Vibrio fluvialis: AL536_20655
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Entry
AL536_20655 CDS
T04379
Name
(GenBank) bifunctional demethylmenaquinone methyltransferase/2-methoxy-6-polyprenyl-1,4-benzoquinol methylase UbiE
KO
K03183
demethylmenaquinone methyltransferase / 2-methoxy-6-polyprenyl-1,4-benzoquinol methylase [EC:
2.1.1.163
2.1.1.201
]
Organism
vfl
Vibrio fluvialis
Pathway
vfl00130
Ubiquinone and other terpenoid-quinone biosynthesis
vfl01100
Metabolic pathways
vfl01110
Biosynthesis of secondary metabolites
vfl01240
Biosynthesis of cofactors
Module
vfl_M00116
Menaquinone biosynthesis, chorismate (+ polyprenyl-PP) => menaquinol
vfl_M00117
Ubiquinone biosynthesis, prokaryotes, chorismate (+ polyprenyl-PP) => ubiquinol
vfl_M00989
Ubiquinone biosynthesis, O2-independent, prokaryotes, chorismate (+ polyprenyl-PP) => ubiquinol
Brite
KEGG Orthology (KO) [BR:
vfl00001
]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00130 Ubiquinone and other terpenoid-quinone biosynthesis
AL536_20655
Enzymes [BR:
vfl01000
]
2. Transferases
2.1 Transferring one-carbon groups
2.1.1 Methyltransferases
2.1.1.163 demethylmenaquinone methyltransferase
AL536_20655
2.1.1.201 2-methoxy-6-polyprenyl-1,4-benzoquinol methylase
AL536_20655
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Ubie_methyltran
Methyltransf_25
Methyltransf_11
Methyltransf_31
Methyltransf_23
Methyltransf_12
PCMT
GCD14
MTS
NpmA
MetW
Anamorsin_N
Rsm22
UPF0020
Methyltransf_29
RrnaAD
NNMT_PNMT_TEMT
DREV
Methyltransf_8
Methyltransf_2
FtsJ
Motif
Other DBs
NCBI-ProteinID:
AMF95758
UniProt:
A0AAX2LUX4
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All DBs
Position
2:2802816..2803598
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AA seq
260 aa
AA seq
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MTDTSVQTNTAVENQDTTHFGFETVRKEEKVTKVAEVFHSVAAKYDIMNDLMSGGIHRLW
KRFTIDCAGARPGQRILDLGGGTGDLTAKFSRIVGDKGHVVLADINNSMLNVGRDKLRDR
GIVGNVHYVQANAEELPFPDNYFDCITISFCLRNVTDKDKALRSMFRVLKPGGRLLVLEF
SKPVLDPLSKVYDAYSFHILPKMGQLIANDADSYRYLAESIRMHPDQETLKGMMMEAGFE
QASYYNLTGGIVALHRGYKF
NT seq
783 nt
NT seq
+upstream
nt +downstream
nt
atgacggataccagcgtgcaaacgaatacagcagtagagaatcaagacaccactcatttc
ggctttgagaccgtacgtaaagaagaaaaagtaaccaaggtagcggaagtattccactcg
gttgcggcgaaatacgacatcatgaacgatttgatgtcgggcgggattcaccgtctgtgg
aagcgtttcacgattgattgtgccggcgcgcgtccggggcaacgtattctggatctgggc
ggtggtacgggtgacctgaccgcaaaattctctcgcatcgtgggtgacaaaggccacgtt
gtactggcggacatcaataactccatgctcaatgtgggccgtgacaagctgcgcgaccgt
ggcatcgtcggtaacgttcattacgtgcaagcgaatgcggaagagttgccgttcccagac
aactacttcgactgtatcaccatcagtttctgtctgcgtaacgtgacggataaagacaaa
gcgctgcgttcgatgttccgcgtgctgaagccgggcggtcgtctgctggtactggaattt
tcgaaaccggtgctggatccgctatcaaaagtgtacgacgcgtattcattccacattctg
ccgaaaatgggtcaactgatcgccaacgacgccgacagttaccgttacctggcggaatcg
attcgtatgcacccggatcaggaaacgctgaaaggcatgatgatggaagccggctttgaa
caggccagctactacaacctgaccggcggtatcgtggctctgcaccgcggctacaagttc
tga
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