ORF_ID | e_value | Gene_name | EC_number | CAZy | COGs | Description |
---|---|---|---|---|---|---|
CGOMMLME_00001 | 8.8e-84 | uspA | T | universal stress protein | ||
CGOMMLME_00003 | 1.2e-161 | phnD | P | Phosphonate ABC transporter | ||
CGOMMLME_00004 | 3e-139 | 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 | |
CGOMMLME_00005 | 1.4e-120 | phnE | 3.6.1.63 | P | Binding-protein-dependent transport system inner membrane component | |
CGOMMLME_00006 | 1.3e-148 | phnE | 3.6.1.63 | P | Binding-protein-dependent transport system inner membrane component | |
CGOMMLME_00007 | 1.4e-81 | L | COG3385 FOG Transposase and inactivated derivatives | |||
CGOMMLME_00008 | 3.6e-88 | nagA | 3.5.1.25 | G | Belongs to the metallo-dependent hydrolases superfamily. NagA family | |
CGOMMLME_00009 | 7.7e-10 | nagA | 3.5.1.25 | G | Belongs to the metallo-dependent hydrolases superfamily. NagA family | |
CGOMMLME_00010 | 2.9e-109 | nanE | 5.1.3.9 | G | Converts N-acetylmannosamine-6-phosphate (ManNAc-6-P) to N-acetylglucosamine-6-phosphate (GlcNAc-6-P) | |
CGOMMLME_00011 | 1.7e-36 | axe1 | 3.1.1.41 | Q | Acetyl xylan esterase (AXE1) | |
CGOMMLME_00012 | 1.1e-59 | axe1 | 3.1.1.41 | Q | Acetyl xylan esterase (AXE1) | |
CGOMMLME_00013 | 1e-220 | nanT | E | Belongs to the sodium solute symporter (SSF) (TC 2.A.21) family | ||
CGOMMLME_00014 | 1.9e-121 | napA | P | Belongs to the monovalent cation proton antiporter 2 (CPA2) transporter (TC 2.A.37) family | ||
CGOMMLME_00015 | 2.3e-56 | G | Xylose isomerase domain protein TIM barrel | |||
CGOMMLME_00016 | 8.4e-90 | nanK | GK | ROK family | ||
CGOMMLME_00017 | 2.9e-122 | nanA | 4.1.3.3, 4.3.3.7 | EM | Neu5Ac) to form pyruvate and N-acetylmannosamine (ManNAc) via a Schiff base intermediate | |
CGOMMLME_00018 | 3.7e-66 | K | Helix-turn-helix domain, rpiR family | |||
CGOMMLME_00019 | 7.1e-263 | E | ABC transporter, substratebinding protein | |||
CGOMMLME_00020 | 9.1e-10 | K | peptidyl-tyrosine sulfation | |||
CGOMMLME_00022 | 1.2e-128 | S | interspecies interaction between organisms | |||
CGOMMLME_00023 | 2.7e-34 | |||||
CGOMMLME_00026 | 1.9e-21 | |||||
CGOMMLME_00027 | 1.7e-147 | |||||
CGOMMLME_00028 | 1.5e-169 | |||||
CGOMMLME_00029 | 2e-263 | glnA | 6.3.1.2 | E | glutamine synthetase | |
CGOMMLME_00030 | 7.8e-222 | ynbB | 4.4.1.1 | P | aluminum resistance | |
CGOMMLME_00031 | 1e-168 | 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) | |
CGOMMLME_00032 | 1.5e-65 | yqhL | P | Rhodanese-like protein | ||
CGOMMLME_00033 | 9.7e-36 | yqgQ | S | Bacterial protein of unknown function (DUF910) | ||
CGOMMLME_00034 | 3.1e-119 | gluP | 3.4.21.105 | S | Rhomboid family | |
CGOMMLME_00035 | 2.1e-97 | ygfA | 6.3.3.2 | H | Belongs to the 5-formyltetrahydrofolate cyclo-ligase family | |
CGOMMLME_00036 | 1.2e-20 | rpmG | J | Belongs to the bacterial ribosomal protein bL33 family | ||
CGOMMLME_00037 | 0.0 | pbp2b | 3.4.16.4 | M | Penicillin-binding Protein | |
CGOMMLME_00038 | 0.0 | S | membrane | |||
CGOMMLME_00039 | 5.2e-170 | 2.7.1.59 | G | BadF/BadG/BcrA/BcrD ATPase family | ||
CGOMMLME_00040 | 1.3e-38 | S | RelB antitoxin | |||
CGOMMLME_00041 | 3.4e-51 | S | Bacterial toxin of type II toxin-antitoxin system, YafQ | |||
CGOMMLME_00042 | 6.7e-44 | 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 | ||
CGOMMLME_00043 | 6.7e-139 | fhuC | 3.6.3.34 | HP | abc transporter atp-binding protein | |
CGOMMLME_00044 | 9.5e-148 | isdF | U | Belongs to the binding-protein-dependent transport system permease family. FecCD subfamily | ||
CGOMMLME_00045 | 8.7e-159 | isdE | P | Periplasmic binding protein | ||
CGOMMLME_00046 | 6.3e-123 | M | Iron Transport-associated domain | |||
CGOMMLME_00047 | 3e-09 | isdH | M | Iron Transport-associated domain | ||
CGOMMLME_00048 | 8.4e-89 | |||||
CGOMMLME_00049 | 6.4e-113 | S | SLAP domain | |||
CGOMMLME_00050 | 1.2e-51 | L | PFAM RNA-directed DNA polymerase (Reverse transcriptase) | |||
CGOMMLME_00051 | 8.1e-126 | S | PAS domain | |||
CGOMMLME_00052 | 1.6e-11 | |||||
CGOMMLME_00053 | 2.7e-57 | |||||
CGOMMLME_00054 | 6.6e-56 | |||||
CGOMMLME_00055 | 4e-08 | |||||
CGOMMLME_00056 | 2.6e-61 | M | Glycosyl hydrolases family 25 | |||
CGOMMLME_00057 | 1.3e-61 | M | Glycosyl hydrolases family 25 | |||
CGOMMLME_00058 | 2.8e-211 | yfmL | 3.6.4.13 | L | DEAD DEAH box helicase | |
CGOMMLME_00059 | 4.7e-249 | 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 | ||
CGOMMLME_00061 | 2e-216 | mnaA | 5.1.3.14 | G | Belongs to the UDP-N-acetylglucosamine 2-epimerase family | |
CGOMMLME_00062 | 5.8e-85 | 2.3.1.128 | K | Acetyltransferase (GNAT) domain | ||
CGOMMLME_00063 | 2e-157 | S | reductase | |||
CGOMMLME_00064 | 9.3e-35 | |||||
CGOMMLME_00065 | 4.4e-103 | K | Putative DNA-binding domain | |||
CGOMMLME_00066 | 9.4e-269 | ywfO | S | Metal dependent phosphohydrolases with conserved 'HD' motif. | ||
CGOMMLME_00067 | 6.6e-44 | |||||
CGOMMLME_00068 | 1.6e-171 | 2.7.1.2 | GK | ROK family | ||
CGOMMLME_00069 | 4.8e-174 | 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) | |
CGOMMLME_00070 | 2e-295 | S | SLAP domain | |||
CGOMMLME_00071 | 5.3e-80 | |||||
CGOMMLME_00072 | 2.9e-15 | M | LysM domain protein | |||
CGOMMLME_00073 | 3.8e-48 | M | LysM domain protein | |||
CGOMMLME_00074 | 1.4e-86 | C | Aldo keto reductase | |||
CGOMMLME_00075 | 4.8e-181 | lacX | 5.1.3.3 | G | Aldose 1-epimerase | |
CGOMMLME_00076 | 8.2e-236 | 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 | ||
CGOMMLME_00077 | 1.9e-89 | hslV | 3.4.25.2 | O | Protease subunit of a proteasome-like degradation complex believed to be a general protein degrading machinery | |
CGOMMLME_00078 | 5e-141 | xerC | D | Phage integrase, N-terminal SAM-like domain | ||
CGOMMLME_00079 | 1.4e-248 | trmFO | 2.1.1.74 | J | Catalyzes the folate-dependent formation of 5-methyl- uridine at position 54 (M-5-U54) in all tRNAs | |
CGOMMLME_00080 | 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 | |
CGOMMLME_00081 | 5.8e-152 | dprA | LU | DNA protecting protein DprA | ||
CGOMMLME_00082 | 4.6e-132 | rnhB | 3.1.26.4 | L | Endonuclease that specifically degrades the RNA of RNA- DNA hybrids | |
CGOMMLME_00083 | 2.8e-154 | ylqF | S | Required for a late step of 50S ribosomal subunit assembly. Has GTPase activity | ||
CGOMMLME_00084 | 1.9e-94 | yjcE | P | Sodium proton antiporter | ||
CGOMMLME_00085 | 1.5e-40 | yjcE | P | Sodium proton antiporter | ||
CGOMMLME_00086 | 1.1e-66 | yjcE | P | NhaP-type Na H and K H | ||
CGOMMLME_00087 | 7.1e-36 | yozE | S | Belongs to the UPF0346 family | ||
CGOMMLME_00088 | 5.7e-147 | DegV | S | Uncharacterised protein, DegV family COG1307 | ||
CGOMMLME_00089 | 1.2e-107 | hlyIII | S | protein, hemolysin III | ||
CGOMMLME_00090 | 1.1e-225 | 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 | |
CGOMMLME_00091 | 4.6e-160 | ypjC | S | Uncharacterised 5xTM membrane BCR, YitT family COG1284 | ||
CGOMMLME_00092 | 4.3e-86 | 3.4.21.96 | S | SLAP domain | ||
CGOMMLME_00093 | 8.4e-128 | yagE | E | Amino acid permease | ||
CGOMMLME_00094 | 9.7e-65 | yagE | E | amino acid | ||
CGOMMLME_00095 | 3.2e-101 | 3.6.1.27 | I | Acid phosphatase homologues | ||
CGOMMLME_00096 | 2.5e-147 | yitS | S | Uncharacterised protein, DegV family COG1307 | ||
CGOMMLME_00097 | 5.8e-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 | |
CGOMMLME_00098 | 8.4e-56 | S | Domain of unknown function (DUF4767) | |||
CGOMMLME_00099 | 2.3e-168 | mtlA | 2.7.1.197 | G | PTS system, Lactose/Cellobiose specific IIB subunit | |
CGOMMLME_00100 | 2.1e-79 | mtlF | 2.7.1.197 | G | catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane | |
CGOMMLME_00101 | 1e-218 | mtlD | 1.1.1.17 | C | mannitol-1-phosphate 5-dehydrogenase activity | |
CGOMMLME_00102 | 3.2e-28 | 4.1.1.44 | S | Carboxymuconolactone decarboxylase family | ||
CGOMMLME_00103 | 2.3e-78 | 4.1.1.44 | S | Carboxymuconolactone decarboxylase family | ||
CGOMMLME_00104 | 2.1e-32 | |||||
CGOMMLME_00105 | 3.7e-59 | apfA | 2.7.7.72, 3.6.1.61 | F | Nudix hydrolase |
eggNOG-mapper v2 (Database: eggNOG v5.0, Jul. 2018 release)