Thioclava litoralis: RPE78_17710
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Entry
RPE78_17710 CDS
T10820
Name
(GenBank) PQQ-dependent methanol/ethanol family dehydrogenase
KO
K00114
alcohol dehydrogenase (cytochrome c) [EC:
1.1.2.8
]
Organism
tlb Thioclava litoralis
Pathway
tlb00010
Glycolysis / Gluconeogenesis
tlb00620
Pyruvate metabolism
tlb00625
Chloroalkane and chloroalkene degradation
tlb01100
Metabolic pathways
tlb01110
Biosynthesis of secondary metabolites
tlb01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
tlb00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
RPE78_17710
00620 Pyruvate metabolism
RPE78_17710
09111 Xenobiotics biodegradation and metabolism
00625 Chloroalkane and chloroalkene degradation
RPE78_17710
Enzymes [BR:
tlb01000
]
1. Oxidoreductases
1.1 Acting on the CH-OH group of donors
1.1.2 With a cytochrome as acceptor
1.1.2.8 alcohol dehydrogenase (cytochrome c)
RPE78_17710
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Motif
Pfam:
PQQ
PQQ_2
PQQ_3
Motif
Other DBs
NCBI-ProteinID:
WRY35686
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Position
unnamed2:complement(421003..422778)
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AA seq
591 aa
AA seq
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MNRFVLAAVLAISCGWALGDAQAGVTEEDLRADQQTVGDVLTNGMGRNLQRFSPLETLNR
DNVKNLVPAWAFSLGGEKQRGQESQPIVYDGVMYITGSYSRLYAIDIHTGKELWQYDARL
PEGILPCCDVINRGAAIYGDNIYFGTLDARIVALDRKTGDVVWNKKIANYKEGYSYTAAP
LIVNGLVITGNSGGEFGIVGEVQARDAETGELVWTRPVIEGHMGTLNGEPSTMTGELNAT
WPGDMWKTGGGATWLGGSYDADTDTLIFGTGNPAPWNSHLRNAGTPVEGNKGDNLYAASR
LGIDPKTGEIKWHFQSTPREGWDFDGVNEVVGFVDKDGNKRYATADRNGFFYILNREDGK
FVAAYPFVKDISWASGIDETGRPIYNEQNRPGAPDTASEDGKGQQVFSVPSFLGGKNWMP
MAYSQQTGLFYVPSNEWGMDIWNEPISYKKGAAYLGAGFTIKPLFESYIGSLKAMDPNTG
EVKWEYKNSAPLWGGVMSTAGGLVFTGNPEGEFMAFDAETGDKLWSFQTGSGIVGQPITW
EQDGEQYVSVISGWGGAVPLWGGEVAKRVNYLNQGGTVWTFRLPKQMADAK
NT seq
1776 nt
NT seq
+upstream
nt +downstream
nt
atgaaccgtttcgttttggccgcagtgctggccatttcctgcggctgggctttgggagac
gctcaagcaggggttaccgaggaggatcttcgcgcggatcagcagacggtgggcgatgtg
ctcaccaacgggatggggcgcaatttgcagcgtttcagcccgctggaaacgctgaaccgt
gacaacgtgaaaaacctcgttccggcttgggcattcagccttggcggagaaaagcagcgc
gggcaggagagccagccgatcgtctatgacggggtgatgtatatcaccggctcctattcg
cgcctttatgcgattgatatccataccggaaaagagctgtggcaatatgatgcccgcctt
cccgagggcattctgccctgctgtgacgtgatcaatcgcggtgcggccatctatggcgat
aatatctatttcggcacattggatgcgcggatcgtggcgcttgaccggaaaaccggcgat
gtcgtctggaacaagaaaatcgccaattacaaagagggttacagctataccgccgcgccg
ctgatcgtaaacgggcttgtcatcaccggcaattcgggcggtgaattcgggatcgtgggc
gaggtgcaggcgcgcgatgcggaaaccggcgagctggtctggacccgtccggtgatcgaa
ggccatatgggcacgctcaatggcgaaccctcgaccatgaccggcgagctgaacgcgacc
tggccgggcgatatgtggaaaaccggtggcggggcaacatggctgggtggctcttatgac
gccgataccgatacgctgatcttcggcaccggtaaccccgcgccgtggaacagccacctg
cgcaatgcgggcacccccgttgagggcaataagggcgacaacctctacgcggcgtcccgc
ctcggcatcgaccccaagaccggcgagatcaagtggcacttccagtccaccccgcgtgaa
ggctgggatttcgacggtgtgaacgaggtcgtgggctttgtcgataaggatggcaacaag
cgctatgcgactgccgaccggaacggcttcttctacatcctcaaccgcgaagacggcaaa
ttcgtcgcggcttatccttttgtgaaggatatctcttgggccagcgggatcgatgagacc
ggtcgcccgatctataacgagcagaatcgccccggtgcgccggatacggcctccgaggat
ggcaagggccagcaggtcttctcggtgcccagtttccttgggggcaagaactggatgccg
atggcgtatagccagcagacgggcctgttctatgtgccctccaacgaatggggcatggat
atctggaacgagccgatttcctacaagaaaggcgcggcctatcttggggcaggcttcacc
atcaagccgcttttcgaaagctatatcggttcgctgaaagcgatggacccgaatactggc
gaggtgaaatgggaatataagaactctgcaccgctctggggcggggtgatgtccacggcg
ggtggccttgtctttactggcaaccccgaaggcgaattcatggccttcgacgccgagacc
ggtgacaagctttggtccttccagaccggctcgggcattgttggccagccgatcacctgg
gagcaggatggcgagcaatatgtctcggtgatttccggctgggggggcgctgtgccgctt
tggggtggtgaggttgccaagcgtgtgaactacctcaatcaaggtggcaccgtctggacc
ttccgtctgcccaagcaaatggccgacgccaaataa
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