB_01520 | 1.2e-106 | yjhB | 3.6.1.13, 3.6.1.55 | F | NUDIX domain | |
JCGKACBB_01521 | 9.1e-71 | yneH | 1.20.4.1 | P | ArsC family | |
JCGKACBB_01522 | 4.1e-68 | S | Protein of unknown function (DUF1722) | |||
JCGKACBB_01523 | 2e-112 | GM | epimerase | |||
JCGKACBB_01524 | 0.0 | CP_1020 | S | Zinc finger, swim domain protein | ||
JCGKACBB_01525 | 2.7e-81 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_01526 | 4.7e-214 | S | membrane | |||
JCGKACBB_01527 | 1.2e-14 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_01528 | 3.4e-72 | S | Alpha/beta hydrolase of unknown function (DUF915) | |||
JCGKACBB_01529 | 1.4e-19 | celB | 2.7.1.207 | G | The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active - transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane | |
JCGKACBB_01531 | 1e-248 | pgaC | GT2 | M | Glycosyl transferase | |
JCGKACBB_01532 | 2.7e-77 | |||||
JCGKACBB_01533 | 1.4e-98 | yqeG | S | HAD phosphatase, family IIIA | ||
JCGKACBB_01534 | 4.5e-216 | yqeH | S | Ribosome biogenesis GTPase YqeH | ||
JCGKACBB_01535 | 1.1e-50 | yhbY | J | RNA-binding protein | ||
JCGKACBB_01536 | 1.4e-118 | nadD | 2.7.7.18, 3.6.1.55 | H | Catalyzes the reversible adenylation of nicotinate mononucleotide (NaMN) to nicotinic acid adenine dinucleotide (NaAD) | |
JCGKACBB_01537 | 3.2e-115 | nadD | 2.7.6.3, 2.7.7.18 | H | Hydrolase, HD family | |
JCGKACBB_01538 | 8.7e-57 | rsfS | J | Functions as a ribosomal silencing factor. Interacts with ribosomal protein L14 (rplN), blocking formation of intersubunit bridge B8. Prevents association of the 30S and 50S ribosomal subunits and the formation of functional ribosomes, thus repressing translation | ||
JCGKACBB_01539 | 4.4e-140 | yqeM | Q | Methyltransferase | ||
JCGKACBB_01540 | 2.2e-218 | ylbM | S | Belongs to the UPF0348 family | ||
JCGKACBB_01541 | 7.8e-97 | yceD | S | Uncharacterized ACR, COG1399 | ||
JCGKACBB_01542 | 2.7e-87 | S | Peptidase propeptide and YPEB domain | |||
JCGKACBB_01543 | 6.4e-171 | P | Belongs to the cation diffusion facilitator (CDF) transporter (TC 2.A.4) family | |||
JCGKACBB_01544 | 1e-273 | gnd | 1.1.1.343, 1.1.1.44 | H | Catalyzes the oxidative decarboxylation of 6- phosphogluconate to ribulose 5-phosphate and CO(2), with concomitant reduction of NADP to NADPH | |
JCGKACBB_01545 | 4.2e-245 | rarA | L | recombination factor protein RarA | ||
JCGKACBB_01546 | 4.3e-121 | K | response regulator | |||
JCGKACBB_01547 | 8e-307 | arlS | 2.7.13.3 | T | Histidine kinase | |
JCGKACBB_01548 | 5.8e-172 | 2.5.1.74 | H | 1,4-dihydroxy-2-naphthoate | ||
JCGKACBB_01549 | 0.0 | sbcC | L | Putative exonuclease SbcCD, C subunit | ||
JCGKACBB_01550 | 1.3e-226 | sbcD | L | SbcCD cleaves DNA hairpin structures. These structures can inhibit DNA replication and are intermediates in certain DNA recombination reactions. The complex acts as a 3'- 5' double strand exonuclease that can open hairpins. It also has a 5' single-strand endonuclease activity | ||
JCGKACBB_01551 | 8.4e-94 | S | SdpI/YhfL protein family | |||
JCGKACBB_01552 | 1e-162 | yidC | U | Required for the insertion and or proper folding and or complex formation of integral membrane proteins into the membrane. Involved in integration of membrane proteins that insert both dependently and independently of the Sec translocase complex, as well as at least some lipoproteins | ||
JCGKACBB_01553 | 6.4e-44 | acyP | 3.6.1.7 | C | Belongs to the acylphosphatase family | |
JCGKACBB_01554 | 7.9e-140 | spoU | 2.1.1.185 | J | Belongs to the class IV-like SAM-binding methyltransferase superfamily. RNA methyltransferase TrmH family | |
JCGKACBB_01555 | 1.3e-93 | XK27_09705 | 6.1.1.14 | S | Metal dependent phosphohydrolases with conserved 'HD' motif. | |
JCGKACBB_01556 | 7.4e-64 | yodB | K | Transcriptional regulator, HxlR family | ||
JCGKACBB_01557 | 4.9e-201 | pheS | 6.1.1.20 | J | Belongs to the class-II aminoacyl-tRNA synthetase family. Phe-tRNA synthetase alpha subunit type 1 subfamily | |
JCGKACBB_01558 | 0.0 | pheT | 6.1.1.20 | J | Belongs to the phenylalanyl-tRNA synthetase beta subunit family. Type 1 subfamily | |
JCGKACBB_01559 | 6.6e-186 | mltG | S | Functions as a peptidoglycan terminase that cleaves nascent peptidoglycan strands endolytically to terminate their elongation | ||
JCGKACBB_01560 | 2.6e-112 | udk | 2.7.1.48 | F | Cytidine monophosphokinase | |
JCGKACBB_01561 | 6.8e-81 | greA | K | Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides | ||
JCGKACBB_01562 | 2.1e-94 | liaI | S | membrane | ||
JCGKACBB_01563 | 3.4e-74 | XK27_02470 | K | LytTr DNA-binding domain | ||
JCGKACBB_01564 | 3.4e-54 | yneR | S | Belongs to the HesB IscA family | ||
JCGKACBB_01565 | 0.0 | S | membrane | |||
JCGKACBB_01566 | 0.0 | pbp2b | 3.4.16.4 | M | Penicillin-binding Protein | |
JCGKACBB_01567 | 1.4e-21 | rpmG | J | Belongs to the bacterial ribosomal protein bL33 family | ||
JCGKACBB_01568 | 6.3e-102 | ygfA | 6.3.3.2 | H | Belongs to the 5-formyltetrahydrofolate cyclo-ligase family | |
JCGKACBB_01569 | 3e-114 | gluP | 3.4.21.105 | S | Peptidase, S54 family | |
JCGKACBB_01570 | 1.4e-33 | yqgQ | S | Bacterial protein of unknown function (DUF910) | ||
JCGKACBB_01571 | 5.7e-180 | glk | 2.7.1.2 | G | Glucokinase | |
JCGKACBB_01572 | 6.4e-111 | pepE | 3.4.13.21 | E | Belongs to the peptidase S51 family | |
JCGKACBB_01573 | 4.4e-68 | yqhL | P | Rhodanese-like protein | ||
JCGKACBB_01574 | 6.9e-23 | WQ51_02665 | S | Protein of unknown function (DUF3042) | ||
JCGKACBB_01575 | 5.8e-140 | glpQ | 3.1.4.46 | C | phosphodiesterase | |
JCGKACBB_01576 | 1.6e-174 | miaA | 2.5.1.75 | F | Catalyzes the transfer of a dimethylallyl group onto the adenine at position 37 in tRNAs that read codons beginning with uridine, leading to the formation of N6-(dimethylallyl)adenosine (i(6)A) | |
JCGKACBB_01577 | 1e-63 | glnR | K | Transcriptional regulator | ||
JCGKACBB_01578 | 1.8e-264 | glnA | 6.3.1.2 | E | glutamine synthetase | |
JCGKACBB_01579 | 2.5e-161 | |||||
JCGKACBB_01580 | 4e-181 | |||||
JCGKACBB_01581 | 2.4e-98 | dut | S | Protein conserved in bacteria | ||
JCGKACBB_01582 | 1.6e-55 | |||||
JCGKACBB_01583 | 1.7e-30 | |||||
JCGKACBB_01586 | 5.4e-19 | |||||
JCGKACBB_01587 | 1.8e-89 | K | Transcriptional regulator | |||
JCGKACBB_01588 | 7.5e-49 | rplU | J | This protein binds to 23S rRNA in the presence of protein L20 | ||
JCGKACBB_01589 | 3.2e-53 | ysxB | J | Cysteine protease Prp | ||
JCGKACBB_01590 | 5.4e-46 | rpmA | J | Belongs to the bacterial ribosomal protein bL27 family | ||
JCGKACBB_01591 | 6.5e-193 | pepP | 3.4.11.9, 3.4.13.9 | E | Creatinase/Prolidase N-terminal domain | |
JCGKACBB_01592 | 2.2e-99 | efp | J | Involved in peptide bond synthesis. Stimulates efficient translation and peptide-bond synthesis on native or reconstituted 70S ribosomes in vitro. Probably functions indirectly by altering the affinity of the ribosome for aminoacyl-tRNA, thus increasing their reactivity as acceptors for peptidyl transferase | ||
JCGKACBB_01593 | 3.5e-74 | yqhY | S | Asp23 family, cell envelope-related function | ||
JCGKACBB_01594 | 5.2e-69 | nusB | K | Involved in transcription antitermination. Required for transcription of ribosomal RNA (rRNA) genes. Binds specifically to the boxA antiterminator sequence of the ribosomal RNA (rrn) operons | ||
JCGKACBB_01595 | 8.5e-151 | folD | 1.5.1.5, 3.5.4.9 | F | Catalyzes the oxidation of 5,10- methylenetetrahydrofolate to 5,10-methenyltetrahydrofolate and then the hydrolysis of 5,10-methenyltetrahydrofolate to 10- formyltetrahydrofolate | |
JCGKACBB_01596 | 9.3e-245 | xseA | 3.1.11.6 | L | Bidirectionally degrades single-stranded DNA into large acid-insoluble oligonucleotides, which are then degraded further into small acid-soluble oligonucleotides | |
JCGKACBB_01597 | 4.3e-33 | xseB | 3.1.11.6 | L | Bidirectionally degrades single-stranded DNA into large acid-insoluble oligonucleotides, which are then degraded further into small acid-soluble oligonucleotides | |
JCGKACBB_01598 | 5.5e-153 | ispA | 2.5.1.1, 2.5.1.10, 2.5.1.29, 2.5.1.90 | H | Belongs to the FPP GGPP synthase family | |
JCGKACBB_01599 | 4e-150 | rrmJ | 2.1.1.226, 2.1.1.227 | J | Ribosomal RNA large subunit methyltransferase J | |
JCGKACBB_01600 | 7.4e-77 | argR | K | Regulates arginine biosynthesis genes | ||
JCGKACBB_01601 | 4.4e-308 | recN | L | May be involved in recombinational repair of damaged DNA | ||
JCGKACBB_01602 | 5.7e-222 | opuCA | 3.6.3.32 | E | ABC transporter, ATP-binding protein | |
JCGKACBB_01603 | 1.2e-104 | opuCB | E | ABC transporter permease | ||
JCGKACBB_01604 | 6e-174 | opuCC | M | Periplasmic glycine betaine choline-binding (lipo)protein of an ABC-type transport system (osmoprotectant binding protein) | ||
JCGKACBB_01605 | 4.9e-106 | opuCD | P | Binding-protein-dependent transport system inner membrane component | ||
JCGKACBB_01606 | 4.5e-55 | |||||
JCGKACBB_01607 | 3.3e-112 | gmk | 2.7.4.8 | F | Essential for recycling GMP and indirectly, cGMP | |
JCGKACBB_01608 | 2.4e-30 | rpoZ | 2.7.7.6 | K | Promotes RNA polymerase assembly. Latches the N- and C- terminal regions of the beta' subunit thereby facilitating its interaction with the beta and alpha subunits | |
JCGKACBB_01609 | 5.2e-218 | coaBC | 4.1.1.36, 6.3.2.5 | H | Catalyzes two steps in the biosynthesis of coenzyme A. In the first step cysteine is conjugated to 4'-phosphopantothenate to form 4-phosphopantothenoylcysteine, in the latter compound is decarboxylated to form 4'-phosphopantotheine | |
JCGKACBB_01610 | 0.0 | priA | L | Involved in the restart of stalled replication forks. Recognizes and binds the arrested nascent DNA chain at stalled replication forks. It can open the DNA duplex, via its helicase activity, and promote assembly of the primosome and loading of the major replicative helicase DnaB onto DNA | ||
JCGKACBB_01611 | 1.8e-173 | fmt | 2.1.2.9 | J | Attaches a formyl group to the free amino group of methionyl-tRNA(fMet). The formyl group appears to play a dual role in the initiator identity of N-formylmethionyl-tRNA by promoting its recognition by IF2 and preventing the misappropriation of this tRNA by the elongation apparatus | |
JCGKACBB_01612 | 1.1e-250 | sun | 2.1.1.176 | J | Specifically methylates the cytosine at position 967 (m5C967) of 16S rRNA | |
JCGKACBB_01613 | 1.7e-134 | stp | 3.1.3.16 | T | phosphatase | |
JCGKACBB_01614 | 0.0 | prkC | 2.7.11.1 | KLT | serine threonine protein kinase | |
JCGKACBB_01615 | 3.2e-164 | rsgA | 3.1.3.100 | S | One of several proteins that assist in the late maturation steps of the functional core of the 30S ribosomal subunit. Helps release RbfA from mature subunits. May play a role in the assembly of ribosomal proteins into the subunit. Circularly permuted GTPase that catalyzes slow GTP hydrolysis, GTPase activity is stimulated by the 30S ribosomal subunit | |
JCGKACBB_01616 | 2.8e-117 | rpe | 5.1.3.1 | G | Belongs to the ribulose-phosphate 3-epimerase family | |
JCGKACBB_01617 | 1.7e-122 | thiN | 2.7.6.2 | H | thiamine pyrophosphokinase | |
JCGKACBB_01618 | 4.9e-27 | rpmB | J | Belongs to the bacterial ribosomal protein bL28 family | ||
JCGKACBB_01619 | 1.8e-57 | asp | S | Asp23 family, cell envelope-related function | ||
JCGKACBB_01620 | 0.0 | yloV | S | DAK2 domain fusion protein YloV | ||
JCGKACBB_01621 | 0.0 | recG | 3.6.4.12 | L | Critical role in recombination and DNA repair. Helps process Holliday junction intermediates to mature products by catalyzing branch migration. Has a DNA unwinding activity characteristic of a DNA helicase with a 3'- to 5'- polarity. Unwinds branched duplex DNA (Y-DNA) | |
JCGKACBB_01622 | 2.3e-190 | plsX | 2.3.1.15 | I | Catalyzes the reversible formation of acyl-phosphate (acyl-PO(4)) from acyl- acyl-carrier-protein (acyl-ACP). This enzyme utilizes acyl-ACP as fatty acyl donor, but not acyl-CoA | |
JCGKACBB_01623 | 1.7e-35 | acpP | IQ | Carrier of the growing fatty acid chain in fatty acid biosynthesis | ||
JCGKACBB_01624 | 5.7e-129 | rnc | 3.1.26.3 | J | Digests double-stranded RNA. Involved in the processing of primary rRNA transcript to yield the immediate precursors to the large and small rRNAs (23S and 16S). Processes some mRNAs, and tRNAs when they are encoded in the rRNA operon. Processes pre- crRNA and tracrRNA of type II CRISPR loci if present in the organism | |
JCGKACBB_01625 | 0.0 | smc | D | Required for chromosome condensation and partitioning | ||
JCGKACBB_01626 | 5.6e-169 | ftsY | U | Involved in targeting and insertion of nascent membrane proteins into the cytoplasmic membrane. Acts as a receptor for the complex formed by the signal recognition particle (SRP) and the ribosome-nascent chain (RNC) | ||
JCGKACBB_01627 | 2.6e-58 | ylxM | S | Might take part in the signal recognition particle (SRP) pathway. This is inferred from the conservation of its genetic proximity to ftsY ffh. May be a regulatory protein | ||
JCGKACBB_01628 | 1.1e-219 | ffh | 3.6.5.4 | U | Involved in targeting and insertion of nascent membrane proteins into the cytoplasmic membrane. Binds to the hydrophobic signal sequence of the ribosome-nascent chain (RNC) as it emerges from the ribosomes. The SRP-RNC complex is then targeted to the cytoplasmic membrane where it interacts with the SRP receptor FtsY | |
JCGKACBB_01629 | 2.9e-44 | rpsP | J | Belongs to the bacterial ribosomal protein bS16 family | ||
JCGKACBB_01630 | 2.6e-39 | ylqC | S | Belongs to the UPF0109 family | ||
JCGKACBB_01631 | 1.4e-95 | rimM | J | An accessory protein needed during the final step in the assembly of 30S ribosomal subunit, possibly for assembly of the head region. Probably interacts with S19. Essential for efficient processing of 16S rRNA. May be needed both before and after RbfA during the maturation of 16S rRNA. It has affinity for free ribosomal 30S subunits but not for 70S ribosomes | ||
JCGKACBB_01632 | 3.4e-140 | trmD | 2.1.1.228, 4.6.1.12 | J | Belongs to the RNA methyltransferase TrmD family | |
JCGKACBB_01633 | 1.9e-59 | rplS | J | This protein is located at the 30S-50S ribosomal subunit interface and may play a role in the structure and function of the aminoacyl-tRNA binding site | ||
JCGKACBB_01634 | 6.8e-53 | |||||
JCGKACBB_01635 | 0.0 | pelX | UW | LPXTG-motif cell wall anchor domain protein | ||
JCGKACBB_01636 | 5.3e-86 | |||||
JCGKACBB_01637 | 5.8e-60 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_01638 | 5.8e-122 | 1.1.1.1 | C | nadph quinone reductase | ||
JCGKACBB_01639 | 1e-57 | K | transcriptional regulator (AraC family) | |||
JCGKACBB_01640 | 2.2e-225 | G | Bacterial alpha-L-rhamnosidase 6 hairpin glycosidase domain | |||
JCGKACBB_01641 | 3.3e-112 | G | transporter | |||
JCGKACBB_01642 | 3.9e-13 | bglK_1 | GK | ROK family | ||
JCGKACBB_01643 | 2.5e-46 | bglK_1 | GK | ROK family | ||
JCGKACBB_01644 | 1.1e-141 | EGP | Major facilitator Superfamily | |||
JCGKACBB_01645 | 2.4e-136 | ecsA_2 | V | AAA domain, putative AbiEii toxin, Type IV TA system | ||
JCGKACBB_01646 | 1.1e-271 | XK27_00765 | ||||
JCGKACBB_01648 | 2.6e-269 | trpE | 4.1.3.27 | EH | Anthranilate synthase component I, N terminal region | |
JCGKACBB_01649 | 1.2e-103 | trpG | 2.4.2.18, 2.6.1.85, 4.1.3.27 | EH | Peptidase C26 | |
JCGKACBB_01650 | 2.2e-166 | trpD | 2.4.2.18, 4.1.3.27 | F | Catalyzes the transfer of the phosphoribosyl group of 5- phosphorylribose-1-pyrophosphate (PRPP) to anthranilate to yield N-(5'-phosphoribosyl)-anthranilate (PRA) | |
JCGKACBB_01651 | 4.9e-129 | trpC | 4.1.1.48, 5.3.1.24 | E | Belongs to the TrpC family | |
JCGKACBB_01652 | 4.1e-110 | trpF | 4.1.1.48, 4.2.1.160, 4.2.1.20, 5.3.1.24 | E | Belongs to the TrpF family | |
JCGKACBB_01653 | 2.1e-227 | trpB | 4.2.1.20 | E | The beta subunit is responsible for the synthesis of L- tryptophan from indole and L-serine | |
JCGKACBB_01654 | 1.9e-141 | trpA | 4.2.1.20 | E | The alpha subunit is responsible for the aldol cleavage of indoleglycerol phosphate to indole and glyceraldehyde 3- phosphate | |
JCGKACBB_01655 | 4.3e-36 | entB | 3.5.1.19 | Q | Isochorismatase family | |
JCGKACBB_01656 | 1.9e-175 | 1.6.5.5 | C | Zinc-binding dehydrogenase | ||
JCGKACBB_01657 | 1.5e-67 | ybbJ | K | Acetyltransferase (GNAT) family | ||
JCGKACBB_01658 | 8.9e-60 | E | glutamate:sodium symporter activity | |||
JCGKACBB_01659 | 2.6e-147 | E | glutamate:sodium symporter activity | |||
JCGKACBB_01660 | 1.3e-215 | 3.5.1.47 | E | Peptidase family M20/M25/M40 | ||
JCGKACBB_01661 | 8.5e-129 | adhB | 1.1.1.1, 1.1.1.14 | E | alcohol dehydrogenase | |
JCGKACBB_01662 | 2.4e-40 | S | Protein of unknown function (DUF1648) | |||
JCGKACBB_01663 | 4.3e-144 | S | Belongs to the short-chain dehydrogenases reductases (SDR) family | |||
JCGKACBB_01664 | 3.8e-179 | yneE | K | Transcriptional regulator | ||
JCGKACBB_01665 | 2.3e-75 | fabZ | 3.5.1.108, 4.2.1.59 | I | Involved in unsaturated fatty acids biosynthesis. Catalyzes the dehydration of short chain beta-hydroxyacyl-ACPs and long chain saturated and unsaturated beta-hydroxyacyl-ACPs | |
JCGKACBB_01666 | 1.7e-179 | fabH | 2.3.1.180 | I | Catalyzes the condensation reaction of fatty acid synthesis by the addition to an acyl acceptor of two carbons from malonyl-ACP. Catalyzes the first condensation reaction which initiates fatty acid synthesis and may therefore play a role in governing the total rate of fatty acid production. Possesses both acetoacetyl-ACP synthase and acetyl transacylase activities. Its substrate specificity determines the biosynthesis of branched- chain and or straight-chain of fatty acids | |
JCGKACBB_01667 | 1.3e-35 | acpP | IQ | Carrier of the growing fatty acid chain in fatty acid biosynthesis | ||
JCGKACBB_01668 | 1.4e-167 | fabD | 2.3.1.39 | I | Malonyl CoA-acyl carrier protein transacylase | |
JCGKACBB_01669 | 1.2e-126 | IQ | reductase | |||
JCGKACBB_01670 | 1.6e-227 | fabF | 2.3.1.179 | I | Catalyzes the condensation reaction of fatty acid synthesis by the addition to an acyl acceptor of two carbons from malonyl-ACP | |
JCGKACBB_01671 | 3.8e-73 | accB | 2.3.1.12, 4.1.1.3 | I | first, biotin carboxylase catalyzes the carboxylation of the carrier protein and then the transcarboxylase transfers the carboxyl group to form malonyl-CoA | |
JCGKACBB_01672 | 6.1e-70 | fabZ | 3.5.1.108, 4.2.1.59 | I | FabA-like domain | |
JCGKACBB_01673 | 2.1e-260 | accC | 6.3.4.14, 6.4.1.2 | I | Acetyl-CoA carboxylase biotin carboxylase subunit | |
JCGKACBB_01674 | 3.5e-157 | accD | 2.1.3.15, 6.4.1.2 | I | Component of the acetyl coenzyme A carboxylase (ACC) complex. Biotin carboxylase (BC) catalyzes the carboxylation of biotin on its carrier protein (BCCP) and then the CO(2) group is transferred by the transcarboxylase to acetyl-CoA to form malonyl- CoA | |
JCGKACBB_01675 | 8.8e-139 | accA | 2.1.3.15, 6.4.1.2 | I | alpha subunit | |
JCGKACBB_01676 | 1.3e-134 | fabI | 1.3.1.10, 1.3.1.9 | I | Enoyl- acyl-carrier-protein reductase NADH | |
JCGKACBB_01677 | 5.4e-98 | 2.7.8.7 | H | Belongs to the P-Pant transferase superfamily | ||
JCGKACBB_01678 | 1.7e-123 | S | Protein of unknown function (DUF554) | |||
JCGKACBB_01679 | 1.2e-160 | K | LysR substrate binding domain | |||
JCGKACBB_01680 | 4.6e-88 | ykhA | 3.1.2.20 | I | Thioesterase superfamily | |
JCGKACBB_01681 | 8.5e-193 | rsgA | 3.1.3.100 | S | One of several proteins that assist in the late maturation steps of the functional core of the 30S ribosomal subunit. Helps release RbfA from mature subunits. May play a role in the assembly of ribosomal proteins into the subunit. Circularly permuted GTPase that catalyzes slow GTP hydrolysis, GTPase activity is stimulated by the 30S ribosomal subunit | |
JCGKACBB_01682 | 2.3e-93 | K | transcriptional regulator | |||
JCGKACBB_01683 | 5.6e-303 | norB | EGP | Major Facilitator | ||
JCGKACBB_01684 | 1.2e-139 | f42a | O | Band 7 protein | ||
JCGKACBB_01685 | 8.5e-54 | |||||
JCGKACBB_01686 | 1.3e-28 | |||||
JCGKACBB_01687 | 1.8e-207 | cfa | 2.1.1.317, 2.1.1.79 | M | cyclopropane-fatty-acyl-phospholipid synthase | |
JCGKACBB_01688 | 1e-32 | L | hmm pf00665 | |||
JCGKACBB_01689 | 4.5e-114 | 1.14.99.53 | AA10 | S | Lytic polysaccharide mono-oxygenase, cellulose-degrading | |
JCGKACBB_01690 | 3e-44 | ycnE | 3.1.1.29 | S | Antibiotic biosynthesis monooxygenase | |
JCGKACBB_01691 | 6.6e-235 | mepA | V | MATE efflux family protein | ||
JCGKACBB_01692 | 6e-134 | pepI | 3.4.11.5, 3.5.1.101 | E | Releases the N-terminal proline from various substrates | |
JCGKACBB_01693 | 1.6e-140 | S | Belongs to the UPF0246 family | |||
JCGKACBB_01694 | 1e-75 | |||||
JCGKACBB_01695 | 3.2e-308 | oppA | E | Bacterial extracellular solute-binding proteins, family 5 Middle | ||
JCGKACBB_01696 | 7.7e-140 | |||||
JCGKACBB_01698 | 4.3e-141 | 2.7.7.47 | H | Mediates bacterial resistance to the antibiotics streptomycin and spectomycin | ||
JCGKACBB_01699 | 4.8e-40 | |||||
JCGKACBB_01700 | 7.8e-129 | cbiO | P | ABC transporter | ||
JCGKACBB_01701 | 2.6e-149 | P | Cobalt transport protein | |||
JCGKACBB_01702 | 4.8e-182 | nikMN | P | PDGLE domain | ||
JCGKACBB_01703 | 4.2e-121 | K | Crp-like helix-turn-helix domain | |||
JCGKACBB_01704 | 1e-240 | larA | 5.1.2.1 | S | Domain of unknown function (DUF2088) | |
JCGKACBB_01705 | 2.4e-125 | larB | S | AIR carboxylase | ||
JCGKACBB_01706 | 5.4e-131 | larC | 4.99.1.12 | S | Involved in the biosynthesis of a nickel-pincer cofactor ((SCS)Ni(II) pincer complex). Binds Ni(2 ), and functions in nickel delivery to pyridinium-3,5-bisthiocarboxylic acid mononucleotide (P2TMN), to form the mature cofactor. Is thus probably required for the activation of nickel-pincer cofactor- dependent enzymes | |
JCGKACBB_01707 | 7.7e-75 | larC | 4.99.1.12 | S | Protein of unknown function DUF111 | |
JCGKACBB_01708 | 1.5e-132 | glpF | U | Belongs to the MIP aquaporin (TC 1.A.8) family | ||
JCGKACBB_01709 | 1.8e-150 | larE | S | NAD synthase | ||
JCGKACBB_01710 | 9.3e-178 | 1.6.5.5 | C | Zinc-binding dehydrogenase | ||
JCGKACBB_01711 | 5.8e-138 | thiM | 2.7.1.50 | H | Catalyzes the phosphorylation of the hydroxyl group of 4-methyl-5-beta-hydroxyethylthiazole (THZ) | |
JCGKACBB_01712 | 1.9e-147 | thiD | 2.5.1.3, 2.7.1.49, 2.7.4.7, 4.1.99.17 | H | Phosphomethylpyrimidine kinase | |
JCGKACBB_01713 | 3.1e-108 | thiE | 2.5.1.3 | H | Condenses 4-methyl-5-(beta-hydroxyethyl)thiazole monophosphate (THZ-P) and 2-methyl-4-amino-5-hydroxymethyl pyrimidine pyrophosphate (HMP-PP) to form thiamine monophosphate (TMP) | |
JCGKACBB_01714 | 9.9e-206 | cytX | U | Belongs to the purine-cytosine permease (2.A.39) family | ||
JCGKACBB_01715 | 5.1e-136 | S | peptidase C26 | |||
JCGKACBB_01716 | 1.5e-302 | L | HIRAN domain | |||
JCGKACBB_01717 | 1.3e-84 | F | NUDIX domain | |||
JCGKACBB_01718 | 2.6e-250 | yifK | E | Amino acid permease | ||
JCGKACBB_01719 | 1.8e-122 | |||||
JCGKACBB_01720 | 1.1e-149 | ydjP | I | Alpha/beta hydrolase family | ||
JCGKACBB_01721 | 0.0 | cas9 | L | CRISPR (clustered regularly interspaced short palindromic repeat) is an adaptive immune system that provides protection against mobile genetic elements (viruses, transposable elements and conjugative plasmids). CRISPR clusters contain spacers, sequences complementary to antecedent mobile elements, and target invading nucleic acids. CRISPR clusters are transcribed and processed into CRISPR RNA (crRNA). In type II CRISPR systems correct processing of pre-crRNA requires a trans-encoded small RNA (tracrRNA), endogenous ribonuclease 3 (rnc) and this protein. The tracrRNA serves as a guide for ribonuclease 3-aided processing of pre-crRNA. Subsequently Cas9 crRNA tracrRNA endonucleolytically cleaves linear or circular dsDNA target complementary to the spacer | ||
JCGKACBB_01722 | 7.1e-156 | cas1 | L | CRISPR (clustered regularly interspaced short palindromic repeat), is an adaptive immune system that provides protection against mobile genetic elements (viruses, transposable elements and conjugative plasmids). CRISPR clusters contain spacers, sequences complementary to antecedent mobile elements, and target invading nucleic acids. CRISPR clusters are transcribed and processed into CRISPR RNA (crRNA). Acts as a dsDNA endonuclease. Involved in the integration of spacer DNA into the CRISPR cassette | ||
JCGKACBB_01723 | 6.3e-48 | cas2 | L | CRISPR (clustered regularly interspaced short palindromic repeat), is an adaptive immune system that provides protection against mobile genetic elements (viruses, transposable elements and conjugative plasmids). CRISPR clusters contain sequences complementary to antecedent mobile elements and target invading nucleic acids. CRISPR clusters are transcribed and processed into CRISPR RNA (crRNA). Functions as a ssRNA-specific endoribonuclease. Involved in the integration of spacer DNA into the CRISPR cassette | ||
JCGKACBB_01724 | 1.3e-98 | S | CRISPR-associated protein (Cas_Csn2) | |||
JCGKACBB_01725 | 0.0 | pacL1 | P | P-type ATPase | ||
JCGKACBB_01726 | 2.9e-142 | 2.4.2.3 | F | Phosphorylase superfamily | ||
JCGKACBB_01727 | 1.6e-28 | KT | PspC domain | |||
JCGKACBB_01728 | 3.6e-111 | S | NADPH-dependent FMN reductase | |||
JCGKACBB_01729 | 1.2e-74 | papX3 | K | Transcriptional regulator | ||
JCGKACBB_01730 | 4.6e-73 | hsp1 | O | Belongs to the small heat shock protein (HSP20) family | ||
JCGKACBB_01731 | 5.8e-82 | S | Protein of unknown function (DUF3021) | |||
JCGKACBB_01732 | 4.7e-227 | mdtG | EGP | Major facilitator Superfamily | ||
JCGKACBB_01733 | 5e-51 | cadC1 | K | helix_turn_helix, Arsenical Resistance Operon Repressor | ||
JCGKACBB_01734 | 1.4e-168 | yeaN | P | Transporter, major facilitator family protein | ||
JCGKACBB_01736 | 3.8e-159 | S | reductase | |||
JCGKACBB_01737 | 1.2e-165 | 1.1.1.65 | C | Aldo keto reductase | ||
JCGKACBB_01738 | 4.5e-82 | 2.4.2.6 | F | Nucleoside 2-deoxyribosyltransferase like | ||
JCGKACBB_01739 | 0.0 | lai | 4.2.1.53 | S | Myosin-crossreactive antigen | |
JCGKACBB_01740 | 6e-49 | |||||
JCGKACBB_01741 | 5.9e-256 | |||||
JCGKACBB_01742 | 4e-209 | C | Oxidoreductase | |||
JCGKACBB_01743 | 4.9e-151 | cbiQ | P | cobalt transport | ||
JCGKACBB_01744 | 1.1e-92 | ykoD | P | ABC transporter, ATP-binding protein | ||
JCGKACBB_01745 | 5.9e-208 | ykoD | P | ABC transporter, ATP-binding protein | ||
JCGKACBB_01746 | 2.5e-98 | S | UPF0397 protein | |||
JCGKACBB_01748 | 1.6e-129 | K | UbiC transcription regulator-associated domain protein | |||
JCGKACBB_01749 | 2.7e-52 | K | Transcriptional regulator PadR-like family | |||
JCGKACBB_01750 | 9.6e-141 | |||||
JCGKACBB_01751 | 3.4e-149 | |||||
JCGKACBB_01752 | 9.1e-89 | |||||
JCGKACBB_01753 | 1.6e-143 | IQ | Oxidoreductase, short chain dehydrogenase reductase family protein | |||
JCGKACBB_01754 | 2e-169 | yjjC | V | ABC transporter | ||
JCGKACBB_01755 | 4.3e-297 | M | Exporter of polyketide antibiotics | |||
JCGKACBB_01756 | 1.1e-116 | K | Transcriptional regulator | |||
JCGKACBB_01757 | 4.7e-277 | C | Electron transfer flavoprotein FAD-binding domain | |||
JCGKACBB_01758 | 8.6e-74 | folT | 2.7.13.3 | T | ECF transporter, substrate-specific component | |
JCGKACBB_01760 | 1.1e-92 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_01761 | 4.8e-190 | dhaK | 2.7.1.121, 2.7.1.28, 2.7.1.29, 4.6.1.15 | G | Dak1 domain | |
JCGKACBB_01762 | 4.3e-186 | dhaK | 2.7.1.121, 2.7.1.28, 2.7.1.29, 4.6.1.15 | G | Dak1 domain | |
JCGKACBB_01763 | 1.9e-101 | dhaL | 2.7.1.121 | S | Dak2 | |
JCGKACBB_01764 | 9e-57 | dhaM | 2.7.1.121 | S | PTS system fructose IIA component | |
JCGKACBB_01765 | 8.6e-133 | glpF | U | Belongs to the MIP aquaporin (TC 1.A.8) family | ||
JCGKACBB_01766 | 6.5e-190 | malR | K | Transcriptional regulator, LacI family | ||
JCGKACBB_01767 | 2e-180 | yvdE | K | helix_turn _helix lactose operon repressor | ||
JCGKACBB_01768 | 0.0 | malL | 3.2.1.10, 3.2.1.20 | GH13,GH31 | G | Alpha amylase, catalytic domain |
JCGKACBB_01769 | 4.2e-231 | mdxE | G | Bacterial extracellular solute-binding protein | ||
JCGKACBB_01770 | 2.2e-227 | malC | P | Binding-protein-dependent transport system inner membrane component | ||
JCGKACBB_01771 | 1.4e-161 | malD | P | ABC transporter permease | ||
JCGKACBB_01772 | 1.6e-149 | malA | S | maltodextrose utilization protein MalA | ||
JCGKACBB_01773 | 1.5e-258 | malS | 3.2.1.1 | GH13 | G | Glycogen debranching enzyme, glucanotransferase domain |
JCGKACBB_01774 | 4e-209 | msmK | P | Belongs to the ABC transporter superfamily | ||
JCGKACBB_01775 | 0.0 | mapA | 2.4.1.8 | GH65 | G | hydrolase, family 65, central catalytic |
JCGKACBB_01776 | 0.0 | 3.2.1.96 | G | Glycosyl hydrolase family 85 | ||
JCGKACBB_01777 | 7.9e-168 | S | Polyphosphate kinase 2 (PPK2) | |||
JCGKACBB_01778 | 2.5e-98 | drgA | C | Nitroreductase family | ||
JCGKACBB_01779 | 3.1e-178 | iunH2 | 3.2.2.1 | F | nucleoside hydrolase | |
JCGKACBB_01780 | 5.8e-150 | rnhA | 3.1.26.4 | L | Endonuclease that specifically degrades the RNA of RNA- DNA hybrids | |
JCGKACBB_01781 | 8.8e-123 | S | Sucrose-6F-phosphate phosphohydrolase | |||
JCGKACBB_01782 | 2.3e-157 | ccpB | 5.1.1.1 | K | lacI family | |
JCGKACBB_01783 | 8.1e-117 | K | Helix-turn-helix domain, rpiR family | |||
JCGKACBB_01784 | 6e-177 | S | Oxidoreductase family, NAD-binding Rossmann fold | |||
JCGKACBB_01785 | 2.1e-196 | yhhX | 1.1.1.371 | S | Oxidoreductase family, C-terminal alpha/beta domain | |
JCGKACBB_01786 | 0.0 | yjcE | P | Sodium proton antiporter | ||
JCGKACBB_01787 | 0.0 | dxs | 2.2.1.7 | H | Catalyzes the acyloin condensation reaction between C atoms 2 and 3 of pyruvate and glyceraldehyde 3-phosphate to yield 1-deoxy-D-xylulose-5-phosphate (DXP) | |
JCGKACBB_01788 | 3.7e-107 | pncA | Q | Isochorismatase family | ||
JCGKACBB_01789 | 2.7e-132 | |||||
JCGKACBB_01790 | 5.1e-125 | skfE | V | ABC transporter | ||
JCGKACBB_01791 | 9.5e-65 | yvoA_1 | K | Transcriptional regulator, GntR family | ||
JCGKACBB_01792 | 1.2e-45 | S | Enterocin A Immunity | |||
JCGKACBB_01793 | 3.5e-174 | D | Alpha beta | |||
JCGKACBB_01794 | 0.0 | pepF2 | E | Oligopeptidase F | ||
JCGKACBB_01795 | 1.3e-72 | K | Transcriptional regulator | |||
JCGKACBB_01796 | 2.3e-164 | |||||
JCGKACBB_01798 | 1.7e-57 | |||||
JCGKACBB_01799 | 1.7e-47 | |||||
JCGKACBB_01800 | 0.0 | poxB | 1.2.3.3, 1.2.5.1 | EH | Belongs to the TPP enzyme family | |
JCGKACBB_01801 | 4.6e-67 | |||||
JCGKACBB_01802 | 2.4e-144 | yjfP | S | Dienelactone hydrolase family | ||
JCGKACBB_01803 | 2.3e-56 | dsbJ | 2.7.1.180, 5.3.4.1 | CO | Thioredoxin | |
JCGKACBB_01804 | 4.2e-206 | metB | 2.5.1.48, 4.4.1.8 | E | Cys/Met metabolism PLP-dependent enzyme | |
JCGKACBB_01805 | 4.4e-46 | |||||
JCGKACBB_01806 | 6.3e-45 | |||||
JCGKACBB_01807 | 5e-82 | yybC | S | Protein of unknown function (DUF2798) | ||
JCGKACBB_01808 | 3.7e-73 | |||||
JCGKACBB_01809 | 4e-60 | |||||
JCGKACBB_01810 | 5.1e-195 | lplA | 6.3.1.20 | H | Lipoate-protein ligase | |
JCGKACBB_01811 | 0.0 | acm2 | 3.2.1.17 | NU | Bacterial SH3 domain | |
JCGKACBB_01812 | 3e-72 | G | PTS system fructose IIA component | |||
JCGKACBB_01813 | 3.2e-147 | G | PTS system mannose/fructose/sorbose family IID component | |||
JCGKACBB_01814 | 1.4e-142 | agaC | G | PTS system sorbose-specific iic component | ||
JCGKACBB_01815 | 1.2e-85 | agaB | 2.7.1.191 | K | PTS system sorbose subfamily IIB component | |
JCGKACBB_01816 | 2e-129 | K | UTRA domain | |||
JCGKACBB_01817 | 4.7e-79 | uspA | T | universal stress protein | ||
JCGKACBB_01818 | 4.3e-153 | rluA | 5.4.99.23 | J | Responsible for synthesis of pseudouridine from uracil | |
JCGKACBB_01819 | 7.5e-20 | |||||
JCGKACBB_01820 | 9.3e-44 | S | zinc-ribbon domain | |||
JCGKACBB_01821 | 2.1e-69 | S | response to antibiotic | |||
JCGKACBB_01822 | 1.7e-48 | K | Cro/C1-type HTH DNA-binding domain | |||
JCGKACBB_01823 | 3.3e-21 | S | Protein of unknown function (DUF2929) | |||
JCGKACBB_01824 | 2.7e-224 | lsgC | M | Glycosyl transferases group 1 | ||
JCGKACBB_01825 | 0.0 | xfp | 4.1.2.22, 4.1.2.9 | G | Phosphoketolase | |
JCGKACBB_01826 | 4.3e-163 | S | Putative esterase | |||
JCGKACBB_01827 | 2.4e-130 | gntR2 | K | Transcriptional regulator | ||
JCGKACBB_01828 | 5.8e-91 | ybaK | S | Belongs to the prolyl-tRNA editing family. YbaK EbsC subfamily | ||
JCGKACBB_01829 | 8.9e-139 | |||||
JCGKACBB_01830 | 6.8e-116 | ypgQ | S | Metal dependent phosphohydrolases with conserved 'HD' motif. | ||
JCGKACBB_01831 | 5.5e-138 | rrp8 | K | LytTr DNA-binding domain | ||
JCGKACBB_01832 | 4.2e-92 | M1-874 | K | Domain of unknown function (DUF1836) | ||
JCGKACBB_01833 | 7.7e-61 | |||||
JCGKACBB_01834 | 4.1e-74 | hspX | O | Belongs to the small heat shock protein (HSP20) family | ||
JCGKACBB_01835 | 4.4e-58 | |||||
JCGKACBB_01836 | 1.2e-239 | yhdP | S | Transporter associated domain | ||
JCGKACBB_01837 | 4.9e-87 | nrdI | F | Belongs to the NrdI family | ||
JCGKACBB_01838 | 2.6e-270 | yjcE | P | Sodium proton antiporter | ||
JCGKACBB_01839 | 2.8e-213 | yttB | EGP | Major facilitator Superfamily | ||
JCGKACBB_01840 | 1.2e-61 | K | helix_turn_helix, mercury resistance | |||
JCGKACBB_01841 | 3.9e-173 | C | Zinc-binding dehydrogenase | |||
JCGKACBB_01842 | 8.5e-57 | S | SdpI/YhfL protein family | |||
JCGKACBB_01843 | 4.1e-294 | zwf | 1.1.1.363, 1.1.1.49 | G | Catalyzes the oxidation of glucose 6-phosphate to 6- phosphogluconolactone | |
JCGKACBB_01844 | 5.5e-261 | gabR | K | Bacterial regulatory proteins, gntR family | ||
JCGKACBB_01845 | 5e-218 | patA | 2.6.1.1 | E | Aminotransferase | |
JCGKACBB_01846 | 5.6e-144 | dapA | 4.3.3.7 | E | Catalyzes the condensation of (S)-aspartate-beta- semialdehyde (S)-ASA and pyruvate to 4-hydroxy- tetrahydrodipicolinate (HTPA) | |
JCGKACBB_01847 | 3e-18 | |||||
JCGKACBB_01848 | 1.7e-126 | S | membrane transporter protein | |||
JCGKACBB_01849 | 1.9e-161 | mleR | K | LysR family | ||
JCGKACBB_01850 | 5.6e-115 | ylbE | GM | NAD(P)H-binding | ||
JCGKACBB_01851 | 4.2e-22 | wecD | K | Acetyltransferase (GNAT) family | ||
JCGKACBB_01852 | 0.0 | addA | 3.6.4.12 | L | ATP-dependent helicase nuclease subunit A | |
JCGKACBB_01853 | 0.0 | rexB | 3.1.21.3, 3.6.4.12 | L | The heterodimer acts as both an ATP-dependent DNA helicase and an ATP-dependent, dual-direction single-stranded exonuclease. Recognizes the chi site generating a DNA molecule suitable for the initiation of homologous recombination. This subunit has 5' - 3' nuclease activity | |
JCGKACBB_01854 | 1.6e-169 | ydcZ | S | Putative inner membrane exporter, YdcZ | ||
JCGKACBB_01855 | 4e-113 | pyrE | 2.4.2.10, 4.1.1.23 | F | Catalyzes the transfer of a ribosyl phosphate group from 5-phosphoribose 1-diphosphate to orotate, leading to the formation of orotidine monophosphate (OMP) | |
JCGKACBB_01856 | 1.1e-124 | pyrF | 4.1.1.23 | F | Catalyzes the decarboxylation of orotidine 5'- monophosphate (OMP) to uridine 5'-monophosphate (UMP) | |
JCGKACBB_01857 | 3.3e-169 | pyrD | 1.3.1.14, 1.3.98.1 | F | Belongs to the dihydroorotate dehydrogenase family. Type 1 subfamily | |
JCGKACBB_01858 | 0.0 | carB | 6.3.5.5 | F | Carbamoyl-phosphate synthase | |
JCGKACBB_01859 | 1.2e-213 | carA | 6.3.5.5 | F | Carbamoyl-phosphate synthetase glutamine chain | |
JCGKACBB_01860 | 1.5e-244 | pyrC | 3.5.2.3 | F | Belongs to the metallo-dependent hydrolases superfamily. DHOase family. Class I DHOase subfamily | |
JCGKACBB_01861 | 1.2e-171 | pyrB | 2.1.3.2 | F | Belongs to the ATCase OTCase family | |
JCGKACBB_01862 | 1.1e-95 | pyrR | 2.4.2.9 | F | Also displays a weak uracil phosphoribosyltransferase activity which is not physiologically significant | |
JCGKACBB_01863 | 1e-298 | pucR | QT | Purine catabolism regulatory protein-like family | ||
JCGKACBB_01864 | 2.7e-236 | pbuX | F | xanthine permease | ||
JCGKACBB_01865 | 2.4e-221 | pbuG | S | Permease family | ||
JCGKACBB_01866 | 5.6e-161 | GM | NmrA-like family | |||
JCGKACBB_01867 | 1.2e-154 | T | EAL domain | |||
JCGKACBB_01868 | 4.4e-94 | |||||
JCGKACBB_01869 | 2.7e-252 | pgaC | GT2 | M | Glycosyl transferase | |
JCGKACBB_01870 | 3.9e-127 | 2.1.1.14 | E | Methionine synthase | ||
JCGKACBB_01871 | 3.5e-214 | purD | 6.3.4.13 | F | Belongs to the GARS family | |
JCGKACBB_01872 | 2.7e-288 | purH | 2.1.2.3, 3.5.4.10 | F | Bifunctional purine biosynthesis protein PurH | |
JCGKACBB_01873 | 9.9e-103 | purN | 2.1.2.2 | F | Catalyzes the transfer of a formyl group from 10- formyltetrahydrofolate to 5-phospho-ribosyl-glycinamide (GAR), producing 5-phospho-ribosyl-N-formylglycinamide (FGAR) and tetrahydrofolate | |
JCGKACBB_01874 | 7.2e-189 | purM | 6.3.3.1, 6.3.4.13 | F | Phosphoribosylformylglycinamidine cyclo-ligase | |
JCGKACBB_01875 | 3.3e-280 | purF | 2.4.2.14 | F | Catalyzes the formation of phosphoribosylamine from phosphoribosylpyrophosphate (PRPP) and glutamine | |
JCGKACBB_01876 | 0.0 | purL | 6.3.5.3 | F | Part of the phosphoribosylformylglycinamidine synthase complex involved in the purines biosynthetic pathway. Catalyzes the ATP-dependent conversion of formylglycinamide ribonucleotide (FGAR) and glutamine to yield formylglycinamidine ribonucleotide (FGAM) and glutamate. The FGAM synthase complex is composed of three subunits. PurQ produces an ammonia molecule by converting glutamine to glutamate. PurL transfers the ammonia molecule to FGAR to form FGAM in an ATP-dependent manner. PurS interacts with PurQ and PurL and is thought to assist in the transfer of the ammonia molecule from PurQ to PurL | |
JCGKACBB_01877 | 1.7e-125 | purQ | 6.3.5.3 | F | Part of the phosphoribosylformylglycinamidine synthase complex involved in the purines biosynthetic pathway. Catalyzes the ATP-dependent conversion of formylglycinamide ribonucleotide (FGAR) and glutamine to yield formylglycinamidine ribonucleotide (FGAM) and glutamate. The FGAM synthase complex is composed of three subunits. PurQ produces an ammonia molecule by converting glutamine to glutamate. PurL transfers the ammonia molecule to FGAR to form FGAM in an ATP-dependent manner. PurS interacts with PurQ and PurL and is thought to assist in the transfer of the ammonia molecule from PurQ to PurL | |
JCGKACBB_01878 | 3.6e-41 | purS | 6.3.2.6, 6.3.5.3 | F | Part of the phosphoribosylformylglycinamidine synthase complex involved in the purines biosynthetic pathway. Catalyzes the ATP-dependent conversion of formylglycinamide ribonucleotide (FGAR) and glutamine to yield formylglycinamidine ribonucleotide (FGAM) and glutamate. The FGAM synthase complex is composed of three subunits. PurQ produces an ammonia molecule by converting glutamine to glutamate. PurL transfers the ammonia molecule to FGAR to form FGAM in an ATP-dependent manner. PurS interacts with PurQ and PurL and is thought to assist in the transfer of the ammonia molecule from PurQ to PurL | |
JCGKACBB_01879 | 6.4e-131 | purC | 4.1.1.21, 4.3.2.2, 6.3.2.6 | F | Belongs to the SAICAR synthetase family | |
JCGKACBB_01880 | 7.4e-211 | purK | 6.3.4.18 | F | Catalyzes the ATP-dependent conversion of 5- aminoimidazole ribonucleotide (AIR) and HCO(3)(-) to N5- carboxyaminoimidazole ribonucleotide (N5-CAIR) | |
JCGKACBB_01881 | 1.7e-79 | purE | 5.4.99.18 | F | Catalyzes the conversion of N5-carboxyaminoimidazole ribonucleotide (N5-CAIR) to 4-carboxy-5-aminoimidazole ribonucleotide (CAIR) | |
JCGKACBB_01882 | 3.9e-224 | XK27_09615 | 1.3.5.4 | S | reductase | |
JCGKACBB_01883 | 1.8e-110 | XK27_09620 | 1.3.5.4 | S | NADPH-dependent FMN reductase | |
JCGKACBB_01884 | 4.9e-190 | lplA2 | 6.3.1.20 | H | Bacterial lipoate protein ligase C-terminus | |
JCGKACBB_01885 | 1.4e-147 | ptp3 | 3.1.3.48 | T | Tyrosine phosphatase family | |
JCGKACBB_01886 | 9.2e-118 | cah | 4.2.1.1 | P | Eukaryotic-type carbonic anhydrase | |
JCGKACBB_01887 | 7.5e-149 | S | Alpha/beta hydrolase of unknown function (DUF915) | |||
JCGKACBB_01888 | 1.5e-180 | ansA | 3.5.1.1 | EJ | Asparaginase | |
JCGKACBB_01889 | 1.7e-139 | cysA | V | ABC transporter, ATP-binding protein | ||
JCGKACBB_01890 | 0.0 | V | FtsX-like permease family | |||
JCGKACBB_01891 | 1.8e-41 | |||||
JCGKACBB_01892 | 7.9e-61 | gntR1 | K | Transcriptional regulator, GntR family | ||
JCGKACBB_01893 | 6.9e-164 | V | ABC transporter, ATP-binding protein | |||
JCGKACBB_01894 | 5.8e-149 | |||||
JCGKACBB_01895 | 1e-215 | 2.7.7.65 | T | diguanylate cyclase | ||
JCGKACBB_01896 | 4.3e-33 | |||||
JCGKACBB_01897 | 2e-35 | |||||
JCGKACBB_01898 | 8.6e-81 | K | AsnC family | |||
JCGKACBB_01899 | 1.4e-172 | ykfC | 3.4.14.13 | M | NlpC/P60 family | |
JCGKACBB_01900 | 5.9e-160 | S | Alpha/beta hydrolase of unknown function (DUF915) | |||
JCGKACBB_01902 | 3.8e-23 | |||||
JCGKACBB_01903 | 1.9e-138 | 3.6.1.13, 3.6.1.55 | F | NUDIX domain | ||
JCGKACBB_01904 | 9.8e-214 | yceI | EGP | Major facilitator Superfamily | ||
JCGKACBB_01905 | 3.3e-47 | |||||
JCGKACBB_01906 | 7.7e-92 | S | ECF-type riboflavin transporter, S component | |||
JCGKACBB_01908 | 1.5e-169 | EG | EamA-like transporter family | |||
JCGKACBB_01909 | 8.9e-38 | gcvR | T | Belongs to the UPF0237 family | ||
JCGKACBB_01910 | 3e-243 | XK27_08635 | S | UPF0210 protein | ||
JCGKACBB_01911 | 1.6e-134 | K | response regulator | |||
JCGKACBB_01912 | 2.9e-287 | yclK | 2.7.13.3 | T | Histidine kinase | |
JCGKACBB_01913 | 3.2e-217 | ywbD | 2.1.1.191 | J | S-adenosylmethionine-dependent methyltransferase | |
JCGKACBB_01914 | 9.7e-155 | glcU | U | sugar transport | ||
JCGKACBB_01915 | 1e-259 | pgi | 5.3.1.9 | G | Belongs to the GPI family | |
JCGKACBB_01916 | 6.8e-24 | |||||
JCGKACBB_01917 | 0.0 | macB3 | V | ABC transporter, ATP-binding protein | ||
JCGKACBB_01918 | 2.9e-274 | tagE | 2.4.1.52 | GT4 | M | Glycosyl transferases group 1 |
JCGKACBB_01919 | 0.0 | msbA2 | 3.6.3.44 | P | ABC transporter transmembrane region | |
JCGKACBB_01920 | 1.6e-16 | |||||
JCGKACBB_01921 | 1.9e-18 | |||||
JCGKACBB_01922 | 1.6e-16 | |||||
JCGKACBB_01923 | 1.6e-16 | |||||
JCGKACBB_01924 | 1.1e-18 | |||||
JCGKACBB_01925 | 5.2e-15 | |||||
JCGKACBB_01926 | 7.2e-17 | |||||
JCGKACBB_01927 | 2.7e-16 | |||||
JCGKACBB_01928 | 0.0 | M | MucBP domain | |||
JCGKACBB_01929 | 0.0 | bztC | D | nuclear chromosome segregation | ||
JCGKACBB_01930 | 7.3e-83 | K | MarR family | |||
JCGKACBB_01931 | 7.1e-43 | |||||
JCGKACBB_01932 | 2e-38 | |||||
JCGKACBB_01934 | 4.4e-29 | |||||
JCGKACBB_01936 | 7.6e-157 | int | L | Belongs to the 'phage' integrase family | ||
JCGKACBB_01937 | 7.4e-16 | int | L | Belongs to the 'phage' integrase family | ||
JCGKACBB_01938 | 2.4e-26 | |||||
JCGKACBB_01941 | 3e-69 | S | Domain of Unknown Function with PDB structure (DUF3862) | |||
JCGKACBB_01943 | 5.6e-64 | |||||
JCGKACBB_01946 | 8.5e-11 | S | DNA/RNA non-specific endonuclease | |||
JCGKACBB_01948 | 2.1e-09 | S | Pfam:Peptidase_M78 | |||
JCGKACBB_01949 | 5.7e-17 | K | sequence-specific DNA binding | |||
JCGKACBB_01951 | 4.8e-135 | pi112 | 3.6.4.12 | L | PDDEXK-like domain of unknown function (DUF3799) | |
JCGKACBB_01952 | 1.1e-156 | L | DnaD domain protein | |||
JCGKACBB_01953 | 8.3e-50 | |||||
JCGKACBB_01954 | 1.8e-63 | |||||
JCGKACBB_01955 | 8.4e-66 | rusA | 3.1.22.4 | L | Endonuclease that resolves Holliday junction intermediates made during homologous genetic recombination and DNA repair. Exhibits sequence and structure-selective cleavage of four-way DNA junctions, where it introduces symmetrical nicks in two strands of the same polarity at the 5' side of dinucleotides. Corrects the defects in genetic recombination and DNA repair associated with inactivation of ruvAB or ruvC | |
JCGKACBB_01957 | 1.7e-81 | arpU | S | Phage transcriptional regulator, ArpU family | ||
JCGKACBB_01959 | 1.2e-37 | |||||
JCGKACBB_01962 | 3.3e-17 | |||||
JCGKACBB_01963 | 2.2e-17 | |||||
JCGKACBB_01964 | 7.2e-55 | ps333 | L | Terminase small subunit | ||
JCGKACBB_01965 | 6.7e-187 | S | Phage terminase, large subunit, PBSX family | |||
JCGKACBB_01966 | 7.5e-113 | S | Phage portal protein, SPP1 Gp6-like | |||
JCGKACBB_01967 | 6.6e-47 | S | Phage minor capsid protein 2 | |||
JCGKACBB_01970 | 1.9e-106 | |||||
JCGKACBB_01972 | 7.4e-12 | |||||
JCGKACBB_01975 | 5.6e-10 | S | Minor capsid protein from bacteriophage | |||
JCGKACBB_01976 | 4.5e-37 | N | domain, Protein | |||
JCGKACBB_01978 | 2.4e-12 | S | Bacteriophage Gp15 protein | |||
JCGKACBB_01979 | 4.1e-153 | M | Phage tail tape measure protein TP901 | |||
JCGKACBB_01980 | 3.8e-47 | S | Phage tail protein | |||
JCGKACBB_01981 | 3.1e-100 | S | Prophage endopeptidase tail | |||
JCGKACBB_01984 | 5.4e-35 | 3.1.1.5 | E | lipolytic protein G-D-S-L family | ||
JCGKACBB_01985 | 3.3e-311 | S | Calcineurin-like phosphoesterase | |||
JCGKACBB_01988 | 3.2e-158 | M | Glycosyl hydrolases family 25 | |||
JCGKACBB_01989 | 4.7e-48 | |||||
JCGKACBB_01990 | 1.8e-36 | hol | S | Bacteriophage holin | ||
JCGKACBB_01992 | 5.1e-124 | yxkH | G | Polysaccharide deacetylase | ||
JCGKACBB_01993 | 1.6e-67 | S | Protein of unknown function (DUF1093) | |||
JCGKACBB_01994 | 0.0 | ycfI | V | ABC transporter, ATP-binding protein | ||
JCGKACBB_01995 | 0.0 | yfiC | V | ABC transporter | ||
JCGKACBB_01996 | 4.8e-126 | |||||
JCGKACBB_01997 | 1.9e-58 | |||||
JCGKACBB_01998 | 1e-203 | ilvE | 2.6.1.42 | E | Branched-chain amino acid aminotransferase | |
JCGKACBB_01999 | 1.4e-29 | |||||
JCGKACBB_02000 | 2e-191 | ampC | V | Beta-lactamase | ||
JCGKACBB_02001 | 9.8e-196 | manA | 5.3.1.8 | G | mannose-6-phosphate isomerase | |
JCGKACBB_02002 | 5.9e-137 | cobQ | S | glutamine amidotransferase | ||
JCGKACBB_02003 | 1.7e-262 | murF | 6.3.2.10, 6.3.2.13 | M | Domain of unknown function (DUF1727) | |
JCGKACBB_02004 | 9.3e-109 | tdk | 2.7.1.21 | F | thymidine kinase | |
JCGKACBB_02005 | 1.2e-197 | prfA | J | Peptide chain release factor 1 directs the termination of translation in response to the peptide chain termination codons UAG and UAA | ||
JCGKACBB_02006 | 4.3e-158 | prmB | 2.1.1.297, 2.1.1.298 | J | Methylates the class 1 translation termination release factors RF1 PrfA and RF2 PrfB on the glutamine residue of the universally conserved GGQ motif | |
JCGKACBB_02007 | 7.7e-191 | ywlC | 2.7.7.87, 3.1.3.48 | J | Required for the formation of a threonylcarbamoyl group on adenosine at position 37 (t(6)A37) in tRNAs that read codons beginning with adenine | |
JCGKACBB_02008 | 2.9e-232 | glyA | 2.1.2.1 | E | Catalyzes the reversible interconversion of serine and glycine with tetrahydrofolate (THF) serving as the one-carbon carrier. This reaction serves as the major source of one-carbon groups required for the biosynthesis of purines, thymidylate, methionine, and other important biomolecules. Also exhibits THF- independent aldolase activity toward beta-hydroxyamino acids, producing glycine and aldehydes, via a retro-aldol mechanism | |
JCGKACBB_02009 | 4.7e-114 | upp | 2.4.2.9 | F | Catalyzes the conversion of uracil and 5-phospho-alpha- D-ribose 1-diphosphate (PRPP) to UMP and diphosphate | |
JCGKACBB_02010 | 8.6e-232 | pyrP | F | Permease | ||
JCGKACBB_02011 | 6.5e-128 | atpB | C | it plays a direct role in the translocation of protons across the membrane | ||
JCGKACBB_02012 | 2.5e-27 | atpE | C | F(1)F(0) ATP synthase produces ATP from ADP in the presence of a proton or sodium gradient. F-type ATPases consist of two structural domains, F(1) containing the extramembraneous catalytic core and F(0) containing the membrane proton channel, linked together by a central stalk and a peripheral stalk. During catalysis, ATP synthesis in the catalytic domain of F(1) is coupled via a rotary mechanism of the central stalk subunits to proton translocation | ||
JCGKACBB_02013 | 3e-50 | atpF | C | Component of the F(0) channel, it forms part of the peripheral stalk, linking F(1) to F(0) | ||
JCGKACBB_02014 | 1.8e-90 | atpH | C | F(1)F(0) ATP synthase produces ATP from ADP in the presence of a proton or sodium gradient. F-type ATPases consist of two structural domains, F(1) containing the extramembraneous catalytic core and F(0) containing the membrane proton channel, linked together by a central stalk and a peripheral stalk. During catalysis, ATP synthesis in the catalytic domain of F(1) is coupled via a rotary mechanism of the central stalk subunits to proton translocation | ||
JCGKACBB_02015 | 2.7e-280 | atpA | 3.6.3.14 | C | Produces ATP from ADP in the presence of a proton gradient across the membrane. The alpha chain is a regulatory subunit | |
JCGKACBB_02016 | 2.3e-165 | atpG | C | Produces ATP from ADP in the presence of a proton gradient across the membrane. The gamma chain is believed to be important in regulating ATPase activity and the flow of protons through the CF(0) complex | ||
JCGKACBB_02017 | 2.1e-263 | atpD | 3.6.3.14 | C | Produces ATP from ADP in the presence of a proton gradient across the membrane. The catalytic sites are hosted primarily by the beta subunits | |
JCGKACBB_02018 | 1.1e-50 | atpC | C | Produces ATP from ADP in the presence of a proton gradient across the membrane | ||
JCGKACBB_02019 | 2.2e-246 | murA | 2.5.1.7 | M | Cell wall formation. Adds enolpyruvyl to UDP-N- acetylglucosamine | |
JCGKACBB_02020 | 2.1e-102 | J | Acetyltransferase (GNAT) domain | |||
JCGKACBB_02021 | 2.7e-180 | mbl | D | Cell shape determining protein MreB Mrl | ||
JCGKACBB_02022 | 2.3e-43 | yidD | S | Could be involved in insertion of integral membrane proteins into the membrane | ||
JCGKACBB_02023 | 3.3e-33 | S | Protein of unknown function (DUF2969) | |||
JCGKACBB_02024 | 7.9e-219 | rodA | D | Belongs to the SEDS family | ||
JCGKACBB_02025 | 1.2e-46 | gcsH2 | E | glycine cleavage | ||
JCGKACBB_02026 | 4e-187 | metN | P | Part of the ABC transporter complex MetNIQ involved in methionine import. Responsible for energy coupling to the transport system | ||
JCGKACBB_02027 | 1.4e-111 | metI | U | ABC transporter permease | ||
JCGKACBB_02028 | 2.2e-148 | metQ | M | Belongs to the nlpA lipoprotein family | ||
JCGKACBB_02029 | 2.8e-168 | hicD1 | 1.1.1.27 | C | Belongs to the LDH MDH superfamily | |
JCGKACBB_02030 | 7.9e-177 | S | Protein of unknown function (DUF2785) | |||
JCGKACBB_02031 | 3.6e-188 | qor | 1.1.1.1, 1.6.5.5 | C | Belongs to the zinc-containing alcohol dehydrogenase family. Quinone oxidoreductase subfamily | |
JCGKACBB_02032 | 1.6e-213 | ddl | 6.3.2.4 | F | Belongs to the D-alanine--D-alanine ligase family | |
JCGKACBB_02033 | 1.3e-295 | glpQ3 | 3.1.4.46 | C | Glycerophosphoryl diester phosphodiesterase family | |
JCGKACBB_02034 | 3.3e-161 | 2.3.1.19 | K | Helix-turn-helix XRE-family like proteins | ||
JCGKACBB_02035 | 9.1e-201 | bla2 | 3.5.2.6 | V | Beta-lactamase enzyme family | |
JCGKACBB_02036 | 6.2e-82 | usp6 | T | universal stress protein | ||
JCGKACBB_02037 | 1.5e-38 | |||||
JCGKACBB_02038 | 8e-238 | rarA | L | recombination factor protein RarA | ||
JCGKACBB_02039 | 0.0 | gshF | 6.3.2.2 | H | Belongs to the glutamate--cysteine ligase type 1 family | |
JCGKACBB_02040 | 8.6e-44 | czrA | K | Helix-turn-helix domain | ||
JCGKACBB_02041 | 2e-109 | S | Protein of unknown function (DUF1648) | |||
JCGKACBB_02042 | 3.3e-80 | yueI | S | Protein of unknown function (DUF1694) | ||
JCGKACBB_02043 | 5.2e-113 | yktB | S | Belongs to the UPF0637 family | ||
JCGKACBB_02044 | 3.1e-107 | rpsD | J | One of the primary rRNA binding proteins, it binds directly to 16S rRNA where it nucleates assembly of the body of the 30S subunit | ||
JCGKACBB_02045 | 5e-81 | ytsP | 1.8.4.14 | T | GAF domain-containing protein | |
JCGKACBB_02046 | 0.0 | ezrA | D | modulates the frequency and position of FtsZ ring formation. Inhibits FtsZ ring formation at polar sites. Interacts either with FtsZ or with one of its binding partners to promote depolymerization | ||
JCGKACBB_02047 | 1.2e-216 | iscS2 | 2.8.1.7 | E | Aminotransferase class V | |
JCGKACBB_02048 | 1.9e-228 | thiI | 2.8.1.4 | H | Catalyzes the ATP-dependent transfer of a sulfur to tRNA to produce 4-thiouridine in position 8 of tRNAs, which functions as a near-UV photosensor. Also catalyzes the transfer of sulfur to the sulfur carrier protein ThiS, forming ThiS-thiocarboxylate. This is a step in the synthesis of thiazole, in the thiamine biosynthesis pathway. The sulfur is donated as persulfide by IscS | |
JCGKACBB_02049 | 6.8e-234 | gshF | 6.3.2.2 | H | Belongs to the glutamate--cysteine ligase type 1 family | |
JCGKACBB_02050 | 3e-89 | tpx | 1.11.1.15 | O | Thiol-specific peroxidase that catalyzes the reduction of hydrogen peroxide and organic hydroperoxides to water and alcohols, respectively. Plays a role in cell protection against oxidative stress by detoxifying peroxides | |
JCGKACBB_02051 | 0.0 | valS | 6.1.1.9 | J | amino acids such as threonine, to avoid such errors, it has a posttransfer editing activity that hydrolyzes mischarged Thr-tRNA(Val) in a tRNA-dependent manner | |
JCGKACBB_02052 | 1.8e-248 | folC | 6.3.2.12, 6.3.2.17 | H | Belongs to the folylpolyglutamate synthase family | |
JCGKACBB_02053 | 1.3e-116 | radC | L | DNA repair protein | ||
JCGKACBB_02054 | 2.8e-161 | mreB | D | cell shape determining protein MreB | ||
JCGKACBB_02055 | 2.6e-144 | mreC | M | Involved in formation and maintenance of cell shape | ||
JCGKACBB_02056 | 1.2e-88 | mreD | M | rod shape-determining protein MreD | ||
JCGKACBB_02057 | 1.4e-116 | minC | D | Cell division inhibitor that blocks the formation of polar Z ring septums. Rapidly oscillates between the poles of the cell to destabilize FtsZ filaments that have formed before they mature into polar Z rings. Prevents FtsZ polymerization | ||
JCGKACBB_02058 | 1.2e-146 | minD | D | Belongs to the ParA family | ||
JCGKACBB_02059 | 4.6e-109 | glnP | P | ABC transporter permease | ||
JCGKACBB_02060 | 2.5e-115 | glnQ | 3.6.3.21 | E | ABC transporter, ATP-binding protein | |
JCGKACBB_02061 | 1.5e-155 | aatB | ET | ABC transporter substrate-binding protein | ||
JCGKACBB_02062 | 1.4e-253 | lysC | 2.7.2.4 | E | Belongs to the aspartokinase family | |
JCGKACBB_02063 | 1.2e-230 | ymfF | S | Peptidase M16 inactive domain protein | ||
JCGKACBB_02064 | 1.1e-250 | ymfH | S | Peptidase M16 | ||
JCGKACBB_02065 | 4.8e-109 | ymfM | S | Helix-turn-helix domain | ||
JCGKACBB_02066 | 3.7e-97 | pgsA | 2.7.8.41, 2.7.8.5 | I | Belongs to the CDP-alcohol phosphatidyltransferase class-I family | |
JCGKACBB_02067 | 9.4e-231 | cinA | 3.5.1.42 | S | Belongs to the CinA family | |
JCGKACBB_02068 | 3.3e-190 | recA | L | Can catalyze the hydrolysis of ATP in the presence of single-stranded DNA, the ATP-dependent uptake of single-stranded DNA by duplex DNA, and the ATP-dependent hybridization of homologous single-stranded DNAs. It interacts with LexA causing its activation and leading to its autocatalytic cleavage | ||
JCGKACBB_02069 | 2.1e-216 | rny | S | Endoribonuclease that initiates mRNA decay | ||
JCGKACBB_02070 | 5.9e-154 | ymdB | S | YmdB-like protein | ||
JCGKACBB_02071 | 0.0 | mutS | L | that it carries out the mismatch recognition step. This protein has a weak ATPase activity | ||
JCGKACBB_02072 | 0.0 | mutL | L | This protein is involved in the repair of mismatches in DNA. It is required for dam-dependent methyl-directed DNA mismatch repair. May act as a molecular matchmaker , a protein that promotes the formation of a stable complex between two or more DNA-binding proteins in an ATP-dependent manner without itself being part of a final effector complex | ||
JCGKACBB_02073 | 0.0 | L | Transposase | |||
JCGKACBB_02074 | 3.1e-71 | |||||
JCGKACBB_02075 | 0.0 | S | Bacterial membrane protein YfhO | |||
JCGKACBB_02076 | 7.4e-89 | |||||
JCGKACBB_02077 | 1e-105 | ruvA | 3.6.4.12 | L | The RuvA-RuvB complex in the presence of ATP renatures cruciform structure in supercoiled DNA with palindromic sequence, indicating that it may promote strand exchange reactions in homologous recombination. RuvAB is a helicase that mediates the Holliday junction migration by localized denaturation and reannealing. RuvA stimulates, in the presence of DNA, the weak ATPase activity of RuvB | |
JCGKACBB_02078 | 2.1e-188 | ruvB | 3.6.4.12 | L | The RuvA-RuvB complex in the presence of ATP renatures cruciform structure in supercoiled DNA with palindromic sequence, indicating that it may promote strand exchange reactions in homologous recombination. RuvAB is a helicase that mediates the Holliday junction migration by localized denaturation and reannealing | |
JCGKACBB_02079 | 6.3e-201 | queA | 2.4.99.17 | J | Transfers and isomerizes the ribose moiety from AdoMet to the 7-aminomethyl group of 7-deazaguanine (preQ1-tRNA) to give epoxyqueuosine (oQ-tRNA) | |
JCGKACBB_02080 | 3.3e-227 | tgt | 2.4.2.29 | F | Catalyzes the base-exchange of a guanine (G) residue with the queuine precursor 7-aminomethyl-7-deazaguanine (PreQ1) at position 34 (anticodon wobble position) in tRNAs with GU(N) anticodons (tRNA-Asp, -Asn, -His and -Tyr). Catalysis occurs through a double-displacement mechanism. The nucleophile active site attacks the C1' of nucleotide 34 to detach the guanine base from the RNA, forming a covalent enzyme-RNA intermediate. The proton acceptor active site deprotonates the incoming PreQ1, allowing a nucleophilic attack on the C1' of the ribose to form the product. After dissociation, two additional enzymatic reactions on the tRNA convert PreQ1 to queuine (Q), resulting in the hypermodified nucleoside queuosine (7-(((4,5-cis-dihydroxy-2- cyclopenten-1-yl)amino)methyl)-7-deazaguanosine) | |
JCGKACBB_02081 | 2.8e-29 | yajC | U | Preprotein translocase | ||
JCGKACBB_02082 | 5.3e-217 | dinB | 2.7.7.7 | L | Poorly processive, error-prone DNA polymerase involved in untargeted mutagenesis. Copies undamaged DNA at stalled replication forks, which arise in vivo from mismatched or misaligned primer ends. These misaligned primers can be extended by PolIV. Exhibits no 3'-5' exonuclease (proofreading) activity. May be involved in translesional synthesis, in conjunction with the beta clamp from PolIII | |
JCGKACBB_02083 | 7e-178 | nrnA | 3.1.13.3, 3.1.3.7 | S | DHHA1 domain protein | |
JCGKACBB_02084 | 9.3e-245 | cshB | 3.6.4.13 | JKL | DEAD-box RNA helicase. May work in conjunction with the cold shock proteins to ensure proper initiation of transcription at low and optimal temperatures | |
JCGKACBB_02085 | 0.0 | alaS | 6.1.1.7 | J | Catalyzes the attachment of alanine to tRNA(Ala) in a two-step reaction alanine is first activated by ATP to form Ala- AMP and then transferred to the acceptor end of tRNA(Ala). Also edits incorrectly charged Ser-tRNA(Ala) and Gly-tRNA(Ala) via its editing domain | |
JCGKACBB_02086 | 2.4e-43 | yrzL | S | Belongs to the UPF0297 family | ||
JCGKACBB_02087 | 7.3e-74 | yqgF | J | Could be a nuclease involved in processing of the 5'-end of pre-16S rRNA | ||
JCGKACBB_02088 | 1.6e-48 | yrzB | S | Belongs to the UPF0473 family | ||
JCGKACBB_02089 | 2.7e-36 | zapA | D | Activator of cell division through the inhibition of FtsZ GTPase activity, therefore promoting FtsZ assembly into bundles of protofilaments necessary for the formation of the division Z ring. It is recruited early at mid-cell but it is not essential for cell division | ||
JCGKACBB_02090 | 0.0 | mutS2 | L | Endonuclease that is involved in the suppression of homologous recombination and may therefore have a key role in the control of bacterial genetic diversity | ||
JCGKACBB_02091 | 3.3e-52 | trxA | O | Belongs to the thioredoxin family | ||
JCGKACBB_02092 | 7.6e-126 | yslB | S | Protein of unknown function (DUF2507) | ||
JCGKACBB_02093 | 9e-150 | murI | 5.1.1.3 | M | Provides the (R)-glutamate required for cell wall biosynthesis | |
JCGKACBB_02094 | 1e-110 | rdgB | 3.6.1.66, 5.1.1.3 | F | Pyrophosphatase that catalyzes the hydrolysis of nucleoside triphosphates to their monophosphate derivatives, with a high preference for the non-canonical purine nucleotides XTP (xanthosine triphosphate), dITP (deoxyinosine triphosphate) and ITP. Seems to function as a house-cleaning enzyme that removes non-canonical purine nucleotides from the nucleotide pool, thus preventing their incorporation into DNA RNA and avoiding chromosomal lesions | |
JCGKACBB_02095 | 9.5e-97 | S | Phosphoesterase | |||
JCGKACBB_02096 | 6.5e-87 | ykuL | S | (CBS) domain | ||
JCGKACBB_02097 | 2.6e-76 | dapD | 2.3.1.117, 2.3.1.89 | E | Catalyzes the transfer of an acetyl group from acetyl- CoA to tetrahydrodipicolinate | |
JCGKACBB_02098 | 6.4e-226 | hipO | 3.5.1.47 | E | Catalyzes the conversion of N-acetyl-diaminopimelate to diaminopimelate and acetate | |
JCGKACBB_02099 | 2.6e-158 | ykuT | M | mechanosensitive ion channel | ||
JCGKACBB_02100 | 1.9e-23 | WQ51_05790 | S | protein containing a divergent version of the methyl-accepting chemotaxis-like domain | ||
JCGKACBB_02101 | 4.2e-56 | |||||
JCGKACBB_02102 | 1.1e-80 | K | helix_turn_helix, mercury resistance | |||
JCGKACBB_02103 | 6.3e-215 | pepQ | 3.4.13.9 | E | Creatinase/Prolidase N-terminal domain | |
JCGKACBB_02104 | 1.9e-181 | ccpA | K | catabolite control protein A | ||
JCGKACBB_02105 | 2.3e-164 | 3.2.1.52 | GH20 | G | Xylose isomerase domain protein TIM barrel | |
JCGKACBB_02106 | 1.6e-49 | S | DsrE/DsrF-like family | |||
JCGKACBB_02107 | 8.3e-131 | yebC | K | Transcriptional regulatory protein | ||
JCGKACBB_02108 | 4.8e-160 | rbsK | 2.7.1.15 | H | Catalyzes the phosphorylation of ribose at O-5 in a reaction requiring ATP and magnesium. The resulting D-ribose-5- phosphate can then be used either for sythesis of nucleotides, histidine, and tryptophan, or as a component of the pentose phosphate pathway | |
JCGKACBB_02109 | 5.3e-173 | comGA | NU | Type II IV secretion system protein | ||
JCGKACBB_02110 | 1.9e-189 | comGB | NU | type II secretion system | ||
JCGKACBB_02111 | 5.5e-43 | comGC | U | competence protein ComGC | ||
JCGKACBB_02112 | 1.5e-80 | gspG | NU | general secretion pathway protein | ||
JCGKACBB_02113 | 8.6e-20 | |||||
JCGKACBB_02114 | 2.9e-87 | S | Prokaryotic N-terminal methylation motif | |||
JCGKACBB_02116 | 3.6e-186 | ytxK | 2.1.1.72 | L | N-6 DNA Methylase | |
JCGKACBB_02117 | 7e-220 | ackA | 2.7.2.1 | F | Catalyzes the formation of acetyl phosphate from acetate and ATP. Can also catalyze the reverse reaction | |
JCGKACBB_02118 | 8.1e-252 | cycA | E | Amino acid permease | ||
JCGKACBB_02119 | 1.3e-116 | S | Calcineurin-like phosphoesterase | |||
JCGKACBB_02120 | 5.1e-270 | yunD | 3.1.3.5 | F | Belongs to the 5'-nucleotidase family | |
JCGKACBB_02121 | 1.5e-80 | yutD | S | Protein of unknown function (DUF1027) | ||
JCGKACBB_02122 | 1.5e-146 | nagD | 2.7.1.25, 3.1.3.41 | G | Catalyzes the dephosphorylation of 2-6 carbon acid sugars in vitro | |
JCGKACBB_02123 | 4.6e-117 | S | Protein of unknown function (DUF1461) | |||
JCGKACBB_02124 | 1.9e-118 | dedA | S | SNARE-like domain protein | ||
JCGKACBB_02125 | 1.2e-108 | ppiB | 5.2.1.8 | G | PPIases accelerate the folding of proteins. It catalyzes the cis-trans isomerization of proline imidic peptide bonds in oligopeptides | |
JCGKACBB_02126 | 1.6e-75 | yugI | 5.3.1.9 | J | general stress protein | |
JCGKACBB_02127 | 3.5e-64 | |||||
JCGKACBB_02128 | 3.1e-41 | |||||
JCGKACBB_02129 | 1.6e-26 | |||||
JCGKACBB_02130 | 0.0 | L | MobA MobL family protein | |||
JCGKACBB_02131 | 3e-282 | traI | 5.99.1.2 | L | This gene contains a nucleotide ambiguity which may be the result of a sequencing error | |
JCGKACBB_02132 | 8.6e-40 | K | LysR substrate binding domain | |||
JCGKACBB_02133 | 1.3e-193 | 1.3.5.4 | C | FMN_bind | ||
JCGKACBB_02134 | 7.1e-261 | asnB | 6.3.5.4 | E | Asparagine synthase | |
JCGKACBB_02135 | 1.4e-94 | M | ErfK YbiS YcfS YnhG | |||
JCGKACBB_02136 | 1.6e-192 | ytbD | EGP | Major facilitator Superfamily | ||
JCGKACBB_02137 | 2e-61 | K | Transcriptional regulator, HxlR family | |||
JCGKACBB_02138 | 3e-116 | S | Haloacid dehalogenase-like hydrolase | |||
JCGKACBB_02139 | 1.3e-116 | |||||
JCGKACBB_02140 | 1.4e-213 | NU | Mycoplasma protein of unknown function, DUF285 | |||
JCGKACBB_02141 | 1.1e-62 | |||||
JCGKACBB_02142 | 2e-101 | S | WxL domain surface cell wall-binding | |||
JCGKACBB_02144 | 7e-40 | |||||
JCGKACBB_02146 | 1.3e-249 | EGP | Major facilitator Superfamily | |||
JCGKACBB_02147 | 2e-169 | znuA | P | Belongs to the bacterial solute-binding protein 9 family | ||
JCGKACBB_02148 | 1.5e-81 | cvpA | S | Colicin V production protein | ||
JCGKACBB_02149 | 2.2e-63 | folB | 1.13.11.81, 2.5.1.15, 2.7.6.3, 4.1.2.25, 5.1.99.8 | H | Catalyzes the conversion of 7,8-dihydroneopterin to 6- hydroxymethyl-7,8-dihydropterin | |
JCGKACBB_02150 | 2.8e-93 | folK | 1.13.11.81, 2.5.1.15, 2.7.6.3, 3.5.4.16, 4.1.2.25, 5.1.99.8 | H | 7,8-dihydro-6-hydroxymethylpterin-pyrophosphokinase (HPPK) | |
JCGKACBB_02151 | 7.5e-103 | folE | 2.7.6.3, 3.5.4.16 | F | GTP cyclohydrolase 1 | |
JCGKACBB_02152 | 8.5e-246 | folC | 6.3.2.12, 6.3.2.17 | H | Belongs to the folylpolyglutamate synthase family | |
JCGKACBB_02153 | 8e-100 | xtp | 2.5.1.15, 3.6.1.66 | F | Ham1 family | |
JCGKACBB_02154 | 6.1e-213 | folP | 2.5.1.15 | H | dihydropteroate synthase | |
JCGKACBB_02155 | 3.6e-94 | tag | 3.2.2.20 | L | glycosylase | |
JCGKACBB_02156 | 2.6e-19 | |||||
JCGKACBB_02158 | 7.8e-103 | K | Helix-turn-helix XRE-family like proteins | |||
JCGKACBB_02159 | 2.7e-160 | czcD | P | cation diffusion facilitator family transporter | ||
JCGKACBB_02160 | 2.5e-53 | nmtR | K | helix_turn_helix, Arsenical Resistance Operon Repressor | ||
JCGKACBB_02161 | 3e-116 | hly | S | protein, hemolysin III | ||
JCGKACBB_02162 | 1.1e-44 | qacH | U | Small Multidrug Resistance protein | ||
JCGKACBB_02163 | 4.4e-59 | qacC | P | Small Multidrug Resistance protein | ||
JCGKACBB_02164 | 1.3e-215 | yxjG | 2.1.1.14 | E | methionine synthase, vitamin-B12 independent | |
JCGKACBB_02165 | 3.1e-179 | K | AI-2E family transporter | |||
JCGKACBB_02166 | 4.6e-166 | P | Belongs to the cation diffusion facilitator (CDF) transporter (TC 2.A.4) family | |||
JCGKACBB_02167 | 7.7e-36 | |||||
JCGKACBB_02168 | 3.1e-14 | |||||
JCGKACBB_02169 | 1.9e-40 | S | transglycosylase associated protein | |||
JCGKACBB_02170 | 4.8e-29 | S | CsbD-like | |||
JCGKACBB_02171 | 9.4e-40 | |||||
JCGKACBB_02172 | 2.3e-281 | pipD | E | Dipeptidase | ||
JCGKACBB_02173 | 1.8e-27 | dmpI | 5.3.2.6 | G | Belongs to the 4-oxalocrotonate tautomerase family | |
JCGKACBB_02174 | 1.8e-253 | lysA | 4.1.1.19, 4.1.1.20 | E | Specifically catalyzes the decarboxylation of meso- diaminopimelate (meso-DAP) to L-lysine | |
JCGKACBB_02175 | 2.3e-170 | 2.5.1.74 | H | UbiA prenyltransferase family | ||
JCGKACBB_02176 | 1.4e-136 | potC | 2.1.1.172, 2.1.1.80, 3.1.1.61 | U | Ion channel | |
JCGKACBB_02177 | 1.5e-49 | |||||
JCGKACBB_02178 | 6.4e-44 | |||||
JCGKACBB_02179 | 5.1e-259 | gabT | 2.6.1.19, 5.1.1.21 | E | Belongs to the class-III pyridoxal-phosphate-dependent aminotransferase family | |
JCGKACBB_02180 | 4.1e-265 | yfnA | E | Amino Acid | ||
JCGKACBB_02181 | 1.2e-149 | yitU | 3.1.3.104 | S | hydrolase | |
JCGKACBB_02182 | 2.3e-267 | rsmF | 2.1.1.176, 2.1.1.178 | J | NOL1 NOP2 sun family protein | |
JCGKACBB_02183 | 1.5e-89 | S | Domain of unknown function (DUF4767) | |||
JCGKACBB_02184 | 5.6e-250 | malT | G | Major Facilitator | ||
JCGKACBB_02185 | 0.0 | mapA | 2.4.1.8 | GH65 | G | hydrolase, family 65, central catalytic |
JCGKACBB_02186 | 3e-195 | galM | 5.1.3.3 | G | Catalyzes the interconversion of alpha and beta anomers of maltose | |
JCGKACBB_02187 | 9.6e-197 | fni | 1.1.1.88, 5.3.3.2 | C | Involved in the biosynthesis of isoprenoids. Catalyzes the 1,3-allylic rearrangement of the homoallylic substrate isopentenyl (IPP) to its allylic isomer, dimethylallyl diphosphate (DMAPP) | |
JCGKACBB_02188 | 7.6e-205 | mvaK2 | 2.7.1.36, 2.7.1.43, 2.7.4.2 | I | phosphomevalonate kinase | |
JCGKACBB_02189 | 7.4e-175 | mvaD | 4.1.1.33 | I | diphosphomevalonate decarboxylase | |
JCGKACBB_02190 | 5.3e-170 | mvk | 1.1.1.88, 2.3.3.10, 2.7.1.36 | I | mevalonate kinase | |
JCGKACBB_02191 | 0.0 | dinG | 2.7.7.7, 3.6.4.12 | L | helicase involved in DNA repair and perhaps also replication | |
JCGKACBB_02192 | 1.3e-71 | ypmB | S | protein conserved in bacteria | ||
JCGKACBB_02193 | 1.1e-225 | aspB | 2.6.1.1, 2.6.1.14 | E | Aminotransferase | |
JCGKACBB_02194 | 5.4e-258 | asnS | 6.1.1.22 | J | Asparaginyl-tRNA synthetase | |
JCGKACBB_02195 | 3.8e-128 | dnaD | L | Replication initiation and membrane attachment | ||
JCGKACBB_02197 | 9.2e-187 | metN | P | Part of the ABC transporter complex MetNIQ involved in methionine import. Responsible for energy coupling to the transport system | ||
JCGKACBB_02198 | 2e-99 | metI | P | ABC transporter permease | ||
JCGKACBB_02199 | 2.1e-157 | metQ_4 | P | Belongs to the nlpA lipoprotein family | ||
JCGKACBB_02200 | 4.4e-83 | uspA | T | Universal stress protein family | ||
JCGKACBB_02201 | 3.4e-113 | ftpA | P | Binding-protein-dependent transport system inner membrane component | ||
JCGKACBB_02202 | 1.5e-172 | ftpA | P | Binding-protein-dependent transport system inner membrane component | ||
JCGKACBB_02203 | 4.9e-182 | ftpB | P | Bacterial extracellular solute-binding protein | ||
JCGKACBB_02204 | 7e-178 | phnT | 3.6.3.30 | P | ATPases associated with a variety of cellular activities | |
JCGKACBB_02205 | 0.0 | ponA | 2.4.1.129, 3.4.16.4 | GT51 | M | penicillin-binding protein 1A |
JCGKACBB_02206 | 2.9e-116 | recU | L | Endonuclease that resolves Holliday junction intermediates in genetic recombination. Cleaves mobile four-strand junctions by introducing symmetrical nicks in paired strands. Promotes annealing of linear ssDNA with homologous dsDNA. Required for DNA repair, homologous recombination and chromosome segregation | ||
JCGKACBB_02207 | 8.3e-110 | ypsA | S | Belongs to the UPF0398 family | ||
JCGKACBB_02208 | 3.2e-56 | gpsB | D | Divisome component that associates with the complex late in its assembly, after the Z-ring is formed, and is dependent on DivIC and PBP2B for its recruitment to the divisome. Together with EzrA, is a key component of the system that regulates PBP1 localization during cell cycle progression. Its main role could be the removal of PBP1 from the cell pole after pole maturation is completed. Also contributes to the recruitment of PBP1 to the division complex. Not essential for septum formation | ||
JCGKACBB_02210 | 1.8e-223 | rlmL | 2.1.1.173, 2.1.1.264 | L | Belongs to the methyltransferase superfamily | |
JCGKACBB_02211 | 1.2e-46 | K | helix_turn_helix, Arsenical Resistance Operon Repressor | |||
JCGKACBB_02212 | 2.3e-243 | P | Major Facilitator Superfamily | |||
JCGKACBB_02213 | 2.8e-145 | yjfP | S | COG1073 Hydrolases of the alpha beta superfamily | ||
JCGKACBB_02214 | 7.6e-64 | S | SnoaL-like domain | |||
JCGKACBB_02215 | 2.8e-241 | M | Glycosyltransferase, group 2 family protein | |||
JCGKACBB_02216 | 5.1e-209 | mccF | V | LD-carboxypeptidase | ||
JCGKACBB_02217 | 1.3e-55 | K | Acetyltransferase (GNAT) domain | |||
JCGKACBB_02218 | 2.6e-239 | M | hydrolase, family 25 | |||
JCGKACBB_02219 | 2.3e-181 | mccF | 3.4.17.13 | V | LD-carboxypeptidase | |
JCGKACBB_02220 | 3e-123 | |||||
JCGKACBB_02221 | 3.3e-121 | 3.6.3.35 | P | ATPases associated with a variety of cellular activities | ||
JCGKACBB_02222 | 2.1e-194 | |||||
JCGKACBB_02223 | 2.9e-145 | S | hydrolase activity, acting on ester bonds | |||
JCGKACBB_02224 | 3.2e-211 | yurR | 1.4.5.1 | E | FAD dependent oxidoreductase | |
JCGKACBB_02225 | 2.2e-66 | rnhA | 3.1.26.4 | L | Ribonuclease HI | |
JCGKACBB_02226 | 3.3e-62 | esbA | S | Family of unknown function (DUF5322) | ||
JCGKACBB_02227 | 4.1e-295 | fhs | 6.3.4.3 | F | Belongs to the formate--tetrahydrofolate ligase family | |
JCGKACBB_02228 | 4.4e-74 | lspA | 3.4.23.36 | MU | This protein specifically catalyzes the removal of signal peptides from prolipoproteins | |
JCGKACBB_02229 | 2e-174 | rluD | 5.4.99.23 | J | Responsible for synthesis of pseudouridine from uracil | |
JCGKACBB_02230 | 3.3e-89 | pyrR | 2.4.2.9 | F | Also displays a weak uracil phosphoribosyltransferase activity which is not physiologically significant | |
JCGKACBB_02231 | 2.8e-207 | carA | 6.3.5.5 | F | Belongs to the CarA family | |
JCGKACBB_02232 | 0.0 | carB | 6.3.5.5 | F | Carbamoyl-phosphate synthase | |
JCGKACBB_02233 | 6.4e-113 | pgm5 | G | Phosphoglycerate mutase family | ||
JCGKACBB_02234 | 1.5e-70 | frataxin | S | Domain of unknown function (DU1801) | ||
JCGKACBB_02237 | 4.5e-66 | soj | D | AAA domain | ||
JCGKACBB_02238 | 8.3e-37 | ligA | 6.5.1.2 | L | DNA ligase that catalyzes the formation of phosphodiester linkages between 5'-phosphoryl and 3'-hydroxyl groups in double-stranded DNA using NAD as a coenzyme and as the energy source for the reaction. It is essential for DNA replication and repair of damaged DNA | |
JCGKACBB_02239 | 6.8e-113 | corA | P | CorA-like Mg2+ transporter protein | ||
JCGKACBB_02240 | 9.3e-40 | corA | P | CorA-like Mg2+ transporter protein | ||
JCGKACBB_02241 | 4.7e-79 | tnp2PF3 | L | manually curated | ||
JCGKACBB_02242 | 5.3e-46 | tnp2PF3 | L | Putative transposase of IS4/5 family (DUF4096) | ||
JCGKACBB_02243 | 8.1e-42 | L | Helix-turn-helix domain of Hin and related proteins, a family of DNA-binding domains unique to bacteria and represented by the Hin protein of Salmonella. The basic HTH domain is a simple fold comprised of three core helices that form a right-handed | |||
JCGKACBB_02244 | 0.0 | kup | P | Transport of potassium into the cell | ||
JCGKACBB_02245 | 5.3e-56 | K | helix_turn_helix multiple antibiotic resistance protein | |||
JCGKACBB_02246 | 8.6e-96 | tnpR1 | L | Resolvase, N terminal domain | ||
JCGKACBB_02247 | 5.5e-59 | ypgQ | S | Metal dependent phosphohydrolases with conserved 'HD' motif. | ||
JCGKACBB_02249 | 4.7e-81 | nrdI | F | NrdI Flavodoxin like | ||
JCGKACBB_02250 | 0.0 | nrdE | 1.17.4.1 | F | Provides the precursors necessary for DNA synthesis. Catalyzes the biosynthesis of deoxyribonucleotides from the corresponding ribonucleotides | |
JCGKACBB_02251 | 5.7e-169 | nrdF | 1.17.4.1 | F | Ribonucleotide reductase, small chain | |
JCGKACBB_02252 | 6.1e-182 | 1.17.4.1 | F | Ribonucleotide reductase, small chain | ||
JCGKACBB_02253 | 4.2e-115 | L | hmm pf00665 | |||
JCGKACBB_02254 | 9.5e-107 | L | Resolvase, N terminal domain | |||
JCGKACBB_02255 | 1.2e-160 | ypjC | S | Uncharacterised 5xTM membrane BCR, YitT family COG1284 | ||
JCGKACBB_02256 | 6e-31 | cspC | K | Cold shock protein | ||
JCGKACBB_02257 | 1.5e-130 | thrE | S | Putative threonine/serine exporter | ||
JCGKACBB_02258 | 2.2e-76 | S | Threonine/Serine exporter, ThrE | |||
JCGKACBB_02259 | 1.5e-189 | brpA | K | Cell envelope-like function transcriptional attenuator common domain protein | ||
JCGKACBB_02260 | 3.9e-119 | lssY | 3.6.1.27 | I | phosphatase | |
JCGKACBB_02261 | 2e-154 | I | alpha/beta hydrolase fold | |||
JCGKACBB_02262 | 2.4e-98 | 2.3.1.128 | J | Acetyltransferase (GNAT) domain | ||
JCGKACBB_02263 | 4.2e-92 | K | Transcriptional regulator | |||
JCGKACBB_02264 | 0.0 | alsS | 2.2.1.6 | EH | Belongs to the TPP enzyme family | |
JCGKACBB_02265 | 7.4e-264 | lysP | E | amino acid | ||
JCGKACBB_02266 | 2.5e-114 | vanY | 3.4.17.14 | M | D-alanyl-D-alanine carboxypeptidase | |
JCGKACBB_02267 | 2.5e-115 | dak | 2.7.1.74, 2.7.1.76 | F | deoxynucleoside kinase | |
JCGKACBB_02268 | 4.1e-218 | serS | 6.1.1.11 | J | Catalyzes the attachment of serine to tRNA(Ser). Is also able to aminoacylate tRNA(Sec) with serine, to form the misacylated tRNA L-seryl-tRNA(Sec), which will be further converted into selenocysteinyl-tRNA(Sec) | |
JCGKACBB_02276 | 6.9e-78 | ctsR | K | Belongs to the CtsR family | ||
JCGKACBB_02277 | 0.0 | clpC | O | Part of a stress-induced multi-chaperone system, it is involved in the recovery of the cell from heat-induced damage, in cooperation with DnaK, DnaJ and GrpE | ||
JCGKACBB_02278 | 1.5e-109 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_02279 | 0.0 | rpoB | 2.7.7.6 | K | DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates | |
JCGKACBB_02280 | 0.0 | rpoC | 2.7.7.6 | K | DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates | |
JCGKACBB_02281 | 3.2e-116 | pilD | 3.4.23.43 | NOU | Bacterial Peptidase A24 N-terminal domain | |
JCGKACBB_02282 | 3.6e-70 | rpsL | J | Interacts with and stabilizes bases of the 16S rRNA that are involved in tRNA selection in the A site and with the mRNA backbone. Located at the interface of the 30S and 50S subunits, it traverses the body of the 30S subunit contacting proteins on the other side and probably holding the rRNA structure together. The combined cluster of proteins S8, S12 and S17 appears to hold together the shoulder and platform of the 30S subunit | ||
JCGKACBB_02283 | 5.5e-83 | rpsG | J | One of the primary rRNA binding proteins, it binds directly to 16S rRNA where it nucleates assembly of the head domain of the 30S subunit. Is located at the subunit interface close to the decoding center, probably blocks exit of the E-site tRNA | ||
JCGKACBB_02284 | 0.0 | fusA | J | Catalyzes the GTP-dependent ribosomal translocation step during translation elongation. During this step, the ribosome changes from the pre-translocational (PRE) to the post- translocational (POST) state as the newly formed A-site-bound peptidyl-tRNA and P-site-bound deacylated tRNA move to the P and E sites, respectively. Catalyzes the coordinated movement of the two tRNA molecules, the mRNA and conformational changes in the ribosome | ||
JCGKACBB_02285 | 2.6e-49 | rpsJ | J | Involved in the binding of tRNA to the ribosomes | ||
JCGKACBB_02286 | 4.4e-112 | rplC | J | One of the primary rRNA binding proteins, it binds directly near the 3'-end of the 23S rRNA, where it nucleates assembly of the 50S subunit | ||
JCGKACBB_02287 | 5.5e-107 | rplD | J | Forms part of the polypeptide exit tunnel | ||
JCGKACBB_02288 | 1.8e-44 | rplW | J | One of the early assembly proteins it binds 23S rRNA. One of the proteins that surrounds the polypeptide exit tunnel on the outside of the ribosome. Forms the main docking site for trigger factor binding to the ribosome | ||
JCGKACBB_02289 | 8.1e-146 | rplB | J | One of the primary rRNA binding proteins. Required for association of the 30S and 50S subunits to form the 70S ribosome, for tRNA binding and peptide bond formation. It has been suggested to have peptidyltransferase activity | ||
JCGKACBB_02290 | 8.2e-47 | rpsS | J | Protein S19 forms a complex with S13 that binds strongly to the 16S ribosomal RNA | ||
JCGKACBB_02291 | 2.8e-52 | rplV | J | The globular domain of the protein is located near the polypeptide exit tunnel on the outside of the subunit, while an extended beta-hairpin is found that lines the wall of the exit tunnel in the center of the 70S ribosome | ||
JCGKACBB_02292 | 2.1e-117 | rpsC | J | Binds the lower part of the 30S subunit head. Binds mRNA in the 70S ribosome, positioning it for translation | ||
JCGKACBB_02293 | 9.2e-77 | rplP | J | Binds 23S rRNA and is also seen to make contacts with the A and possibly P site tRNAs | ||
JCGKACBB_02294 | 1.4e-24 | rpmC | J | Belongs to the universal ribosomal protein uL29 family | ||
JCGKACBB_02295 | 2.5e-40 | rpsQ | J | One of the primary rRNA binding proteins, it binds specifically to the 5'-end of 16S ribosomal RNA | ||
JCGKACBB_02296 | 4.3e-59 | rplN | J | Binds to 23S rRNA. Forms part of two intersubunit bridges in the 70S ribosome | ||
JCGKACBB_02297 | 2.4e-50 | rplX | J | One of the proteins that surrounds the polypeptide exit tunnel on the outside of the subunit | ||
JCGKACBB_02298 | 3.2e-95 | rplE | J | This is 1 of the proteins that binds and probably mediates the attachment of the 5S RNA into the large ribosomal subunit, where it forms part of the central protuberance. In the 70S ribosome it contacts protein S13 of the 30S subunit (bridge B1b), connecting the 2 subunits | ||
JCGKACBB_02299 | 1e-66 | rpsH | J | One of the primary rRNA binding proteins, it binds directly to 16S rRNA central domain where it helps coordinate assembly of the platform of the 30S subunit | ||
JCGKACBB_02300 | 3.5e-94 | rplF | J | This protein binds to the 23S rRNA, and is important in its secondary structure. It is located near the subunit interface in the base of the L7 L12 stalk, and near the tRNA binding site of the peptidyltransferase center | ||
JCGKACBB_02301 | 3.3e-56 | rplR | J | This is one of the proteins that binds and probably mediates the attachment of the 5S RNA into the large ribosomal subunit, where it forms part of the central protuberance | ||
JCGKACBB_02302 | 6.8e-84 | rpsE | J | Located at the back of the 30S subunit body where it stabilizes the conformation of the head with respect to the body | ||
JCGKACBB_02303 | 2.2e-24 | rpmD | J | Ribosomal protein L30 | ||
JCGKACBB_02304 | 6.3e-70 | rplO | J | Binds to the 23S rRNA | ||
JCGKACBB_02305 | 2e-236 | secY | U | The central subunit of the protein translocation channel SecYEG. Consists of two halves formed by TMs 1-5 and 6-10. These two domains form a lateral gate at the front which open onto the bilayer between TMs 2 and 7, and are clamped together by SecE at the back. The channel is closed by both a pore ring composed of hydrophobic SecY resides and a short helix (helix 2A) on the extracellular side of the membrane which forms a plug. The plug probably moves laterally to allow the channel to open. The ring and the pore may move independently | ||
JCGKACBB_02306 | 4.7e-125 | adk | 2.7.4.3 | F | Catalyzes the reversible transfer of the terminal phosphate group between ATP and AMP. Plays an important role in cellular energy homeostasis and in adenine nucleotide metabolism | |
JCGKACBB_02307 | 3.9e-33 | infA | J | One of the essential components for the initiation of protein synthesis. Stabilizes the binding of IF-2 and IF-3 on the 30S subunit to which N-formylmethionyl-tRNA(fMet) subsequently binds. Helps modulate mRNA selection, yielding the 30S pre- initiation complex (PIC). Upon addition of the 50S ribosomal subunit IF-1, IF-2 and IF-3 are released leaving the mature 70S translation initation complex | ||
JCGKACBB_02308 | 1.1e-59 | rpsM | J | Located at the top of the head of the 30S subunit, it contacts several helices of the 16S rRNA. In the 70S ribosome it contacts the 23S rRNA (bridge B1a) and protein L5 of the 50S subunit (bridge B1b), connecting the 2 subunits | ||
JCGKACBB_02309 | 3.4e-62 | rpsK | J | Located on the platform of the 30S subunit, it bridges several disparate RNA helices of the 16S rRNA. Forms part of the Shine-Dalgarno cleft in the 70S ribosome | ||
JCGKACBB_02310 | 5.7e-172 | rpoA | 2.7.7.6 | K | DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates | |
JCGKACBB_02311 | 2.1e-61 | rplQ | J | Ribosomal protein L17 | ||
JCGKACBB_02312 | 1.4e-181 | hepT | 2.5.1.30, 2.5.1.90 | H | Belongs to the FPP GGPP synthase family | |
JCGKACBB_02313 | 1.7e-94 | gerCA | 2.5.1.30 | S | Heptaprenyl diphosphate synthase component I | |
JCGKACBB_02314 | 1.4e-86 | ynhH | S | NusG domain II | ||
JCGKACBB_02315 | 0.0 | ndh | 1.6.99.3 | C | NADH dehydrogenase | |
JCGKACBB_02316 | 3.5e-142 | cad | S | FMN_bind | ||
JCGKACBB_02317 | 5.8e-208 | apbE | 2.7.1.180 | H | Flavin transferase that catalyzes the transfer of the FMN moiety of FAD and its covalent binding to the hydroxyl group of a threonine residue in a target flavoprotein | |
JCGKACBB_02318 | 1.4e-153 | ecfA1 | P | ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates | ||
JCGKACBB_02319 | 8.2e-165 | ecfA2 | 3.6.3.55 | P | ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates | |
JCGKACBB_02320 | 2.1e-143 | ecfT | U | Transmembrane (T) component of an energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates | ||
JCGKACBB_02321 | 3.9e-150 | truA | 5.4.99.12 | J | Formation of pseudouridine at positions 38, 39 and 40 in the anticodon stem and loop of transfer RNAs | |
JCGKACBB_02322 | 1.3e-78 | rplM | J | This protein is one of the early assembly proteins of the 50S ribosomal subunit, although it is not seen to bind rRNA by itself. It is important during the early stages of 50S assembly | ||
JCGKACBB_02323 | 1.9e-65 | rpsI | J | Belongs to the universal ribosomal protein uS9 family | ||
JCGKACBB_02324 | 1.3e-162 | degV | S | Uncharacterised protein, DegV family COG1307 | ||
JCGKACBB_02325 | 1.5e-184 | ywhK | S | Membrane | ||
JCGKACBB_02326 | 8.4e-204 | mdh | 1.1.1.350 | C | Belongs to the LDH2 MDH2 oxidoreductase family | |
JCGKACBB_02327 | 0.0 | tkt | 2.2.1.1 | H | Catalyzes the transfer of a two-carbon ketol group from a ketose donor to an aldose acceptor, via a covalent intermediate with the cofactor thiamine pyrophosphate | |
JCGKACBB_02328 | 7.7e-163 | aroE | 1.1.1.25 | E | Involved in the biosynthesis of the chorismate, which leads to the biosynthesis of aromatic amino acids. Catalyzes the reversible NADPH linked reduction of 3-dehydroshikimate (DHSA) to yield shikimate (SA) | |
JCGKACBB_02329 | 8.9e-184 | aroF | 2.5.1.54 | E | DAHP synthetase I family | |
JCGKACBB_02330 | 4.9e-196 | aroB | 2.7.1.71, 4.2.3.4 | E | Catalyzes the conversion of 3-deoxy-D-arabino- heptulosonate 7-phosphate (DAHP) to dehydroquinate (DHQ) | |
JCGKACBB_02331 | 1.9e-220 | P | Sodium:sulfate symporter transmembrane region | |||
JCGKACBB_02332 | 1.6e-52 | yitW | S | Iron-sulfur cluster assembly protein | ||
JCGKACBB_02333 | 4.1e-115 | ttdB | 4.2.1.2, 4.2.1.32 | C | Catalyzes the reversible hydration of fumarate to (S)- malate | |
JCGKACBB_02334 | 4.4e-177 | ttdA | 4.2.1.32 | C | Fumarate hydratase (Fumerase) | |
JCGKACBB_02335 | 3.8e-198 | K | Helix-turn-helix domain | |||
JCGKACBB_02336 | 8.1e-154 | citG | 2.4.2.52, 2.7.7.61 | H | 2-(5''-triphosphoribosyl)-3'-dephosphocoenzyme-A synthase | |
JCGKACBB_02337 | 4.5e-132 | mntB | 3.6.3.35 | P | ABC transporter | |
JCGKACBB_02338 | 4.8e-141 | mtsB | U | ABC 3 transport family | ||
JCGKACBB_02339 | 1.2e-174 | sitA | P | Belongs to the bacterial solute-binding protein 9 family | ||
JCGKACBB_02340 | 3.1e-50 | |||||
JCGKACBB_02341 | 1.2e-166 | ldh | 1.1.1.27 | C | Belongs to the LDH MDH superfamily. LDH family | |
JCGKACBB_02342 | 4.9e-260 | citP | P | Sodium:sulfate symporter transmembrane region | ||
JCGKACBB_02343 | 2.9e-179 | citR | K | sugar-binding domain protein | ||
JCGKACBB_02344 | 1.7e-207 | mez_1 | 1.1.1.38 | C | Malic enzyme, NAD binding domain | |
JCGKACBB_02345 | 5.7e-189 | citC | 6.2.1.22 | H | Acetylation of prosthetic group (2-(5''-phosphoribosyl)- 3'-dephosphocoenzyme-A) of the gamma subunit of citrate lyase | |
JCGKACBB_02346 | 9e-44 | citD | C | Covalent carrier of the coenzyme of citrate lyase | ||
JCGKACBB_02347 | 7.4e-161 | citE | 4.1.3.25, 4.1.3.34 | G | Belongs to the HpcH HpaI aldolase family | |
JCGKACBB_02348 | 4.6e-288 | citF | 2.8.3.10 | H | Citrate (pro-3S)-lyase alpha chain | |
JCGKACBB_02349 | 1.2e-180 | L | PFAM Integrase, catalytic core | |||
JCGKACBB_02350 | 8.6e-51 | K | sequence-specific DNA binding | |||
JCGKACBB_02353 | 1.5e-194 | tsaD | 2.3.1.234 | J | Required for the formation of a threonylcarbamoyl group on adenosine at position 37 (t(6)A37) in tRNAs that read codons beginning with adenine. Is involved in the transfer of the threonylcarbamoyl moiety of threonylcarbamoyl-AMP (TC-AMP) to the N6 group of A37, together with TsaE and TsaB. TsaD likely plays a direct catalytic role in this reaction | |
JCGKACBB_02354 | 1e-81 | rimI | 2.3.1.128 | K | This enzyme acetylates the N-terminal alanine of ribosomal protein S18 | |
JCGKACBB_02355 | 6.7e-101 | rimI | 2.3.1.128 | K | Ribosomal-protein-alanine acetyltransferase | |
JCGKACBB_02356 | 1.7e-128 | yeaZ | 2.3.1.234 | O | Universal bacterial protein YeaZ | |
JCGKACBB_02357 | 1.5e-189 | phnD | P | Phosphonate ABC transporter | ||
JCGKACBB_02358 | 9.7e-138 | phnC | 3.6.3.28 | P | Part of the ABC transporter complex PhnCDE involved in phosphonates import. Responsible for energy coupling to the transport system | |
JCGKACBB_02359 | 7.7e-138 | phnE | 3.6.1.63 | U | Phosphonate ABC transporter permease | |
JCGKACBB_02360 | 2.6e-144 | phnE1 | 3.6.1.63 | U | ABC transporter permease | |
JCGKACBB_02361 | 6.5e-145 | phnX | 2.6.1.37, 3.1.3.18, 3.11.1.1 | E | Belongs to the HAD-like hydrolase superfamily. PhnX family | |
JCGKACBB_02362 | 1.4e-209 | phnW | 2.5.1.49, 2.6.1.37, 3.11.1.1 | E | Belongs to the class-V pyridoxal-phosphate-dependent aminotransferase family. PhnW subfamily | |
JCGKACBB_02363 | 5.2e-192 | galE | 5.1.3.2 | M | Belongs to the NAD(P)-dependent epimerase dehydratase family | |
JCGKACBB_02364 | 2.1e-148 | fat | 3.1.2.21 | I | Acyl-ACP thioesterase | |
JCGKACBB_02365 | 2e-163 | rsmI | 2.1.1.198 | H | Catalyzes the 2'-O-methylation of the ribose of cytidine 1402 (C1402) in 16S rRNA | |
JCGKACBB_02366 | 3.8e-57 | yabA | L | Involved in initiation control of chromosome replication | ||
JCGKACBB_02367 | 3.3e-186 | holB | 2.7.7.7 | L | DNA polymerase III | |
JCGKACBB_02368 | 2.4e-53 | yaaQ | S | Cyclic-di-AMP receptor | ||
JCGKACBB_02369 | 3.3e-118 | tmk | 2.7.4.9 | F | Phosphorylation of dTMP to form dTDP in both de novo and salvage pathways of dTTP synthesis | |
JCGKACBB_02370 | 2.2e-38 | yaaL | S | Protein of unknown function (DUF2508) | ||
JCGKACBB_02371 | 7.4e-109 | recR | L | May play a role in DNA repair. It seems to be involved in an RecBC-independent recombinational process of DNA repair. It may act with RecF and RecO | ||
JCGKACBB_02372 | 5.8e-41 | yaaK | S | Binds to DNA and alters its conformation. May be involved in regulation of gene expression, nucleoid organization and DNA protection | ||
JCGKACBB_02373 | 0.0 | dnaX | 2.7.7.7 | L | DNA polymerase III is a complex, multichain enzyme responsible for most of the replicative synthesis in bacteria. This DNA polymerase also exhibits 3' to 5' exonuclease activity | |
JCGKACBB_02374 | 5.9e-91 | tadA | 3.5.4.33 | F | Catalyzes the deamination of adenosine to inosine at the wobble position 34 of tRNA(Arg2) | |
JCGKACBB_02375 | 9.8e-109 | rsmC | 2.1.1.172 | J | Methyltransferase | |
JCGKACBB_02376 | 6.5e-37 | nrdH | O | Glutaredoxin | ||
JCGKACBB_02377 | 0.0 | nrdE | 1.17.4.1 | F | Provides the precursors necessary for DNA synthesis. Catalyzes the biosynthesis of deoxyribonucleotides from the corresponding ribonucleotides | |
JCGKACBB_02378 | 2.2e-198 | nrdF | 1.17.4.1 | F | Provides the precursors necessary for DNA synthesis. Catalyzes the biosynthesis of deoxyribonucleotides from the corresponding ribonucleotides | |
JCGKACBB_02379 | 2.1e-108 | yvdD | 3.2.2.10 | S | Belongs to the LOG family | |
JCGKACBB_02380 | 5.6e-41 | K | Helix-turn-helix domain | |||
JCGKACBB_02381 | 0.0 | mprF | 2.3.2.3 | S | Catalyzes the transfer of a lysyl group from L-lysyl- tRNA(Lys) to membrane-bound phosphatidylglycerol (PG), which produces lysylphosphatidylglycerol (LPG), a major component of the bacterial membrane with a positive net charge. LPG synthesis contributes to bacterial virulence as it is involved in the resistance mechanism against cationic antimicrobial peptides (CAMP) produces by the host's immune system (defensins, cathelicidins) and by the competing microorganisms | |
JCGKACBB_02382 | 4.4e-38 | L | nuclease | |||
JCGKACBB_02383 | 1.3e-176 | F | DNA/RNA non-specific endonuclease | |||
JCGKACBB_02384 | 8.4e-55 | rplL | J | Forms part of the ribosomal stalk which helps the ribosome interact with GTP-bound translation factors. Is thus essential for accurate translation | ||
JCGKACBB_02385 | 4.6e-80 | rplJ | J | Forms part of the ribosomal stalk, playing a central role in the interaction of the ribosome with GTP-bound translation factors | ||
JCGKACBB_02386 | 5.1e-122 | rplA | J | Binds directly to 23S rRNA. The L1 stalk is quite mobile in the ribosome, and is involved in E site tRNA release | ||
JCGKACBB_02387 | 2.4e-69 | rplK | J | Forms part of the ribosomal stalk which helps the ribosome interact with GTP-bound translation factors | ||
JCGKACBB_02388 | 3.7e-157 | S | Alpha/beta hydrolase of unknown function (DUF915) | |||
JCGKACBB_02389 | 3.7e-99 | nusG | K | Participates in transcription elongation, termination and antitermination | ||
JCGKACBB_02390 | 6.8e-29 | secE | U | Essential subunit of the Sec protein translocation channel SecYEG. Clamps together the 2 halves of SecY. May contact the channel plug during translocation | ||
JCGKACBB_02391 | 6.5e-22 | rpmG | J | Belongs to the bacterial ribosomal protein bL33 family | ||
JCGKACBB_02392 | 1.7e-99 | sigH | K | Sigma-70 region 2 | ||
JCGKACBB_02393 | 2.7e-97 | yacP | S | YacP-like NYN domain | ||
JCGKACBB_02394 | 3.3e-138 | rlmB | 2.1.1.185 | J | Belongs to the class IV-like SAM-binding methyltransferase superfamily. RNA methyltransferase TrmH family | |
JCGKACBB_02395 | 3.5e-70 | mrnC | J | Involved in correct processing of both the 5' and 3' ends of 23S rRNA precursor. Processes 30S rRNA precursor transcript even in absence of ribonuclease 3 (Rnc) | ||
JCGKACBB_02396 | 1.4e-270 | cysS | 6.1.1.16, 6.3.1.13 | J | Belongs to the class-I aminoacyl-tRNA synthetase family | |
JCGKACBB_02397 | 8.9e-289 | gltX | 6.1.1.17, 6.1.1.24 | J | Catalyzes the attachment of glutamate to tRNA(Glu) in a two-step reaction glutamate is first activated by ATP to form Glu-AMP and then transferred to the acceptor end of tRNA(Glu) | |
JCGKACBB_02398 | 1.1e-204 | yacL | S | domain protein | ||
JCGKACBB_02399 | 1.3e-257 | radA | O | DNA-dependent ATPase involved in processing of recombination intermediates, plays a role in repairing DNA breaks. Stimulates the branch migration of RecA-mediated strand transfer reactions, allowing the 3' invading strand to extend heteroduplex DNA faster. Binds ssDNA in the presence of ADP but not other nucleotides, has ATPase activity that is stimulated by ssDNA and various branched DNA structures, but inhibited by SSB. Does not have RecA's homology-searching function | ||
JCGKACBB_02400 | 6.6e-116 | S | GyrI-like small molecule binding domain | |||
JCGKACBB_02401 | 3.8e-69 | S | Iron-sulphur cluster biosynthesis | |||
JCGKACBB_02402 | 1.5e-175 | 1.6.5.5 | C | Alcohol dehydrogenase GroES-like domain | ||
JCGKACBB_02403 | 1.1e-100 | S | WxL domain surface cell wall-binding | |||
JCGKACBB_02404 | 2e-189 | S | Cell surface protein | |||
JCGKACBB_02405 | 1.3e-75 | |||||
JCGKACBB_02406 | 5.4e-262 | |||||
JCGKACBB_02407 | 6.6e-227 | hpk9 | 2.7.13.3 | T | GHKL domain | |
JCGKACBB_02408 | 2.9e-38 | S | TfoX C-terminal domain | |||
JCGKACBB_02409 | 6e-140 | K | Helix-turn-helix domain | |||
JCGKACBB_02410 | 0.0 | M | Interacts with outer membrane receptor proteins that carry out high-affinity binding and energy dependent uptake into the periplasmic space of specific substrates. It could act to transduce energy from the cytoplasmic membrane to specific energy- requiring processes in the outer membrane, resulting in the release into the periplasm of ligands bound by these outer membrane proteins | |||
JCGKACBB_02411 | 2.4e-65 | silP | 1.9.3.1, 3.6.3.54 | S | Cupredoxin-like domain | |
JCGKACBB_02412 | 6.4e-44 | silP | 1.9.3.1, 3.6.3.54 | S | Cupredoxin-like domain | |
JCGKACBB_02413 | 0.0 | ctpA | 3.6.3.54 | P | P-type ATPase | |
JCGKACBB_02414 | 1.6e-213 | adhC | 1.1.1.90 | C | Zn-dependent alcohol dehydrogenases, class III | |
JCGKACBB_02415 | 1.3e-223 | dhaT | 1.1.1.1, 1.1.1.202 | C | Dehydrogenase | |
JCGKACBB_02416 | 3.9e-66 | lysM | M | LysM domain | ||
JCGKACBB_02417 | 3.6e-266 | yjeM | E | Amino Acid | ||
JCGKACBB_02418 | 1.3e-143 | K | Helix-turn-helix XRE-family like proteins | |||
JCGKACBB_02419 | 7.4e-71 | |||||
JCGKACBB_02421 | 5e-162 | IQ | KR domain | |||
JCGKACBB_02422 | 2.3e-226 | amd | 3.5.1.47 | E | Peptidase family M20/M25/M40 | |
JCGKACBB_02423 | 4.8e-311 | XK27_09600 | V | ABC transporter, ATP-binding protein | ||
JCGKACBB_02424 | 0.0 | V | ABC transporter | |||
JCGKACBB_02425 | 1.2e-216 | ykiI | ||||
JCGKACBB_02426 | 8e-117 | GM | NAD(P)H-binding | |||
JCGKACBB_02427 | 1.9e-138 | IQ | reductase | |||
JCGKACBB_02428 | 3.7e-60 | I | sulfurtransferase activity | |||
JCGKACBB_02429 | 2.7e-78 | yphH | S | Cupin domain | ||
JCGKACBB_02430 | 4e-92 | S | Phosphatidylethanolamine-binding protein | |||
JCGKACBB_02431 | 1.6e-117 | GM | NAD(P)H-binding | |||
JCGKACBB_02432 | 4.2e-142 | C | C4-dicarboxylate transmembrane transporter activity | |||
JCGKACBB_02433 | 1.5e-42 | S | COG NOG38524 non supervised orthologous group | |||
JCGKACBB_02434 | 2.8e-157 | degV | S | DegV family | ||
JCGKACBB_02435 | 2.2e-87 | yjaB_1 | K | Acetyltransferase (GNAT) domain | ||
JCGKACBB_02436 | 2.9e-145 | tesE | Q | hydratase | ||
JCGKACBB_02437 | 1.7e-104 | padC | Q | Phenolic acid decarboxylase | ||
JCGKACBB_02438 | 2.2e-99 | padR | K | Virulence activator alpha C-term | ||
JCGKACBB_02439 | 2.7e-79 | T | Universal stress protein family | |||
JCGKACBB_02440 | 0.0 | adhE | 1.1.1.1, 1.2.1.10 | C | belongs to the iron- containing alcohol dehydrogenase family | |
JCGKACBB_02441 | 5.9e-188 | rbsR | K | helix_turn _helix lactose operon repressor | ||
JCGKACBB_02442 | 2.3e-162 | rbsK | 2.7.1.15 | H | Catalyzes the phosphorylation of ribose at O-5 in a reaction requiring ATP and magnesium. The resulting D-ribose-5- phosphate can then be used either for sythesis of nucleotides, histidine, and tryptophan, or as a component of the pentose phosphate pathway | |
JCGKACBB_02443 | 7.9e-67 | rbsD | 5.4.99.62 | G | Catalyzes the interconversion of beta-pyran and beta- furan forms of D-ribose | |
JCGKACBB_02444 | 2.7e-160 | rbsU | U | ribose uptake protein RbsU | ||
JCGKACBB_02445 | 3.8e-145 | IQ | NAD dependent epimerase/dehydratase family | |||
JCGKACBB_02446 | 0.0 | srlM | 2.7.1.194, 2.7.1.200, 2.7.1.202 | GKT | Mga helix-turn-helix domain | |
JCGKACBB_02447 | 1.1e-86 | gutM | K | Glucitol operon activator protein (GutM) | ||
JCGKACBB_02448 | 2e-100 | srlA | G | PTS system enzyme II sorbitol-specific factor | ||
JCGKACBB_02449 | 1.5e-173 | srlE | 2.7.1.198 | G | Sorbitol phosphotransferase enzyme II N-terminus | |
JCGKACBB_02450 | 8.6e-63 | srlB | 2.7.1.198 | G | PTS system glucitol/sorbitol-specific IIA component | |
JCGKACBB_02451 | 0.0 | spxB | 1.2.3.3, 1.2.5.1 | EH | Belongs to the TPP enzyme family | |
JCGKACBB_02452 | 8.7e-72 | K | Transcriptional regulator | |||
JCGKACBB_02453 | 7e-104 | poxB | 1.2.3.3, 1.2.5.1 | EH | Belongs to the TPP enzyme family | |
JCGKACBB_02454 | 3.1e-158 | poxB | 1.2.3.3, 1.2.5.1 | EH | Belongs to the TPP enzyme family | |
JCGKACBB_02455 | 4.7e-48 | poxB | 1.2.3.3, 1.2.5.1 | EH | Belongs to the TPP enzyme family | |
JCGKACBB_02456 | 1.4e-148 | lctO | C | L-lactate dehydrogenase (FMN-dependent) and related alpha-hydroxy acid dehydrogenases | ||
JCGKACBB_02458 | 0.0 | clpL | O | C-terminal, D2-small domain, of ClpB protein | ||
JCGKACBB_02459 | 2.4e-67 | agrB | KOT | May be involved in the proteolytic processing of a quorum sensing system signal molecule precursor | ||
JCGKACBB_02460 | 1.8e-12 | |||||
JCGKACBB_02461 | 6.6e-160 | 2.7.13.3 | T | GHKL domain | ||
JCGKACBB_02462 | 7.4e-135 | K | LytTr DNA-binding domain | |||
JCGKACBB_02463 | 4.9e-78 | yneH | 1.20.4.1 | K | ArsC family | |
JCGKACBB_02464 | 3.4e-249 | katA | 1.11.1.6 | C | Belongs to the catalase family | |
JCGKACBB_02465 | 1.1e-29 | katA | 1.11.1.6 | C | Belongs to the catalase family | |
JCGKACBB_02466 | 9e-13 | ytgB | S | Transglycosylase associated protein | ||
JCGKACBB_02467 | 3.6e-11 | |||||
JCGKACBB_02468 | 1.6e-89 | folT | 2.7.13.3 | T | ECF transporter, substrate-specific component | |
JCGKACBB_02469 | 1.6e-69 | S | Pyrimidine dimer DNA glycosylase | |||
JCGKACBB_02470 | 2.9e-229 | 1.7.1.15 | S | Pyridine nucleotide-disulphide oxidoreductase | ||
JCGKACBB_02471 | 1.9e-121 | nanE | 5.1.3.9 | G | Converts N-acetylmannosamine-6-phosphate (ManNAc-6-P) to N-acetylglucosamine-6-phosphate (GlcNAc-6-P) | |
JCGKACBB_02472 | 6.2e-165 | nanA | 4.1.3.3, 4.3.3.7 | EM | Neu5Ac) to form pyruvate and N-acetylmannosamine (ManNAc) via a Schiff base intermediate | |
JCGKACBB_02473 | 1.4e-153 | nanK | GK | ROK family | ||
JCGKACBB_02474 | 1.6e-134 | kguE | 2.7.1.45 | G | Xylose isomerase domain protein TIM barrel | |
JCGKACBB_02475 | 5.8e-136 | napA | P | Belongs to the monovalent cation proton antiporter 2 (CPA2) transporter (TC 2.A.37) family | ||
JCGKACBB_02476 | 4.9e-61 | napA | P | Belongs to the monovalent cation proton antiporter 2 (CPA2) transporter (TC 2.A.37) family | ||
JCGKACBB_02477 | 1.7e-271 | nanT | E | Belongs to the sodium solute symporter (SSF) (TC 2.A.21) family | ||
JCGKACBB_02478 | 1.3e-159 | I | alpha/beta hydrolase fold | |||
JCGKACBB_02479 | 6.6e-164 | I | alpha/beta hydrolase fold | |||
JCGKACBB_02480 | 3.7e-72 | yueI | S | Protein of unknown function (DUF1694) | ||
JCGKACBB_02481 | 7.4e-136 | K | Helix-turn-helix domain, rpiR family | |||
JCGKACBB_02482 | 1.7e-52 | Q | Methyltransferase | |||
JCGKACBB_02483 | 4.3e-20 | Q | Methyltransferase | |||
JCGKACBB_02484 | 3.6e-130 | repA | S | Replication initiator protein A | ||
JCGKACBB_02486 | 7.3e-133 | D | CobQ CobB MinD ParA nucleotide binding domain protein | |||
JCGKACBB_02487 | 8.1e-97 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_02488 | 1.2e-42 | tnpR | L | Resolvase, N terminal domain | ||
JCGKACBB_02489 | 4.1e-173 | L | Transposase and inactivated derivatives, IS30 family | |||
JCGKACBB_02490 | 3.7e-301 | ybeC | E | amino acid | ||
JCGKACBB_02491 | 1.8e-68 | L | Putative transposase of IS4/5 family (DUF4096) | |||
JCGKACBB_02492 | 5.4e-77 | L | Transposase DDE domain | |||
JCGKACBB_02493 | 3.8e-131 | S | Belongs to the short-chain dehydrogenases reductases (SDR) family | |||
JCGKACBB_02494 | 2e-73 | |||||
JCGKACBB_02495 | 1.3e-165 | K | Bacterial regulatory helix-turn-helix protein, lysR family | |||
JCGKACBB_02496 | 7.9e-44 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_02497 | 4.6e-78 | ycjY | S | Dienelactone hydrolase family | ||
JCGKACBB_02498 | 2e-60 | IQ | Belongs to the short-chain dehydrogenases reductases (SDR) family | |||
JCGKACBB_02499 | 9.3e-50 | K | helix_turn_helix, Arsenical Resistance Operon Repressor | |||
JCGKACBB_02500 | 9.3e-181 | 1.1.1.1 | C | nadph quinone reductase | ||
JCGKACBB_02501 | 3.3e-119 | hchA | S | DJ-1/PfpI family | ||
JCGKACBB_02502 | 3.1e-151 | EG | EamA-like transporter family | |||
JCGKACBB_02503 | 1.4e-62 | S | Protein of unknown function | |||
JCGKACBB_02504 | 8.2e-39 | S | Protein of unknown function | |||
JCGKACBB_02505 | 0.0 | tetP | J | elongation factor G | ||
JCGKACBB_02506 | 1.6e-117 | azoR | C | Catalyzes the reductive cleavage of azo bond in aromatic azo compounds to the corresponding amines. Requires NADH, but not NADPH, as an electron donor for its activity | ||
JCGKACBB_02507 | 5.5e-172 | yobV1 | K | WYL domain | ||
JCGKACBB_02508 | 2.5e-129 | yfeJ | 6.3.5.2 | F | glutamine amidotransferase | |
JCGKACBB_02509 | 8.3e-81 | 6.3.3.2 | S | ASCH | ||
JCGKACBB_02510 | 3.4e-253 | 1.14.14.9 | Q | 4-hydroxyphenylacetate | ||
JCGKACBB_02511 | 1.3e-134 | wzb | 3.1.3.48 | T | Tyrosine phosphatase family | |
JCGKACBB_02512 | 6.2e-174 | yjcE | P | Sodium proton antiporter | ||
JCGKACBB_02513 | 5.5e-81 | yjcE | P | Sodium proton antiporter | ||
JCGKACBB_02514 | 5.7e-152 | nudC | 1.3.7.1, 3.6.1.22 | L | NADH pyrophosphatase zinc ribbon domain | |
JCGKACBB_02515 | 8.1e-160 | K | LysR substrate binding domain | |||
JCGKACBB_02516 | 8.9e-281 | 1.3.5.4 | C | FAD binding domain | ||
JCGKACBB_02517 | 0.0 | 3.2.1.4, 3.2.1.78, 3.2.1.8 | GH26,GH5,GH9 | S | MucBP domain | |
JCGKACBB_02518 | 1.6e-174 | L | Transposase and inactivated derivatives, IS30 family DNA replication, recombination, and repair | |||
JCGKACBB_02521 | 2.4e-16 | ltrA_1 | L | PFAM RNA-directed DNA polymerase (Reverse transcriptase) | ||
JCGKACBB_02522 | 4.1e-181 | ltrA_1 | L | PFAM RNA-directed DNA polymerase (Reverse transcriptase) | ||
JCGKACBB_02523 | 1.4e-256 | fumC | 4.2.1.2 | C | Involved in the TCA cycle. Catalyzes the stereospecific interconversion of fumarate to L-malate | |
JCGKACBB_02524 | 2.4e-264 | frdC | 1.3.5.4 | C | FAD binding domain | |
JCGKACBB_02525 | 1.2e-94 | citX | 2.4.2.52, 2.7.7.61 | HI | Apo-citrate lyase phosphoribosyl-dephospho-CoA transferase | |
JCGKACBB_02526 | 1.2e-160 | mleR | K | LysR family transcriptional regulator | ||
JCGKACBB_02527 | 1.8e-167 | mleR | K | LysR family | ||
JCGKACBB_02528 | 2.8e-307 | sfcA | 1.1.1.38, 4.1.1.101 | C | Malic enzyme | |
JCGKACBB_02529 | 1.4e-165 | mleP | S | Sodium Bile acid symporter family | ||
JCGKACBB_02530 | 5.8e-253 | yfnA | E | Amino Acid | ||
JCGKACBB_02531 | 3e-99 | S | ECF transporter, substrate-specific component | |||
JCGKACBB_02532 | 6.5e-120 | S | CAAX protease self-immunity | |||
JCGKACBB_02533 | 2.2e-113 | V | CAAX protease self-immunity | |||
JCGKACBB_02534 | 2.1e-120 | yclH | V | ABC transporter | ||
JCGKACBB_02535 | 7.1e-171 | yclI | V | MacB-like periplasmic core domain | ||
JCGKACBB_02536 | 0.0 | XK27_00720 | S | Leucine-rich repeat (LRR) protein | ||
JCGKACBB_02537 | 3.2e-106 | tag | 3.2.2.20 | L | glycosylase | |
JCGKACBB_02538 | 0.0 | ydgH | S | MMPL family | ||
JCGKACBB_02539 | 3.1e-104 | K | transcriptional regulator | |||
JCGKACBB_02540 | 2.7e-123 | 2.7.6.5 | S | RelA SpoT domain protein | ||
JCGKACBB_02541 | 1.3e-47 | |||||
JCGKACBB_02542 | 2.2e-257 | loxD | 1.1.3.15 | C | FAD linked oxidases, C-terminal domain | |
JCGKACBB_02543 | 7.8e-183 | brpA | K | Cell envelope-like function transcriptional attenuator common domain protein | ||
JCGKACBB_02544 | 2.1e-41 | |||||
JCGKACBB_02545 | 9.9e-57 | |||||
JCGKACBB_02546 | 1.9e-242 | celB | G | The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active - transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane | ||
JCGKACBB_02547 | 2.1e-129 | yidA | K | Helix-turn-helix domain, rpiR family | ||
JCGKACBB_02548 | 1.8e-49 | |||||
JCGKACBB_02549 | 1.3e-128 | K | Transcriptional regulatory protein, C terminal | |||
JCGKACBB_02550 | 2.3e-251 | T | PhoQ Sensor | |||
JCGKACBB_02551 | 9.5e-65 | K | helix_turn_helix, mercury resistance | |||
JCGKACBB_02552 | 9.7e-253 | ydiC1 | EGP | Major facilitator Superfamily | ||
JCGKACBB_02553 | 1e-40 | |||||
JCGKACBB_02554 | 2.7e-38 | |||||
JCGKACBB_02555 | 5.5e-118 | |||||
JCGKACBB_02556 | 8.5e-233 | mntH | P | H( )-stimulated, divalent metal cation uptake system | ||
JCGKACBB_02557 | 2.4e-119 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_02558 | 2.6e-71 | K | Transcriptional regulator | |||
JCGKACBB_02559 | 1.7e-295 | S | ABC transporter, ATP-binding protein | |||
JCGKACBB_02560 | 4.4e-106 | 3.2.2.20 | K | acetyltransferase | ||
JCGKACBB_02561 | 2.4e-80 | E | Glyoxalase/Bleomycin resistance protein/Dioxygenase superfamily | |||
JCGKACBB_02562 | 2.7e-39 | |||||
JCGKACBB_02563 | 0.0 | nagE | 2.7.1.193, 2.7.1.199, 2.7.1.211 | G | phosphotransferase system, EIIB | |
JCGKACBB_02564 | 1.4e-189 | panE1 | 1.1.1.169 | H | Catalyzes the NADPH-dependent reduction of ketopantoate into pantoic acid | |
JCGKACBB_02565 | 5e-162 | degV | S | Uncharacterised protein, DegV family COG1307 | ||
JCGKACBB_02566 | 7.3e-231 | hom1 | 1.1.1.3 | E | Homoserine dehydrogenase | |
JCGKACBB_02567 | 2.6e-244 | metY | 2.5.1.49 | E | Catalyzes the formation of L-methionine and acetate from O-acetyl-L-homoserine and methanethiol | |
JCGKACBB_02568 | 1.3e-165 | metAA | 2.3.1.46 | E | Transfers an acetyl group from acetyl-CoA to | |
JCGKACBB_02569 | 1.4e-176 | XK27_08835 | S | ABC transporter | ||
JCGKACBB_02570 | 2.5e-153 | XK27_08840 | U | Belongs to the binding-protein-dependent transport system permease family | ||
JCGKACBB_02571 | 4.1e-136 | XK27_08845 | S | ABC transporter, ATP-binding protein | ||
JCGKACBB_02572 | 5.7e-258 | npr | 1.11.1.1 | C | NADH oxidase | |
JCGKACBB_02573 | 1.2e-112 | ppaX_1 | 3.1.3.18, 3.6.1.1 | S | haloacid dehalogenase-like hydrolase | |
JCGKACBB_02574 | 1.5e-80 | maa | 2.3.1.18, 2.3.1.79 | S | Maltose O-acetyltransferase | |
JCGKACBB_02575 | 1.3e-128 | K | Helix-turn-helix domain, rpiR family | |||
JCGKACBB_02576 | 2.5e-158 | S | Alpha beta hydrolase | |||
JCGKACBB_02577 | 9.9e-112 | GM | NmrA-like family | |||
JCGKACBB_02578 | 4.9e-78 | S | Uncharacterized protein conserved in bacteria (DUF2255) | |||
JCGKACBB_02579 | 1.9e-161 | K | Transcriptional regulator | |||
JCGKACBB_02580 | 1.9e-172 | C | nadph quinone reductase | |||
JCGKACBB_02581 | 6.3e-14 | S | Alpha beta hydrolase | |||
JCGKACBB_02582 | 6.1e-271 | nox | C | Pyridine nucleotide-disulphide oxidoreductase, dimerisation domain | ||
JCGKACBB_02583 | 4e-102 | desR | K | helix_turn_helix, Lux Regulon | ||
JCGKACBB_02584 | 2.8e-207 | desK | 2.7.13.3 | T | Histidine kinase | |
JCGKACBB_02585 | 3.1e-136 | yvfS | V | ABC-2 type transporter | ||
JCGKACBB_02586 | 5.2e-159 | yvfR | V | ABC transporter | ||
JCGKACBB_02588 | 6e-82 | K | Acetyltransferase (GNAT) domain | |||
JCGKACBB_02589 | 8.1e-73 | K | MarR family | |||
JCGKACBB_02590 | 1e-114 | S | Psort location CytoplasmicMembrane, score | |||
JCGKACBB_02591 | 7.5e-12 | yjdF | S | Protein of unknown function (DUF2992) | ||
JCGKACBB_02592 | 3.9e-162 | V | ABC transporter, ATP-binding protein | |||
JCGKACBB_02593 | 9.8e-127 | S | ABC-2 family transporter protein | |||
JCGKACBB_02594 | 1.1e-197 | |||||
JCGKACBB_02595 | 1.3e-201 | |||||
JCGKACBB_02596 | 1.4e-164 | ytrB | V | ABC transporter, ATP-binding protein | ||
JCGKACBB_02597 | 9.5e-65 | K | helix_turn_helix gluconate operon transcriptional repressor | |||
JCGKACBB_02598 | 4.6e-197 | sigA | K | Sigma factors are initiation factors that promote the attachment of RNA polymerase to specific initiation sites and are then released. This sigma factor is the primary sigma factor during exponential growth | ||
JCGKACBB_02599 | 0.0 | dnaG | L | RNA polymerase that catalyzes the synthesis of short RNA molecules used as primers for DNA polymerase during DNA replication | ||
JCGKACBB_02600 | 0.0 | glyS | 6.1.1.14 | J | Glycyl-tRNA synthetase beta subunit | |
JCGKACBB_02601 | 6.8e-175 | glyQ | 6.1.1.14 | J | glycyl-tRNA synthetase alpha subunit | |
JCGKACBB_02602 | 3.1e-147 | recO | L | Involved in DNA repair and RecF pathway recombination | ||
JCGKACBB_02603 | 1.5e-169 | era | S | An essential GTPase that binds both GDP and GTP, with rapid nucleotide exchange. Plays a role in 16S rRNA processing and 30S ribosomal subunit biogenesis and possibly also in cell cycle regulation and energy metabolism | ||
JCGKACBB_02604 | 4.5e-73 | dgkA | 2.7.1.107, 2.7.1.66 | M | Diacylglycerol kinase | |
JCGKACBB_02605 | 1.9e-83 | ybeY | 2.6.99.2, 3.5.4.5 | S | Single strand-specific metallo-endoribonuclease involved in late-stage 70S ribosome quality control and in maturation of the 3' terminus of the 16S rRNA | |
JCGKACBB_02606 | 3.4e-180 | phoH | T | phosphate starvation-inducible protein PhoH | ||
JCGKACBB_02607 | 2.6e-71 | yqeY | S | YqeY-like protein | ||
JCGKACBB_02608 | 9.7e-23 | rpsU | J | Belongs to the bacterial ribosomal protein bS21 family | ||
JCGKACBB_02609 | 2.1e-151 | yqfL | 2.7.11.33, 2.7.4.28 | F | Bifunctional serine threonine kinase and phosphorylase involved in the regulation of the pyruvate, phosphate dikinase (PPDK) by catalyzing its phosphorylation dephosphorylation | |
JCGKACBB_02610 | 9.4e-127 | C | Enoyl-(Acyl carrier protein) reductase | |||
JCGKACBB_02611 | 3.3e-169 | nfo | 3.1.21.2 | L | Endonuclease IV plays a role in DNA repair. It cleaves phosphodiester bonds at apurinic or apyrimidinic sites (AP sites) to produce new 5'-ends that are base-free deoxyribose 5-phosphate residues. It preferentially attacks modified AP sites created by bleomycin and neocarzinostatin | |
JCGKACBB_02612 | 6.6e-223 | tagB | 2.7.8.14, 2.7.8.44, 2.7.8.47 | M | CDP-Glycerol:Poly(glycerophosphate) glycerophosphotransferase | |
JCGKACBB_02613 | 1.7e-159 | yitT | S | Uncharacterised 5xTM membrane BCR, YitT family COG1284 | ||
JCGKACBB_02614 | 3.2e-100 | msrA | 1.8.4.11, 1.8.4.12 | O | Has an important function as a repair enzyme for proteins that have been inactivated by oxidation. Catalyzes the reversible oxidation-reduction of methionine sulfoxide in proteins to methionine | |
JCGKACBB_02615 | 0.0 | aspS | 6.1.1.12 | J | Catalyzes the attachment of L-aspartate to tRNA(Asp) in a two-step reaction L-aspartate is first activated by ATP to form Asp-AMP and then transferred to the acceptor end of tRNA(Asp) | |
JCGKACBB_02616 | 2.2e-243 | hisS | 6.1.1.21 | J | histidyl-tRNA synthetase | |
JCGKACBB_02617 | 4.3e-155 | lytH | 3.5.1.28 | M | N-acetylmuramoyl-L-alanine amidase | |
JCGKACBB_02618 | 6.2e-162 | yniA | G | Fructosamine kinase | ||
JCGKACBB_02619 | 6.5e-116 | 3.1.3.18 | J | HAD-hyrolase-like | ||
JCGKACBB_02620 | 8.5e-78 | dtd | J | rejects L-amino acids rather than detecting D-amino acids in the active site. By recycling D-aminoacyl-tRNA to D-amino acids and free tRNA molecules, this enzyme counteracts the toxicity associated with the formation of D-aminoacyl-tRNA entities in vivo and helps enforce protein L-homochirality | ||
JCGKACBB_02621 | 0.0 | relA | 2.7.6.5 | KT | In eubacteria ppGpp (guanosine 3'-diphosphate 5-' diphosphate) is a mediator of the stringent response that coordinates a variety of cellular activities in response to changes in nutritional abundance | |
JCGKACBB_02622 | 9.6e-58 | |||||
JCGKACBB_02623 | 2.9e-134 | rsmE | 2.1.1.193 | J | Specifically methylates the N3 position of the uracil ring of uridine 1498 (m3U1498) in 16S rRNA. Acts on the fully assembled 30S ribosomal subunit | |
JCGKACBB_02624 | 1.3e-176 | prmA | J | Ribosomal protein L11 methyltransferase | ||
JCGKACBB_02625 | 1.2e-82 | mpg | 3.2.2.21 | L | Belongs to the DNA glycosylase MPG family | |
JCGKACBB_02626 | 1.4e-49 | |||||
JCGKACBB_02627 | 1.4e-49 | |||||
JCGKACBB_02630 | 1e-127 | 3.6.4.12 | L | Belongs to the 'phage' integrase family | ||
JCGKACBB_02631 | 0.0 | lepA | M | Required for accurate and efficient protein synthesis under certain stress conditions. May act as a fidelity factor of the translation reaction, by catalyzing a one-codon backward translocation of tRNAs on improperly translocated ribosomes. Back- translocation proceeds from a post-translocation (POST) complex to a pre-translocation (PRE) complex, thus giving elongation factor G a second chance to translocate the tRNAs correctly. Binds to ribosomes in a GTP-dependent manner | ||
JCGKACBB_02632 | 6.1e-246 | dltD | M | Protein involved in D-alanine esterification of lipoteichoic acid and wall teichoic acid (D-alanine transfer protein) | ||
JCGKACBB_02633 | 2.4e-34 | dltC | 6.1.1.13 | J | Carrier protein involved in the D-alanylation of lipoteichoic acid (LTA). The loading of thioester-linked D-alanine onto DltC is catalyzed by D-alanine--D-alanyl carrier protein ligase DltA. The DltC-carried D-alanyl group is further transferred to cell membrane phosphatidylglycerol (PG) by forming an ester bond, probably catalyzed by DltD. D-alanylation of LTA plays an important role in modulating the properties of the cell wall in Gram-positive bacteria, influencing the net charge of the cell wall | |
JCGKACBB_02634 | 9.6e-233 | dltB | M | MBOAT, membrane-bound O-acyltransferase family | ||
JCGKACBB_02635 | 7e-297 | dltA | 6.1.1.13 | H | Catalyzes the first step in the D-alanylation of lipoteichoic acid (LTA), the activation of D-alanine and its transfer onto the D-alanyl carrier protein (Dcp) DltC. In an ATP- dependent two-step reaction, forms a high energy D-alanyl-AMP intermediate, followed by transfer of the D-alanyl residue as a thiol ester to the phosphopantheinyl prosthetic group of the Dcp. D-alanylation of LTA plays an important role in modulating the properties of the cell wall in Gram-positive bacteria, influencing the net charge of the cell wall | |
JCGKACBB_02636 | 8.8e-19 | dltX | S | D-Ala-teichoic acid biosynthesis protein | ||
JCGKACBB_02637 | 4.4e-198 | pbpX2 | V | Beta-lactamase | ||
JCGKACBB_02638 | 1.2e-184 | dnaJ | O | ATP binding to DnaK triggers the release of the substrate protein, thus completing the reaction cycle. Several rounds of ATP-dependent interactions between DnaJ, DnaK and GrpE are required for fully efficient folding. Also involved, together with DnaK and GrpE, in the DNA replication of plasmids through activation of initiation proteins | ||
JCGKACBB_02639 | 0.0 | dnaK | O | Heat shock 70 kDa protein | ||
JCGKACBB_02640 | 1.5e-80 | grpE | O | Participates actively in the response to hyperosmotic and heat shock by preventing the aggregation of stress-denatured proteins, in association with DnaK and GrpE. It is the nucleotide exchange factor for DnaK and may function as a thermosensor. Unfolded proteins bind initially to DnaJ | ||
JCGKACBB_02641 | 2.4e-195 | hrcA | K | Negative regulator of class I heat shock genes (grpE- dnaK-dnaJ and groELS operons). Prevents heat-shock induction of these operons | ||
JCGKACBB_02642 | 2.8e-131 | budA | 4.1.1.5 | Q | Alpha-acetolactate decarboxylase | |
JCGKACBB_02643 | 2.7e-188 | ribF | 2.7.1.26, 2.7.7.2 | H | Belongs to the ribF family | |
JCGKACBB_02644 | 3.6e-171 | truB | 5.4.99.25 | J | Responsible for synthesis of pseudouridine from uracil- 55 in the psi GC loop of transfer RNAs | |
JCGKACBB_02645 | 2e-86 | aroK | 1.1.1.25, 2.7.1.71, 4.2.1.10, 4.2.3.4 | F | Catalyzes the specific phosphorylation of the 3-hydroxyl group of shikimic acid using ATP as a cosubstrate | |
JCGKACBB_02646 | 6.5e-196 | tyrA | 1.3.1.12, 1.3.1.43 | E | prephenate dehydrogenase | |
JCGKACBB_02647 | 4.6e-233 | aroA | 1.3.1.12, 1.3.1.43, 2.5.1.19 | E | Catalyzes the transfer of the enolpyruvyl moiety of phosphoenolpyruvate (PEP) to the 5-hydroxyl of shikimate-3- phosphate (S3P) to produce enolpyruvyl shikimate-3-phosphate and inorganic phosphate | |
JCGKACBB_02648 | 8.5e-93 | |||||
JCGKACBB_02649 | 5.1e-215 | aroC | 4.2.3.5 | E | Catalyzes the anti-1,4-elimination of the C-3 phosphate and the C-6 proR hydrogen from 5-enolpyruvylshikimate-3-phosphate (EPSP) to yield chorismate, which is the branch point compound that serves as the starting substrate for the three terminal pathways of aromatic amino acid biosynthesis. This reaction introduces a second double bond into the aromatic ring system | |
JCGKACBB_02650 | 6.7e-265 | ydiN | 5.4.99.5 | G | Major Facilitator | |
JCGKACBB_02651 | 4.6e-50 | rbfA | J | One of several proteins that assist in the late maturation steps of the functional core of the 30S ribosomal subunit. Associates with free 30S ribosomal subunits (but not with 30S subunits that are part of 70S ribosomes or polysomes). Required for efficient processing of 16S rRNA. May interact with the 5'-terminal helix region of 16S rRNA | ||
JCGKACBB_02652 | 0.0 | infB | J | One of the essential components for the initiation of protein synthesis. Protects formylmethionyl-tRNA from spontaneous hydrolysis and promotes its binding to the 30S ribosomal subunits. Also involved in the hydrolysis of GTP during the formation of the 70S ribosomal complex | ||
JCGKACBB_02653 | 1.4e-47 | ylxQ | J | ribosomal protein | ||
JCGKACBB_02654 | 9.5e-49 | ylxR | K | Protein of unknown function (DUF448) | ||
JCGKACBB_02655 | 3.3e-217 | nusA | K | Participates in both transcription termination and antitermination | ||
JCGKACBB_02656 | 4.2e-83 | rimP | J | Required for maturation of 30S ribosomal subunits | ||
JCGKACBB_02657 | 0.0 | polC | 2.7.7.7 | L | Required for replicative DNA synthesis. This DNA polymerase also exhibits 3' to 5' exonuclease activity | |
JCGKACBB_02658 | 0.0 | proS | 6.1.1.15 | J | Catalyzes the attachment of proline to tRNA(Pro) in a two-step reaction proline is first activated by ATP to form Pro- AMP and then transferred to the acceptor end of tRNA(Pro). As ProRS can inadvertently accommodate and process non-cognate amino acids such as alanine and cysteine, to avoid such errors it has two additional distinct editing activities against alanine. One activity is designated as 'pretransfer' editing and involves the tRNA(Pro)-independent hydrolysis of activated Ala-AMP. The other activity is designated 'posttransfer' editing and involves deacylation of mischarged Ala-tRNA(Pro). The misacylated Cys- tRNA(Pro) is not edited by ProRS | |
JCGKACBB_02659 | 9.5e-231 | rseP | 3.4.21.107, 3.4.21.116 | M | zinc metalloprotease | |
JCGKACBB_02660 | 8.4e-137 | cdsA | 2.7.7.41 | I | Belongs to the CDS family | |
JCGKACBB_02661 | 1.8e-147 | uppS | 2.5.1.31 | H | Catalyzes the condensation of isopentenyl diphosphate (IPP) with allylic pyrophosphates generating different type of terpenoids | |
JCGKACBB_02662 | 5.5e-82 | frr | J | Responsible for the release of ribosomes from messenger RNA at the termination of protein biosynthesis. May increase the efficiency of translation by recycling ribosomes from one round of translation to another | ||
JCGKACBB_02663 | 2.2e-128 | pyrH | 2.7.4.22 | F | Catalyzes the reversible phosphorylation of UMP to UDP | |
JCGKACBB_02664 | 1e-151 | tsf | J | Associates with the EF-Tu.GDP complex and induces the exchange of GDP to GTP. It remains bound to the aminoacyl-tRNA.EF- Tu.GTP complex up to the GTP hydrolysis stage on the ribosome | ||
JCGKACBB_02665 | 6.5e-145 | rpsB | J | Belongs to the universal ribosomal protein uS2 family | ||
JCGKACBB_02666 | 4.7e-134 | S | Haloacid dehalogenase-like hydrolase | |||
JCGKACBB_02667 | 2.3e-187 | ldhA | 1.1.1.28 | CH | Belongs to the D-isomer specific 2-hydroxyacid dehydrogenase family | |
JCGKACBB_02668 | 3.5e-38 | yazA | L | GIY-YIG catalytic domain protein | ||
JCGKACBB_02669 | 2.1e-132 | yabB | 2.1.1.223 | L | Methyltransferase small domain | |
JCGKACBB_02670 | 6.4e-119 | plsC | 2.3.1.51 | I | Acyltransferase | |
JCGKACBB_02671 | 4.3e-33 | yneF | S | Uncharacterised protein family (UPF0154) | ||
JCGKACBB_02672 | 2.9e-36 | ynzC | S | UPF0291 protein | ||
JCGKACBB_02673 | 5.6e-115 | lexA | 3.4.21.88 | K | Represses a number of genes involved in the response to DNA damage (SOS response), including recA and lexA. In the presence of single-stranded DNA, RecA interacts with LexA causing an autocatalytic cleavage which disrupts the DNA-binding part of LexA, leading to derepression of the SOS regulon and eventually DNA repair | |
JCGKACBB_02674 | 3.7e-87 | |||||
JCGKACBB_02675 | 1.8e-215 | mvaS | 2.3.3.10 | I | Hydroxymethylglutaryl-CoA synthase | |
JCGKACBB_02676 | 1e-74 | |||||
JCGKACBB_02677 | 3e-66 | |||||
JCGKACBB_02678 | 1.5e-177 | csbB | 2.4.1.83 | GT2 | M | Glycosyltransferase like family 2 |
JCGKACBB_02679 | 4.6e-100 | L | Helix-turn-helix domain | |||
JCGKACBB_02680 | 4.7e-221 | lytR5 | K | Cell envelope-related transcriptional attenuator domain | ||
JCGKACBB_02681 | 7.9e-143 | P | ATPases associated with a variety of cellular activities | |||
JCGKACBB_02682 | 1.4e-257 | opuAB | P | Binding-protein-dependent transport system inner membrane component | ||
JCGKACBB_02683 | 2.2e-229 | rodA | D | Cell cycle protein | ||
JCGKACBB_02685 | 3.5e-32 | hol | S | Bacteriophage holin | ||
JCGKACBB_02686 | 3.3e-37 | S | Haemolysin XhlA | |||
JCGKACBB_02687 | 3.4e-206 | lys | M | Glycosyl hydrolases family 25 | ||
JCGKACBB_02688 | 2.9e-23 | |||||
JCGKACBB_02689 | 8e-77 | |||||
JCGKACBB_02692 | 1.4e-221 | |||||
JCGKACBB_02693 | 0.0 | S | Phage minor structural protein | |||
JCGKACBB_02694 | 0.0 | S | Phage tail protein | |||
JCGKACBB_02695 | 0.0 | S | peptidoglycan catabolic process | |||
JCGKACBB_02698 | 1.4e-70 | S | Phage tail tube protein | |||
JCGKACBB_02699 | 9.1e-28 | |||||
JCGKACBB_02700 | 3.8e-38 | |||||
JCGKACBB_02701 | 7.5e-24 | S | Phage head-tail joining protein | |||
JCGKACBB_02702 | 7.5e-50 | S | Phage gp6-like head-tail connector protein | |||
JCGKACBB_02703 | 1.9e-212 | S | peptidase activity | |||
JCGKACBB_02704 | 9.3e-125 | clpP | 3.4.21.92 | OU | Belongs to the peptidase S14 family | |
JCGKACBB_02705 | 1.1e-223 | S | Phage portal protein | |||
JCGKACBB_02706 | 2.8e-25 | S | Protein of unknown function (DUF1056) | |||
JCGKACBB_02707 | 0.0 | S | Phage Terminase | |||
JCGKACBB_02708 | 4.2e-80 | S | Phage terminase, small subunit | |||
JCGKACBB_02709 | 2.6e-86 | L | HNH nucleases | |||
JCGKACBB_02710 | 5.1e-13 | V | HNH nucleases | |||
JCGKACBB_02712 | 1.6e-63 | S | Transcriptional regulator, RinA family | |||
JCGKACBB_02713 | 1.2e-31 | |||||
JCGKACBB_02714 | 9.7e-39 | |||||
JCGKACBB_02715 | 1.2e-30 | S | YopX protein | |||
JCGKACBB_02719 | 9.4e-23 | |||||
JCGKACBB_02721 | 1.2e-163 | dnaC | L | IstB-like ATP binding protein | ||
JCGKACBB_02722 | 3.5e-69 | L | DnaD domain protein | |||
JCGKACBB_02725 | 3e-15 | |||||
JCGKACBB_02729 | 5.6e-10 | |||||
JCGKACBB_02732 | 3.1e-69 | S | DNA binding | |||
JCGKACBB_02734 | 9.8e-18 | ps115 | K | Cro/C1-type HTH DNA-binding domain | ||
JCGKACBB_02737 | 1.2e-41 | S | Membrane | |||
JCGKACBB_02744 | 1.1e-56 | L | Belongs to the 'phage' integrase family | |||
JCGKACBB_02745 | 1.6e-31 | |||||
JCGKACBB_02746 | 2.5e-138 | Q | Methyltransferase | |||
JCGKACBB_02747 | 8.5e-57 | ybjQ | S | Belongs to the UPF0145 family | ||
JCGKACBB_02748 | 1.5e-209 | EGP | Major facilitator Superfamily | |||
JCGKACBB_02749 | 1.5e-98 | K | Helix-turn-helix domain | |||
JCGKACBB_02750 | 2.9e-93 | apt | 2.4.2.22, 2.4.2.7 | F | Catalyzes a salvage reaction resulting in the formation of AMP, that is energically less costly than de novo synthesis | |
JCGKACBB_02751 | 0.0 | recJ | L | Single-stranded-DNA-specific exonuclease RecJ | ||
JCGKACBB_02752 | 2e-50 | yrvD | S | Lipopolysaccharide assembly protein A domain | ||
JCGKACBB_02753 | 4.8e-140 | XK27_05435 | 1.1.1.100 | S | Belongs to the short-chain dehydrogenases reductases (SDR) family | |
JCGKACBB_02754 | 8.1e-179 | rnz | 3.1.26.11 | J | Zinc phosphodiesterase, which displays some tRNA 3'- processing endonuclease activity. Probably involved in tRNA maturation, by removing a 3'-trailer from precursor tRNA | |
JCGKACBB_02755 | 5.5e-46 | |||||
JCGKACBB_02756 | 2.4e-245 | obg | S | An essential GTPase which binds GTP, GDP and possibly (p)ppGpp with moderate affinity, with high nucleotide exchange rates and a fairly low GTP hydrolysis rate. Plays a role in control of the cell cycle, stress response, ribosome biogenesis and in those bacteria that undergo differentiation, in morphogenesis control | ||
JCGKACBB_02757 | 1.5e-135 | fruR | K | DeoR C terminal sensor domain | ||
JCGKACBB_02758 | 2.3e-170 | pfkB | 2.7.1.11, 2.7.1.56 | H | Belongs to the carbohydrate kinase PfkB family. LacC subfamily | |
JCGKACBB_02759 | 6.7e-292 | fruA | 2.7.1.194, 2.7.1.200, 2.7.1.202 | GT | Phosphotransferase System | |
JCGKACBB_02760 | 1e-251 | cpdA | S | Calcineurin-like phosphoesterase | ||
JCGKACBB_02761 | 4.5e-261 | cps4J | S | Polysaccharide biosynthesis protein | ||
JCGKACBB_02762 | 2.3e-176 | cps4I | M | Glycosyltransferase like family 2 | ||
JCGKACBB_02763 | 1.7e-232 | |||||
JCGKACBB_02764 | 1.5e-189 | cps4G | M | Glycosyltransferase Family 4 | ||
JCGKACBB_02765 | 6.1e-202 | cps4F | 2.4.1.21, 2.4.1.306 | GT4,GT5 | M | Glycosyl transferases group 1 |
JCGKACBB_02766 | 1.8e-127 | tuaA | M | Bacterial sugar transferase | ||
JCGKACBB_02767 | 3.6e-179 | cps4D | 5.1.3.2 | M | RmlD substrate binding domain | |
JCGKACBB_02768 | 3.5e-146 | ywqE | 3.1.3.48 | GM | PHP domain protein | |
JCGKACBB_02769 | 2.8e-123 | ywqD | 2.7.10.1 | D | Capsular exopolysaccharide family | |
JCGKACBB_02770 | 2.9e-126 | epsB | M | biosynthesis protein | ||
JCGKACBB_02771 | 0.0 | uvrC | L | The UvrABC repair system catalyzes the recognition and processing of DNA lesions. UvrC both incises the 5' and 3' sides of the lesion. The N-terminal half is responsible for the 3' incision and the C-terminal half is responsible for the 5' incision | ||
JCGKACBB_02772 | 1.3e-134 | glnQ | 3.6.3.21 | E | ABC transporter, ATP-binding protein | |
JCGKACBB_02773 | 9.2e-270 | glnPH2 | P | ABC transporter permease | ||
JCGKACBB_02774 | 4.3e-22 | |||||
JCGKACBB_02775 | 9.9e-73 | S | Iron-sulphur cluster biosynthesis | |||
JCGKACBB_02776 | 2.2e-49 | MA20_27270 | S | mazG nucleotide pyrophosphohydrolase | ||
JCGKACBB_02777 | 5.1e-110 | engB | D | Necessary for normal cell division and for the maintenance of normal septation | ||
JCGKACBB_02778 | 3.3e-236 | clpX | O | ATP-dependent specificity component of the Clp protease. It directs the protease to specific substrates. Can perform chaperone functions in the absence of ClpP | ||
JCGKACBB_02779 | 1.4e-213 | tig | D | Involved in protein export. Acts as a chaperone by maintaining the newly synthesized protein in an open conformation. Functions as a peptidyl-prolyl cis-trans isomerase | ||
JCGKACBB_02780 | 6.1e-224 | tuf | J | This protein promotes the GTP-dependent binding of aminoacyl-tRNA to the A-site of ribosomes during protein biosynthesis | ||
JCGKACBB_02781 | 1.1e-159 | S | Tetratricopeptide repeat | |||
JCGKACBB_02782 | 0.0 | rnjB | J | An RNase that has 5'-3' exonuclease and possibly endonuclease activity. Involved in maturation of rRNA and in some organisms also mRNA maturation and or decay | ||
JCGKACBB_02783 | 6.2e-157 | dapA | 4.3.3.7 | E | Catalyzes the condensation of (S)-aspartate-beta- semialdehyde (S)-ASA and pyruvate to 4-hydroxy- tetrahydrodipicolinate (HTPA) | |
JCGKACBB_02784 | 2.8e-192 | mdtG | EGP | Major Facilitator Superfamily | ||
JCGKACBB_02785 | 6e-42 | rpsO | J | Forms an intersubunit bridge (bridge B4) with the 23S rRNA of the 50S subunit in the ribosome | ||
JCGKACBB_02786 | 1.5e-34 | rpsT | J | Binds directly to 16S ribosomal RNA | ||
JCGKACBB_02787 | 1.1e-187 | holA | 2.7.7.7 | L | DNA polymerase III delta subunit | |
JCGKACBB_02788 | 2.6e-100 | comEC | S | Competence protein ComEC | ||
JCGKACBB_02789 | 3.5e-299 | comEC | S | Competence protein ComEC | ||
JCGKACBB_02790 | 6.4e-79 | comEB | 3.5.4.12 | F | ComE operon protein 2 | |
JCGKACBB_02791 | 2.1e-126 | comEA | L | Competence protein ComEA | ||
JCGKACBB_02792 | 4.8e-196 | ylbL | T | Belongs to the peptidase S16 family | ||
JCGKACBB_02793 | 2.1e-85 | coaD | 2.7.7.3 | H | Reversibly transfers an adenylyl group from ATP to 4'- phosphopantetheine, yielding dephospho-CoA (dPCoA) and pyrophosphate | |
JCGKACBB_02794 | 8.2e-102 | rsmD | 2.1.1.171 | L | RNA methyltransferase, RsmD family | |
JCGKACBB_02795 | 1.5e-49 | ylbG | S | Uncharacterized protein conserved in bacteria (DUF2129) | ||
JCGKACBB_02796 | 0.0 | pyc | 6.4.1.1 | C | Catalyzes a 2-step reaction, involving the ATP-dependent carboxylation of the covalently attached biotin in the first step and the transfer of the carboxyl group to pyruvate in the second | |
JCGKACBB_02797 | 2.4e-204 | ftsW | D | Belongs to the SEDS family | ||
JCGKACBB_02798 | 1.3e-285 | |||||
JCGKACBB_02799 | 5.1e-259 | ica2 | GT2 | M | Glycosyl transferase family group 2 | |
JCGKACBB_02800 | 1.2e-103 | |||||
JCGKACBB_02801 | 8.1e-117 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_02802 | 0.0 | lepA | M | Required for accurate and efficient protein synthesis under certain stress conditions. May act as a fidelity factor of the translation reaction, by catalyzing a one-codon backward translocation of tRNAs on improperly translocated ribosomes. Back- translocation proceeds from a post-translocation (POST) complex to a pre-translocation (PRE) complex, thus giving elongation factor G a second chance to translocate the tRNAs correctly. Binds to ribosomes in a GTP-dependent manner | ||
JCGKACBB_02803 | 5.1e-161 | P | Sodium:sulfate symporter transmembrane region | |||
JCGKACBB_02804 | 1.8e-125 | mcyI | 1.1.1.399, 1.1.1.95 | EH | D-isomer specific 2-hydroxyacid dehydrogenase, catalytic domain | |
JCGKACBB_02805 | 1.1e-71 | K | LysR substrate binding domain | |||
JCGKACBB_02806 | 2.1e-217 | gudD | 4.2.1.40 | M | Mandelate racemase / muconate lactonizing enzyme, C-terminal domain | |
JCGKACBB_02807 | 2.1e-48 | |||||
JCGKACBB_02808 | 3.4e-191 | nlhH_1 | I | alpha/beta hydrolase fold | ||
JCGKACBB_02809 | 1e-254 | xylP2 | G | symporter | ||
JCGKACBB_02810 | 5.2e-281 | murE | 6.3.2.10, 6.3.2.13, 6.3.2.7 | M | Catalyzes the addition of an amino acid to the nucleotide precursor UDP-N-acetylmuramoyl-L-alanyl-D-glutamate (UMAG) in the biosynthesis of bacterial cell-wall peptidoglycan | |
JCGKACBB_02811 | 1.6e-219 | dapG | 1.1.1.3, 2.7.2.4 | E | Amino acid kinase family | |
JCGKACBB_02812 | 0.0 | asnB | 6.3.5.4 | E | Asparagine synthase | |
JCGKACBB_02813 | 7.2e-50 | azlD | S | Branched-chain amino acid transport protein (AzlD) | ||
JCGKACBB_02814 | 2.4e-119 | azlC | E | branched-chain amino acid | ||
JCGKACBB_02815 | 4.4e-35 | yyaN | K | MerR HTH family regulatory protein | ||
JCGKACBB_02816 | 2e-120 | sirR | K | iron dependent repressor | ||
JCGKACBB_02817 | 1.3e-57 | |||||
JCGKACBB_02818 | 1.7e-84 | merR | K | MerR HTH family regulatory protein | ||
JCGKACBB_02819 | 7e-270 | lmrB | EGP | Major facilitator Superfamily | ||
JCGKACBB_02820 | 1.4e-117 | S | Domain of unknown function (DUF4811) | |||
JCGKACBB_02821 | 2.9e-106 | |||||
JCGKACBB_02822 | 7.9e-41 | |||||
JCGKACBB_02823 | 1.9e-67 | tspO | T | TspO/MBR family | ||
JCGKACBB_02824 | 6.3e-76 | uspA | T | Belongs to the universal stress protein A family | ||
JCGKACBB_02825 | 1e-65 | S | Protein of unknown function (DUF805) | |||
JCGKACBB_02826 | 7e-164 | yegS | 2.7.1.107 | I | Diacylglycerol kinase catalytic domain | |
JCGKACBB_02827 | 3.7e-125 | L | Transposase | |||
JCGKACBB_02828 | 3.6e-54 | L | Transposase | |||
JCGKACBB_02829 | 1.6e-99 | gbuC | E | glycine betaine | ||
JCGKACBB_02830 | 1.5e-112 | proW | E | glycine betaine | ||
JCGKACBB_02831 | 9.6e-185 | gbuA | 3.6.1.1, 3.6.3.32 | E | glycine betaine | |
JCGKACBB_02832 | 6.5e-187 | L | Helix-turn-helix domain | |||
JCGKACBB_02833 | 6.9e-146 | L | COG3547 Transposase and inactivated derivatives | |||
JCGKACBB_02834 | 2.5e-289 | clcA | P | chloride | ||
JCGKACBB_02835 | 1.1e-193 | napA | P | Belongs to the monovalent cation proton antiporter 2 (CPA2) transporter (TC 2.A.37) family | ||
JCGKACBB_02836 | 1.8e-169 | scrK | 2.7.1.2, 2.7.1.4 | GK | ROK family | |
JCGKACBB_02837 | 9.4e-291 | rafA | 3.2.1.22 | G | alpha-galactosidase | |
JCGKACBB_02838 | 1.4e-121 | rafA | 3.2.1.22 | G | alpha-galactosidase | |
JCGKACBB_02839 | 0.0 | scrA | 2.7.1.193, 2.7.1.211, 5.3.1.1 | G | phosphotransferase system | |
JCGKACBB_02840 | 1.5e-304 | scrB | 3.2.1.26 | GH32 | G | invertase |
JCGKACBB_02841 | 9.1e-173 | scrR | K | Transcriptional regulator, LacI family | ||
JCGKACBB_02842 | 0.0 | 3.2.1.10, 3.2.1.20 | GH13,GH31 | G | Alpha amylase, catalytic domain protein | |
JCGKACBB_02843 | 2.5e-164 | 3.5.1.10 | C | nadph quinone reductase | ||
JCGKACBB_02844 | 1.1e-217 | nhaC | C | Na H antiporter NhaC | ||
JCGKACBB_02845 | 0.0 | 3.2.1.10, 3.2.1.20 | GH13,GH31 | G | Alpha amylase, catalytic domain protein | |
JCGKACBB_02846 | 2.9e-165 | mleR | K | LysR substrate binding domain | ||
JCGKACBB_02847 | 2.8e-110 | 3.6.4.13 | M | domain protein | ||
JCGKACBB_02848 | 1.1e-228 | 3.6.4.13 | M | domain protein | ||
JCGKACBB_02850 | 7.8e-157 | hipB | K | Helix-turn-helix | ||
JCGKACBB_02851 | 0.0 | oppA | E | ABC transporter, substratebinding protein | ||
JCGKACBB_02852 | 7.3e-308 | oppA | E | ABC transporter, substratebinding protein | ||
JCGKACBB_02853 | 1.7e-78 | yiaC | K | Acetyltransferase (GNAT) domain | ||
JCGKACBB_02854 | 1.1e-214 | serA | 1.1.1.399, 1.1.1.95 | EH | Belongs to the D-isomer specific 2-hydroxyacid dehydrogenase family | |
JCGKACBB_02855 | 7e-203 | serC | 2.6.1.52 | E | Catalyzes the reversible conversion of 3- phosphohydroxypyruvate to phosphoserine and of 3-hydroxy-2-oxo-4- phosphonooxybutanoate to phosphohydroxythreonine | |
JCGKACBB_02856 | 1.5e-112 | pgm1 | G | phosphoglycerate mutase | ||
JCGKACBB_02857 | 1e-179 | yghZ | C | Aldo keto reductase family protein | ||
JCGKACBB_02858 | 4.9e-34 | |||||
JCGKACBB_02859 | 6.3e-60 | S | Domain of unknown function (DU1801) | |||
JCGKACBB_02860 | 1.5e-163 | FbpA | K | Domain of unknown function (DUF814) | ||
JCGKACBB_02861 | 1e-218 | ackA | 2.7.2.1 | F | Catalyzes the formation of acetyl phosphate from acetate and ATP. Can also catalyze the reverse reaction | |
JCGKACBB_02863 | 3.5e-58 | crcB | U | Important for reducing fluoride concentration in the cell, thus reducing its toxicity | ||
JCGKACBB_02864 | 8.5e-50 | crcB | D | Important for reducing fluoride concentration in the cell, thus reducing its toxicity | ||
JCGKACBB_02865 | 1.3e-258 | S | ATPases associated with a variety of cellular activities | |||
JCGKACBB_02866 | 2.6e-115 | P | cobalt transport | |||
JCGKACBB_02867 | 4.1e-259 | P | ABC transporter | |||
JCGKACBB_02868 | 3.1e-101 | S | ABC transporter permease | |||
JCGKACBB_02869 | 1.5e-88 | btuE | 1.11.1.9 | O | Belongs to the glutathione peroxidase family | |
JCGKACBB_02870 | 1.4e-158 | dkgB | S | reductase | ||
JCGKACBB_02871 | 1.4e-78 | greA | K | Necessary for efficient RNA polymerase transcription elongation past template-encoded arresting sites. The arresting sites in DNA have the property of trapping a certain fraction of elongating RNA polymerases that pass through, resulting in locked ternary complexes. Cleavage of the nascent transcript by cleavage factors such as GreA or GreB allows the resumption of elongation from the new 3'terminus. GreA releases sequences of 2 to 3 nucleotides | ||
JCGKACBB_02872 | 1e-69 | |||||
JCGKACBB_02873 | 7.4e-132 | nagB | 3.1.1.31, 3.5.99.6 | G | Catalyzes the reversible isomerization-deamination of glucosamine 6-phosphate (GlcN6P) to form fructose 6-phosphate (Fru6P) and ammonium ion | |
JCGKACBB_02874 | 2.7e-174 | P | Major Facilitator Superfamily | |||
JCGKACBB_02875 | 9.2e-225 | 1.3.5.4 | C | FAD dependent oxidoreductase | ||
JCGKACBB_02876 | 6.2e-99 | K | Helix-turn-helix domain | |||
JCGKACBB_02877 | 1.7e-276 | pipD | E | Dipeptidase | ||
JCGKACBB_02878 | 0.0 | mtlA | 2.7.1.197 | G | PTS system, Lactose/Cellobiose specific IIB subunit | |
JCGKACBB_02879 | 0.0 | mtlR | K | Mga helix-turn-helix domain | ||
JCGKACBB_02880 | 1.7e-78 | mtlF | 2.7.1.197 | G | catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane | |
JCGKACBB_02881 | 9.5e-222 | mtlD | 1.1.1.17 | C | mannitol-1-phosphate 5-dehydrogenase activity | |
JCGKACBB_02882 | 1.1e-74 | |||||
JCGKACBB_02883 | 1.4e-56 | trxA1 | O | Belongs to the thioredoxin family | ||
JCGKACBB_02884 | 1.2e-49 | |||||
JCGKACBB_02885 | 6.6e-96 | |||||
JCGKACBB_02886 | 2e-62 | |||||
JCGKACBB_02887 | 3.9e-81 | ndk | 2.7.4.6 | F | Belongs to the NDK family | |
JCGKACBB_02888 | 7.6e-255 | S | Uncharacterized protein conserved in bacteria (DUF2252) | |||
JCGKACBB_02889 | 5.4e-98 | yieF | S | NADPH-dependent FMN reductase | ||
JCGKACBB_02890 | 3.6e-123 | K | helix_turn_helix gluconate operon transcriptional repressor | |||
JCGKACBB_02891 | 7.4e-228 | pts3C | G | The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active - transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane | ||
JCGKACBB_02892 | 4.7e-39 | |||||
JCGKACBB_02893 | 6.5e-19 | S | Bacterial protein of unknown function (DUF871) | |||
JCGKACBB_02894 | 3.8e-170 | S | Bacterial protein of unknown function (DUF871) | |||
JCGKACBB_02895 | 3e-212 | dho | 3.5.2.3 | S | Amidohydrolase family | |
JCGKACBB_02896 | 1.8e-201 | selA | 2.9.1.1 | H | L-seryl-tRNA selenium transferase | |
JCGKACBB_02897 | 1.7e-128 | 4.1.2.14 | S | KDGP aldolase | ||
JCGKACBB_02898 | 4.2e-189 | kdgK | 2.7.1.45 | G | pfkB family carbohydrate kinase | |
JCGKACBB_02899 | 1.2e-94 | cysE | 2.3.1.30 | E | Bacterial transferase hexapeptide (six repeats) | |
JCGKACBB_02900 | 2.8e-210 | metC | 2.5.1.48, 4.4.1.1, 4.4.1.2, 4.4.1.8 | E | cystathionine | |
JCGKACBB_02901 | 2.2e-165 | mccA | 2.5.1.134, 2.5.1.47 | E | Belongs to the cysteine synthase cystathionine beta- synthase family | |
JCGKACBB_02902 | 7.8e-159 | map | 3.4.11.18 | E | Methionine Aminopeptidase | |
JCGKACBB_02903 | 4.3e-141 | pnuC | H | nicotinamide mononucleotide transporter | ||
JCGKACBB_02904 | 7.3e-43 | S | Protein of unknown function (DUF2089) | |||
JCGKACBB_02905 | 1.7e-42 | |||||
JCGKACBB_02906 | 3.5e-129 | treR | K | UTRA | ||
JCGKACBB_02907 | 0.0 | treC | 3.2.1.93 | GH13 | G | Alpha amylase, catalytic domain protein |
JCGKACBB_02908 | 0.0 | treB | 2.7.1.193, 2.7.1.211 | G | phosphotransferase system | |
JCGKACBB_02909 | 0.0 | pts4ABC | 2.7.1.193, 2.7.1.211 | G | phosphotransferase system, EIIB | |
JCGKACBB_02910 | 7e-144 | |||||
JCGKACBB_02911 | 4.9e-72 | tagD | 2.7.7.15, 2.7.7.39 | IM | Glycerol-3-phosphate cytidylyltransferase | |
JCGKACBB_02912 | 7.6e-238 | tagF1 | 2.7.8.12, 2.7.8.45 | M | glycerophosphotransferase | |
JCGKACBB_02913 | 0.0 | tagF2 | 2.7.8.12 | H | CDP-Glycerol:Poly(glycerophosphate) glycerophosphotransferase | |
JCGKACBB_02914 | 5.9e-100 | ubiX | 2.5.1.129 | H | Flavin prenyltransferase that catalyzes the synthesis of the prenylated FMN cofactor (prenyl-FMN) for 4-hydroxy-3- polyprenylbenzoic acid decarboxylase UbiD. The prenyltransferase is metal-independent and links a dimethylallyl moiety from dimethylallyl monophosphate (DMAP) to the flavin N5 and C6 atoms of FMN | |
JCGKACBB_02915 | 8.7e-69 | |||||
JCGKACBB_02918 | 0.0 | kup | P | Transport of potassium into the cell | ||
JCGKACBB_02919 | 2.4e-58 | 2.6.1.2, 2.6.1.66 | K | Bacteriophage CI repressor helix-turn-helix domain | ||
JCGKACBB_02920 | 1.6e-63 | pepC | 3.4.22.40 | E | aminopeptidase | |
JCGKACBB_02921 | 3.9e-170 | pepC | 3.4.22.40 | E | aminopeptidase | |
JCGKACBB_02923 | 1.2e-108 | lepB | 3.4.21.89 | U | Belongs to the peptidase S26 family | |
JCGKACBB_02924 | 7.3e-302 | |||||
JCGKACBB_02926 | 1.2e-159 | S | Bacterial protein of unknown function (DUF916) | |||
JCGKACBB_02927 | 6.9e-93 | S | Cell surface protein | |||
JCGKACBB_02928 | 0.0 | gidA | D | NAD-binding protein involved in the addition of a carboxymethylaminomethyl (cmnm) group at the wobble position (U34) of certain tRNAs, forming tRNA-cmnm(5)s(2)U34 | ||
JCGKACBB_02929 | 4.6e-255 | mnmE | S | Exhibits a very high intrinsic GTPase hydrolysis rate. Involved in the addition of a carboxymethylaminomethyl (cmnm) group at the wobble position (U34) of certain tRNAs, forming tRNA- cmnm(5)s(2)U34 | ||
JCGKACBB_02930 | 2.5e-130 | jag | S | R3H domain protein | ||
JCGKACBB_02931 | 3.5e-238 | Q | Imidazolonepropionase and related amidohydrolases | |||
JCGKACBB_02932 | 1e-309 | E | ABC transporter, substratebinding protein | |||
JCGKACBB_02933 | 1.8e-105 | yidC | U | Required for the insertion and or proper folding and or complex formation of integral membrane proteins into the membrane. Involved in integration of membrane proteins that insert both dependently and independently of the Sec translocase complex, as well as at least some lipoproteins | ||
JCGKACBB_02934 | 6.4e-57 | rnpA | 3.1.26.5 | J | RNaseP catalyzes the removal of the 5'-leader sequence from pre-tRNA to produce the mature 5'-terminus. It can also cleave other RNA substrates such as 4.5S RNA. The protein component plays an auxiliary but essential role in vivo by binding to the 5'-leader sequence and broadening the substrate specificity of the ribozyme | |
JCGKACBB_02935 | 9.1e-256 | dnaA | L | it binds specifically double-stranded DNA at a 9 bp consensus (dnaA box) 5'-TTATC CA A CA A-3'. DnaA binds to ATP and to acidic phospholipids | ||
JCGKACBB_02936 | 3.5e-208 | dnaN | 2.7.7.7 | L | Confers DNA tethering and processivity to DNA polymerases and other proteins. Acts as a clamp, forming a ring around DNA (a reaction catalyzed by the clamp-loading complex) which diffuses in an ATP-independent manner freely and bidirectionally along dsDNA. Initially characterized for its ability to contact the catalytic subunit of DNA polymerase III (Pol III), a complex, multichain enzyme responsible for most of the replicative synthesis in bacteria | |
JCGKACBB_02937 | 5e-37 | yaaA | S | S4 domain protein YaaA | ||
JCGKACBB_02938 | 1.9e-206 | recF | L | it is required for DNA replication and normal SOS inducibility. RecF binds preferentially to single-stranded, linear DNA. It also seems to bind ATP | ||
JCGKACBB_02939 | 0.0 | gyrB | 5.99.1.3 | L | A type II topoisomerase that negatively supercoils closed circular double-stranded (ds) DNA in an ATP-dependent manner to modulate DNA topology and maintain chromosomes in an underwound state. Negative supercoiling favors strand separation, and DNA replication, transcription, recombination and repair, all of which involve strand separation. Also able to catalyze the interconversion of other topological isomers of dsDNA rings, including catenanes and knotted rings. Type II topoisomerases break and join 2 DNA strands simultaneously in an ATP-dependent manner | |
JCGKACBB_02940 | 0.0 | gyrA | 5.99.1.3 | L | A type II topoisomerase that negatively supercoils closed circular double-stranded (ds) DNA in an ATP-dependent manner to modulate DNA topology and maintain chromosomes in an underwound state. Negative supercoiling favors strand separation, and DNA replication, transcription, recombination and repair, all of which involve strand separation. Also able to catalyze the interconversion of other topological isomers of dsDNA rings, including catenanes and knotted rings. Type II topoisomerases break and join 2 DNA strands simultaneously in an ATP-dependent manner | |
JCGKACBB_02941 | 1.5e-49 | rpsF | J | Binds together with S18 to 16S ribosomal RNA | ||
JCGKACBB_02942 | 1e-59 | ssb | L | Plays an important role in DNA replication, recombination and repair. Binds to ssDNA and to an array of partner proteins to recruit them to their sites of action during DNA metabolism | ||
JCGKACBB_02943 | 6.2e-35 | rpsR | J | Binds as a heterodimer with protein S6 to the central domain of the 16S rRNA, where it helps stabilize the platform of the 30S subunit | ||
JCGKACBB_02944 | 0.0 | yybT | T | signaling protein consisting of a modified GGDEF domain and a DHH domain | ||
JCGKACBB_02945 | 1.4e-67 | rplI | J | Binds to the 23S rRNA | ||
JCGKACBB_02946 | 7.8e-242 | dnaB | 3.6.4.12 | L | Participates in initiation and elongation during chromosome replication | |
JCGKACBB_02947 | 8.8e-226 | yttB | EGP | Major facilitator Superfamily | ||
JCGKACBB_02948 | 3.6e-143 | proB | 2.7.2.11 | F | Catalyzes the transfer of a phosphate group to glutamate to form L-glutamate 5-phosphate | |
JCGKACBB_02949 | 1.9e-228 | proA | 1.2.1.41 | E | Catalyzes the NADPH-dependent reduction of L-glutamate 5-phosphate into L-glutamate 5-semialdehyde and phosphate. The product spontaneously undergoes cyclization to form 1-pyrroline-5- carboxylate | |
JCGKACBB_02951 | 4.2e-276 | E | ABC transporter, substratebinding protein | |||
JCGKACBB_02952 | 0.0 | glgB | 2.4.1.18, 3.2.1.141, 3.2.1.20 | CBM48,GH13,GH31 | G | Catalyzes the formation of the alpha-1,6-glucosidic linkages in glycogen by scission of a 1,4-alpha-linked oligosaccharide from growing alpha-1,4-glucan chains and the subsequent attachment of the oligosaccharide to the alpha-1,6 position |
JCGKACBB_02953 | 1e-212 | glgC | 2.7.7.27 | H | Catalyzes the synthesis of ADP-glucose, a sugar donor used in elongation reactions on alpha-glucans | |
JCGKACBB_02954 | 6.3e-197 | glgD | 2.4.1.21, 2.7.7.27 | GT5 | G | Nucleotidyl transferase |
JCGKACBB_02955 | 6.8e-278 | glgA | 2.4.1.21 | GT5 | F | Synthesizes alpha-1,4-glucan chains using ADP-glucose |
JCGKACBB_02956 | 0.0 | glgP | 2.4.1.1 | GT35 | G | Phosphorylase is an important allosteric enzyme in carbohydrate metabolism. Enzymes from different sources differ in their regulatory mechanisms and in their natural substrates. However, all known phosphorylases share catalytic and structural properties |
JCGKACBB_02957 | 2e-85 | glgP | 2.4.1.1 | GT35 | G | Phosphorylase is an important allosteric enzyme in carbohydrate metabolism. Enzymes from different sources differ in their regulatory mechanisms and in their natural substrates. However, all known phosphorylases share catalytic and structural properties |
JCGKACBB_02958 | 0.0 | malQ | 2.4.1.25, 3.2.1.20, 3.2.1.41 | CBM48,GH13,GH31,GH77 | G | Belongs to the glycosyl hydrolase 13 family |
JCGKACBB_02960 | 1.1e-141 | S | haloacid dehalogenase-like hydrolase | |||
JCGKACBB_02961 | 1e-119 | pgmB | 2.4.1.64, 3.1.3.12, 3.2.1.28, 5.4.2.6 | GH37,GH65 | S | beta-phosphoglucomutase |
JCGKACBB_02962 | 0.0 | trePP | 2.4.1.216, 2.4.1.8, 3.1.3.12, 3.2.1.28 | GH37,GH65 | G | Glycosyl hydrolase family 65 central catalytic domain |
JCGKACBB_02963 | 1.3e-78 | S | Pyridoxamine 5'-phosphate oxidase | |||
JCGKACBB_02964 | 1.6e-31 | cspA | K | Cold shock protein domain | ||
JCGKACBB_02965 | 1.7e-37 | |||||
JCGKACBB_02967 | 6.2e-131 | K | response regulator | |||
JCGKACBB_02968 | 0.0 | vicK | 2.7.13.3 | T | Histidine kinase | |
JCGKACBB_02969 | 1.2e-244 | yycH | S | YycH protein | ||
JCGKACBB_02970 | 2.2e-151 | yycI | S | YycH protein | ||
JCGKACBB_02971 | 8.9e-158 | vicX | 3.1.26.11 | S | domain protein | |
JCGKACBB_02972 | 6.8e-173 | htrA | 3.4.21.107 | O | serine protease | |
JCGKACBB_02973 | 1.8e-81 | rlmH | 2.1.1.177 | J | Specifically methylates the pseudouridine at position 1915 (m3Psi1915) in 23S rRNA | |
JCGKACBB_02974 | 1.5e-95 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_02975 | 1.7e-260 | calB | 1.2.1.68 | C | Belongs to the aldehyde dehydrogenase family | |
JCGKACBB_02976 | 1.5e-167 | L | Cleaves both 3' and 5' ssDNA extremities of branched DNA structures | |||
JCGKACBB_02977 | 1.8e-121 | ung2 | 3.2.2.27 | L | Uracil-DNA glycosylase | |
JCGKACBB_02978 | 2.2e-119 | pnb | C | nitroreductase | ||
JCGKACBB_02979 | 5.2e-65 | queD | 4.1.2.50, 4.2.3.12 | H | 6-pyruvoyl tetrahydropterin synthase | |
JCGKACBB_02980 | 4.4e-115 | S | Elongation factor G-binding protein, N-terminal | |||
JCGKACBB_02981 | 0.0 | nqr | 1.3.5.4, 1.5.1.36 | C | FMN_bind | |
JCGKACBB_02982 | 5e-257 | P | Sodium:sulfate symporter transmembrane region | |||
JCGKACBB_02983 | 5.7e-158 | K | LysR family | |||
JCGKACBB_02984 | 1e-72 | C | FMN binding | |||
JCGKACBB_02985 | 1.1e-74 | arsC | 1.20.4.1 | T | Belongs to the low molecular weight phosphotyrosine protein phosphatase family | |
JCGKACBB_02986 | 2.3e-164 | ptlF | S | KR domain | ||
JCGKACBB_02987 | 6.4e-159 | adc | 4.1.1.4 | Q | Acetoacetate decarboxylase (ADC) | |
JCGKACBB_02988 | 1.3e-122 | drgA | C | Nitroreductase family | ||
JCGKACBB_02989 | 1.3e-290 | QT | PucR C-terminal helix-turn-helix domain | |||
JCGKACBB_02990 | 2.7e-120 | pgmB | 2.4.1.64, 3.1.3.12, 3.2.1.28, 5.4.2.6 | GH37,GH65 | S | beta-phosphoglucomutase |
JCGKACBB_02991 | 4.3e-194 | pva1 | 3.5.1.24 | M | Linear amide C-N hydrolase, choloylglycine hydrolase family protein | |
JCGKACBB_02992 | 6.2e-249 | yjjP | S | Putative threonine/serine exporter | ||
JCGKACBB_02993 | 2.4e-65 | S | pyridoxamine 5-phosphate | |||
JCGKACBB_02994 | 2.6e-194 | C | Aldo keto reductase family protein | |||
JCGKACBB_02995 | 1.4e-173 | galR | K | Transcriptional regulator | ||
JCGKACBB_02996 | 3.5e-199 | galM | 5.1.3.3 | G | Catalyzes the interconversion of alpha and beta anomers of maltose | |
JCGKACBB_02997 | 0.0 | lacS | G | Transporter | ||
JCGKACBB_02998 | 0.0 | rafA | 3.2.1.22 | G | alpha-galactosidase | |
JCGKACBB_02999 | 8.3e-187 | lacM | 3.2.1.23, 3.2.1.35, 3.2.1.51, 3.2.1.97 | GH101,GH29 | G | beta-galactosidase |
JCGKACBB_03000 | 0.0 | lacL | 3.2.1.23 | G | Belongs to the glycosyl hydrolase 2 family | |
JCGKACBB_03001 | 9.3e-225 | galK | 2.7.1.6 | F | Catalyzes the transfer of the gamma-phosphate of ATP to D-galactose to form alpha-D-galactose-1-phosphate (Gal-1-P) | |
JCGKACBB_03002 | 3.4e-191 | galE | 5.1.3.2 | M | Belongs to the NAD(P)-dependent epimerase dehydratase family | |
JCGKACBB_03003 | 1.3e-284 | galT | 2.7.7.12 | G | UDP-glucose--hexose-1-phosphate uridylyltransferase | |
JCGKACBB_03004 | 2e-183 | galR | K | Transcriptional regulator | ||
JCGKACBB_03005 | 1.6e-76 | K | Helix-turn-helix XRE-family like proteins | |||
JCGKACBB_03006 | 6.2e-108 | fic | D | Fic/DOC family | ||
JCGKACBB_03007 | 7.4e-183 | rhaR | K | helix_turn_helix, arabinose operon control protein | ||
JCGKACBB_03008 | 8.6e-232 | EGP | Major facilitator Superfamily | |||
JCGKACBB_03009 | 3e-303 | ram2 | 3.2.1.40 | G | Bacterial alpha-L-rhamnosidase 6 hairpin glycosidase domain | |
JCGKACBB_03010 | 8.1e-230 | mdtH | P | Sugar (and other) transporter | ||
JCGKACBB_03011 | 0.0 | 3.2.1.40 | G | Bacterial alpha-L-rhamnosidase 6 hairpin glycosidase domain | ||
JCGKACBB_03012 | 6.8e-179 | galR | K | Periplasmic binding protein-like domain | ||
JCGKACBB_03013 | 5.5e-234 | G | The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active - transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane | |||
JCGKACBB_03014 | 2.2e-68 | S | Domain of unknown function (DUF3284) | |||
JCGKACBB_03015 | 0.0 | rafA | 3.2.1.22 | G | alpha-galactosidase | |
JCGKACBB_03016 | 0.0 | lacA | 3.2.1.23 | G | -beta-galactosidase | |
JCGKACBB_03017 | 1.3e-249 | brnQ | U | Component of the transport system for branched-chain amino acids | ||
JCGKACBB_03018 | 0.0 | ubiB | S | ABC1 family | ||
JCGKACBB_03019 | 1.8e-108 | aqpZ | U | Belongs to the MIP aquaporin (TC 1.A.8) family | ||
JCGKACBB_03020 | 9.2e-220 | 3.1.3.1 | S | associated with various cellular activities | ||
JCGKACBB_03021 | 1.4e-248 | S | Putative metallopeptidase domain | |||
JCGKACBB_03022 | 1.5e-49 | |||||
JCGKACBB_03023 | 7.7e-103 | K | Bacterial regulatory proteins, tetR family | |||
JCGKACBB_03024 | 4.6e-45 | |||||
JCGKACBB_03025 | 2.3e-99 | S | WxL domain surface cell wall-binding | |||
JCGKACBB_03026 | 1.9e-116 | S | WxL domain surface cell wall-binding | |||
JCGKACBB_03027 | 3e-163 | S | Cell surface protein | |||
JCGKACBB_03028 | 0.0 | XK27_00720 | S | Leucine-rich repeat (LRR) protein | ||
JCGKACBB_03029 | 2.9e-262 | nox | C | NADH oxidase | ||
JCGKACBB_03030 | 1.9e-83 | yoaA | 2.3.1.128 | J | COG1670 acetyltransferases, including N-acetylases of ribosomal proteins | |
JCGKACBB_03031 | 0.0 | pepO | 3.4.24.71 | O | Peptidase family M13 | |
JCGKACBB_03032 | 3.3e-118 | 4.1.99.16, 4.2.3.22, 4.2.3.75 | K | Transcriptional regulator, Crp Fnr family | ||
JCGKACBB_03033 | 1.6e-32 | copZ | P | Heavy-metal-associated domain | ||
JCGKACBB_03034 | 6.6e-96 | dps | P | Belongs to the Dps family | ||
JCGKACBB_03035 | 1.6e-18 | |||||
JCGKACBB_03036 | 4.3e-40 | yrkD | S | Metal-sensitive transcriptional repressor | ||
JCGKACBB_03037 | 4.3e-55 | txlA | O | Thioredoxin-like domain | ||
JCGKACBB_03038 | 2.7e-137 | glpF | U | Belongs to the MIP aquaporin (TC 1.A.8) family | ||
JCGKACBB_03039 | 0.0 | cadA | 3.6.3.3, 3.6.3.5 | P | P-type ATPase | |
JCGKACBB_03040 | 1.1e-181 | celE | 3.2.1.4 | GH5,GH9 | E | GDSL-like Lipase/Acylhydrolase family |
JCGKACBB_03041 | 6.3e-128 | ydcF | S | Gram-negative-bacterium-type cell wall biogenesis | ||
JCGKACBB_03042 | 1.9e-135 | menG | 2.1.1.163, 2.1.1.201 | H | Methyltransferase required for the conversion of demethylmenaquinol (DMKH2) to menaquinol (MKH2) | |
JCGKACBB_03043 | 6.7e-181 | yfeX | P | Peroxidase | ||
JCGKACBB_03044 | 1.3e-102 | K | transcriptional regulator | |||
JCGKACBB_03045 | 1.7e-07 | 4.1.1.46 | S | metal-dependent hydrolase of the TIM-barrel fold | ||
JCGKACBB_03046 | 2.6e-65 | |||||
JCGKACBB_03048 | 1.6e-61 | |||||
JCGKACBB_03049 | 2.5e-53 | |||||
JCGKACBB_03050 | 2e-72 | mltD | CBM50 | M | PFAM NLP P60 protein | |
JCGKACBB_03051 | 2.8e-284 | gadB | 4.1.1.15 | E | Belongs to the group II decarboxylase family | |
JCGKACBB_03052 | 1.8e-27 | |||||
JCGKACBB_03053 | 0.0 | pckA | 4.1.1.49 | H | Phosphoenolpyruvate carboxykinase | |
JCGKACBB_03054 | 2.4e-116 | luxT | K | Bacterial regulatory proteins, tetR family | ||
JCGKACBB_03055 | 3.5e-88 | K | Winged helix DNA-binding domain | |||
JCGKACBB_03056 | 1.3e-136 | T | Response regulator containing CheY-like receiver domain and AraC-type DNA-binding domain | |||
JCGKACBB_03057 | 3.9e-129 | S | WxL domain surface cell wall-binding | |||
JCGKACBB_03058 | 2.9e-185 | S | Bacterial protein of unknown function (DUF916) | |||
JCGKACBB_03059 | 0.0 | |||||
JCGKACBB_03060 | 1.3e-160 | ypuA | S | Protein of unknown function (DUF1002) | ||
JCGKACBB_03061 | 5.5e-50 | yvlA | ||||
JCGKACBB_03062 | 1.2e-95 | K | transcriptional regulator | |||
JCGKACBB_03063 | 2.7e-91 | ymdB | S | Macro domain protein | ||
JCGKACBB_03064 | 1.1e-147 | uppP | 3.6.1.27 | V | Catalyzes the dephosphorylation of undecaprenyl diphosphate (UPP). Confers resistance to bacitracin | |
JCGKACBB_03065 | 7.5e-77 | S | Threonine/Serine exporter, ThrE | |||
JCGKACBB_03066 | 9.2e-133 | thrE | S | Putative threonine/serine exporter | ||
JCGKACBB_03067 | 5.2e-164 | yvgN | C | Aldo keto reductase | ||
JCGKACBB_03068 | 8.4e-152 | ywkB | S | Membrane transport protein | ||
JCGKACBB_03069 | 2.6e-310 | cpdB | 3.1.3.6, 3.1.4.16 | F | Belongs to the 5'-nucleotidase family | |
JCGKACBB_03070 | 0.0 | pacL3 | 3.6.3.8 | P | Cation transporter/ATPase, N-terminus | |
JCGKACBB_03071 | 5.9e-85 | 2.4.2.6 | F | Nucleoside 2-deoxyribosyltransferase | ||
JCGKACBB_03072 | 3.1e-78 | M1-874 | K | Domain of unknown function (DUF1836) | ||
JCGKACBB_03073 | 1.5e-180 | D | Alpha beta | |||
JCGKACBB_03074 | 1.7e-213 | mdtG | EGP | Major facilitator Superfamily | ||
JCGKACBB_03075 | 5.2e-251 | U | Belongs to the purine-cytosine permease (2.A.39) family | |||
JCGKACBB_03076 | 1.6e-64 | ycgX | S | Protein of unknown function (DUF1398) | ||
JCGKACBB_03077 | 4.2e-49 | |||||
JCGKACBB_03078 | 3.4e-25 | |||||
JCGKACBB_03079 | 1.5e-248 | lmrB | EGP | Major facilitator Superfamily | ||
JCGKACBB_03080 | 7.7e-73 | S | COG NOG18757 non supervised orthologous group | |||
JCGKACBB_03081 | 7.4e-40 | |||||
JCGKACBB_03082 | 4.7e-73 | copR | K | Copper transport repressor CopY TcrY | ||
JCGKACBB_03083 | 0.0 | copB | 3.6.3.4 | P | P-type ATPase | |
JCGKACBB_03084 | 1.3e-190 | pva2 | 3.5.1.24 | M | Linear amide C-N hydrolases, choloylglycine hydrolase family | |
JCGKACBB_03085 | 2e-110 | S | VIT family | |||
JCGKACBB_03086 | 1.8e-119 | S | membrane | |||
JCGKACBB_03087 | 7.7e-158 | EG | EamA-like transporter family | |||
JCGKACBB_03088 | 1.3e-81 | elaA | S | GNAT family | ||
JCGKACBB_03089 | 1.1e-115 | GM | NmrA-like family | |||
JCGKACBB_03090 | 2.1e-14 | |||||
JCGKACBB_03091 | 5.9e-55 | |||||
JCGKACBB_03092 | 2e-79 | hsp3 | O | Belongs to the small heat shock protein (HSP20) family | ||
JCGKACBB_03093 | 4.3e-86 | |||||
JCGKACBB_03094 | 9.2e-62 | |||||
JCGKACBB_03095 | 4.1e-214 | mutY | L | A G-specific adenine glycosylase | ||
JCGKACBB_03096 | 4e-53 | |||||
JCGKACBB_03097 | 1.7e-66 | yeaO | S | Protein of unknown function, DUF488 | ||
JCGKACBB_03098 | 7e-71 | spx4 | 1.20.4.1 | P | ArsC family | |
JCGKACBB_03099 | 5.4e-66 | K | Winged helix DNA-binding domain | |||
JCGKACBB_03100 | 1.2e-160 | azoB | GM | NmrA-like family | ||
JCGKACBB_03101 | 1.6e-85 | pgpA | 3.1.3.27 | I | Phosphatidylglycerophosphatase A | |
JCGKACBB_03102 | 3.7e-168 | S | Alpha/beta hydrolase of unknown function (DUF915) | |||
JCGKACBB_03103 | 3.1e-251 | cycA | E | Amino acid permease | ||
JCGKACBB_03104 | 1.2e-255 | nhaC | C | Na H antiporter NhaC | ||
JCGKACBB_03105 | 6.1e-27 | 3.2.2.10 | S | Belongs to the LOG family | ||
JCGKACBB_03106 | 2.8e-199 | frlB | M | SIS domain | ||
JCGKACBB_03107 | 0.0 | ade | 3.5.4.2 | F | Belongs to the metallo-dependent hydrolases superfamily. Adenine deaminase family | |
JCGKACBB_03108 | 5e-218 | S | Uncharacterized protein conserved in bacteria (DUF2325) | |||
JCGKACBB_03109 | 4.8e-125 | yyaQ | S | YjbR | ||
JCGKACBB_03111 | 0.0 | cadA | P | P-type ATPase | ||
JCGKACBB_03112 | 1.1e-306 | U | Belongs to the BCCT transporter (TC 2.A.15) family | |||
JCGKACBB_03113 | 2e-120 | E | GDSL-like Lipase/Acylhydrolase family | |||
JCGKACBB_03114 | 1.4e-77 | |||||
JCGKACBB_03115 | 4.5e-36 | S | Bacteriocin-protection, YdeI or OmpD-Associated | |||
JCGKACBB_03116 | 3.3e-97 | FG | HIT domain | |||
JCGKACBB_03117 | 1.7e-173 | S | Aldo keto reductase | |||
JCGKACBB_03118 | 5.1e-53 | yitW | S | Pfam:DUF59 | ||
JCGKACBB_03119 | 6.7e-161 | pflA | 1.97.1.4 | C | Activation of pyruvate formate-lyase under anaerobic conditions by generation of an organic free radical, using S- adenosylmethionine and reduced flavodoxin as cosubstrates to produce 5'-deoxy-adenosine | |
JCGKACBB_03120 | 0.0 | pflB | 2.3.1.54 | C | Pyruvate formate lyase-like | |
JCGKACBB_03121 | 2.1e-193 | blaA6 | V | Beta-lactamase | ||
JCGKACBB_03122 | 6.2e-96 | V | VanZ like family | |||
JCGKACBB_03123 | 3e-157 | L | Transposase | |||
JCGKACBB_03124 | 7.3e-258 | pepC | 3.4.22.40 | E | Peptidase C1-like family | |
JCGKACBB_03125 | 3.5e-123 | rpiA | 2.7.1.12, 5.3.1.6 | G | Catalyzes the reversible conversion of ribose-5- phosphate to ribulose 5-phosphate | |
JCGKACBB_03126 | 1.2e-51 | HA62_12640 | S | GCN5-related N-acetyl-transferase | ||
JCGKACBB_03127 | 3.6e-99 | dut | 3.6.1.23, 4.1.1.36, 6.3.2.5 | F | dUTP diphosphatase |
eggNOG-mapper v2 (Database: eggNOG v5.0, Jul. 2018 release)