Gordonia sp. 135: GKZ92_05000
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Entry
GKZ92_05000 CDS
T06305
Name
(GenBank) MBL fold metallo-hydrolase
KO
K02231
adenosylcobinamide kinase / adenosylcobinamide-phosphate guanylyltransferase [EC:
2.7.1.156
2.7.7.62
]
Organism
god
Gordonia sp. 135
Pathway
god00860
Porphyrin metabolism
god01100
Metabolic pathways
god01240
Biosynthesis of cofactors
Module
god_M00122
Cobalamin biosynthesis, cobyrinate a,c-diamide => cobalamin
Brite
KEGG Orthology (KO) [BR:
god00001
]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00860 Porphyrin metabolism
GKZ92_05000
Enzymes [BR:
god01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.1 Phosphotransferases with an alcohol group as acceptor
2.7.1.156 adenosylcobinamide kinase
GKZ92_05000
2.7.7 Nucleotidyltransferases
2.7.7.62 adenosylcobinamide-phosphate guanylyltransferase
GKZ92_05000
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GFIT
Motif
Pfam:
CobU
Lactamase_B_2
Lactamase_B
Anti-Pycsar_Apyc1
Lactamase_B_3
Motif
Other DBs
NCBI-ProteinID:
QGP87067
UniProt:
A0A6I5Z8Z9
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Position
1090148..1091479
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AA seq
443 aa
AA seq
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MKVTLLGTGAADGWPNAFCRCDSCSDARRRHDFRAQTAALVDNALMLDFGSDAPGSAVRH
GASLADVRHVLITHAHADHLAPQSLLFRSWVDGVGELELIGPADALDVCRPWVGPDAGVR
FTPVVAGDQVRVGDHDVRVLPARHQVFRDGDAVLYDVTGPDGMRLLWATDTGVWPDDWFD
AVTGAEFDAVFLEETFGDREDLSDGHLGLPGFATMVAALRGVGAVVDSTDVVAVHLGHHN
PPVGVLRERLRDLGARPGRDGEVLDLGESVGRRIFVTGGARSGKSRYAEGLLAGVDDVVY
VAAGGPRAGDPDWDRRVELHRERRPASWTTIEDTEVAGVLRSARHPVLVDCLGTWLAARI
DHHDAWESGELDAVRSDVEDLLDAWRSCPVPVVAVSNEVGSGVVPATASGRLFRDELGRL
NAEMADRADQVVMMVAGQPLVVR
NT seq
1332 nt
NT seq
+upstream
nt +downstream
nt
atgaaggtcacgctgctcggcacgggtgccgccgacggctggccgaatgcgttctgccgc
tgtgattcgtgttccgatgcgcggcgccggcacgacttccgtgcccagacagccgcgctc
gtcgacaacgcgctcatgctcgacttcggatcggacgcgcccgggtcggcggtgcgccac
ggtgcttcgctcgccgacgtacgtcacgtcctgatcacccatgcgcacgccgatcatctt
gcaccgcagtcgttgttgttccggtcgtgggtcgacggggtcggtgaactcgaactcatc
ggtccggccgatgctctcgatgtgtgtcgcccgtgggtggggcccgacgccggcgtgcgg
ttcacgccggtcgtcgcgggtgaccaggtgcgggtgggggaccacgacgtgcgggtgctc
ccggcgcgccaccaggtctttcgcgacggtgatgcggtcttgtacgacgtcaccggtccc
gacggtatgaggctgctgtgggcgacggacaccggtgtgtggcccgacgattggttcgat
gcggtgaccggggccgagttcgacgcggtcttcctcgaggagaccttcggcgatcgtgag
gacctgtccgatgggcatctcgggttacccgggtttgcgacgatggtagcggcactgcgt
ggagtgggtgccgtcgtcgactccaccgacgtcgtcgcagtccatctgggacaccacaat
ccgccggtcggcgtgctccgagagcggcttcgggatctcggcgcgcggccgggacgagac
ggggaggtgctcgacttgggcgagtcggtcgggcggcggatcttcgtcaccggaggggcg
aggtcggggaagtcgcggtatgccgaaggtctgctggccggcgtcgacgacgtcgtctat
gtcgccgccggcggtccgcgagccggcgatcccgactgggaccgacgcgtcgaactccat
cgtgaacgacgccccgcatcgtggacgacgatcgaggacacggaggtggccggtgtccta
cgatccgcgcgtcacccggtcctcgtcgactgtctcggaacctggctggccgcccggatc
gatcaccacgatgcctgggagagcggcgaactcgatgccgtgcggtccgacgtcgaggac
ctactcgacgcctggcggagctgcccggtgcccgtcgtcgcggtcagcaacgaggtcggt
agcggcgtcgtcccggccaccgcgtcgggccgtctcttccgcgacgaactcggccgactg
aatgccgagatggccgaccgcgccgaccaggtcgtgatgatggtcgccggtcaacccctg
gttgtgcggtag
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