Vibrio aquimaris: FIV01_07260
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Entry
FIV01_07260 CDS
T06969
Symbol
xyoA
Name
(GenBank) putative xylitol oxidase
KO
K00103
L-gulonolactone oxidase [EC:
1.1.3.8
]
Organism
vaq
Vibrio aquimaris
Pathway
vaq01100
Metabolic pathways
vaq01240
Biosynthesis of cofactors
Brite
KEGG Orthology (KO) [BR:
vaq00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00053 Ascorbate and aldarate metabolism
FIV01_07260 (xyoA)
Enzymes [BR:
vaq01000
]
1. Oxidoreductases
1.1 Acting on the CH-OH group of donors
1.1.3 With oxygen as acceptor
1.1.3.8 L-gulonolactone oxidase
FIV01_07260 (xyoA)
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Gene cluster
GFIT
Motif
Pfam:
FAD_binding_4
ALO
GULLO2-like_3rd
Motif
Other DBs
NCBI-ProteinID:
QFT26222
UniProt:
A0A5P9CL13
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Position
1559904..1561517
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AA seq
537 aa
AA seq
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MKIKTLALSTTLILTALGTAYALQNEEVENEISNYQGTQTCYPEAIYDPNSIEGVQEVVR
DALLRGKKVMTGNRKFASQIDAACAGDGEIQLTLKNMDKIVHFDANNQLVTVEAGMRFND
LNDFLREQGYAINMVTELAIFTVGGMLGSGTHGSTLEKPSNMLADYVTQLKVVDGEGNVR
TLSGDLLDAARVNLGVLGVVVEATLAFEEAFKVKAEVTGYRDDTGLEDKVLDIARNNYSA
NIAWFPGLGRYTTTLYNPVPLDTEGQAYNAQADVSDAEEFFFGLLFNAAHEFPGTGLQCL
AAKARYNARAQSYFRDSISGKRIDNPVGYSDQMQYFKCKDPNKCIWDRLPIALQEVAIDI
ERLPDWISDVREIVAAHPRTCFPLNGIYFRFGKASESYLGMSAGRESAFVGIEYTLRQEG
KKEPKNYFVNLEIEQMSLRKYNARPHWGKNSVAIFEDMPSRFPMWPEFLQAKAELDPHNV
FTNPFWERVSGSIPMEDYLTPGCNVRGECYCQTDEHCQSGTQCKEGLYFSQARICRK
NT seq
1614 nt
NT seq
+upstream
nt +downstream
nt
atgaagattaaaaccttagcgttaagtactacgttaatactgaccgcattagggacagcc
tatgctcttcaaaatgaagaagtagaaaatgaaatttctaattaccaaggaactcagacc
tgttatccagaagctatttacgacccgaattcaattgaaggagtccaagaagttgtgaga
gacgcgctcttgcgtggcaagaaagtgatgactggaaatcgtaaatttgcgagccaaatt
gatgcggcatgtgcaggcgatggagagatacaacttacactaaaaaatatggataaaatc
gtccactttgatgcaaataatcagctcgtaactgttgaagctggaatgaggtttaatgat
ttaaatgatttccttcgcgagcaaggttacgcaataaatatggttacagaattagccata
tttactgttggaggtatgctgggaagtggtacgcatggctcgaccctagaaaagcccagt
aacatgcttgccgattatgttactcaacttaaagttgtcgatggtgaaggtaatgttcgt
actttaagtggtgatttattagatgcagcaagggtaaatttgggcgtcttgggtgttgtt
gtcgaagccacacttgcttttgaagaagcattcaaagtcaaagcagaagtgacagggtat
cgtgatgatactgggttggaagacaaagtattagatatcgctcggaacaattattctgcg
aatattgcttggtttccagggcttggccgctacaccaccacactctacaatccagtacca
ttggataccgagggacaggcatataacgctcaagctgatgtctctgatgcggaggagttt
tttttcggattactatttaatgccgctcatgaatttcctggtaccggattgcaatgccta
gcagcaaaagcacgttacaatgcacgagcacaatcttacttcagagatagtatttcaggc
aaaaggatcgacaacccagtcggttactctgaccaaatgcaatacttcaaatgtaaagat
cctaataaatgtatctgggaccgactccccatcgcgcttcaagaagtggcgattgatata
gagcggctacccgattggataagtgatgtaagagaaattgtcgcagcacatcctagaact
tgtttccctctaaatggtatctatttcagattcggaaaagcttcagagagttatctcggg
atgagcgctgggcgcgaaagtgcattcgttggcattgaatatactctgcgacaagaaggt
aaaaaagaacctaagaattactttgtcaatcttgagattgaacaaatgtcattgcggaaa
tataacgctcgtcctcattggggtaaaaactctgtggctatatttgaagacatgccttct
cgattccccatgtggccagagtttttacaggctaaagcagaactggacccacacaatgta
ttcactaatcctttctgggaaagagttagtggcagtatccctatggaagattacttaaca
ccagggtgtaatgttcgaggcgaatgttattgccaaacggatgaacactgtcaatctggt
acgcagtgtaaggaagggctttacttctcccaagctcgcatctgccgcaaataa
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