KEGG   Candidatus Melainabacteria bacterium MEL.A1: BHV42_03805
Entry
BHV42_03805       CDS       T04546                                 
Name
(GenBank) bifunctional acetaldehyde-CoA/alcohol dehydrogenase
  KO
K04072  acetaldehyde dehydrogenase / alcohol dehydrogenase [EC:1.2.1.10 1.1.1.1]
Organism
mbf  Candidatus Melainabacteria bacterium MEL.A1
Pathway
mbf00010  Glycolysis / Gluconeogenesis
mbf00071  Fatty acid degradation
mbf00620  Pyruvate metabolism
mbf00625  Chloroalkane and chloroalkene degradation
mbf00626  Naphthalene degradation
mbf00650  Butanoate metabolism
mbf01100  Metabolic pathways
mbf01110  Biosynthesis of secondary metabolites
mbf01120  Microbial metabolism in diverse environments
mbf01220  Degradation of aromatic compounds
Brite
KEGG Orthology (KO) [BR:mbf00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    BHV42_03805
   00620 Pyruvate metabolism
    BHV42_03805
   00650 Butanoate metabolism
    BHV42_03805
  09103 Lipid metabolism
   00071 Fatty acid degradation
    BHV42_03805
  09105 Amino acid metabolism
   00350 Tyrosine metabolism
    BHV42_03805
  09111 Xenobiotics biodegradation and metabolism
   00625 Chloroalkane and chloroalkene degradation
    BHV42_03805
   00626 Naphthalene degradation
    BHV42_03805
Enzymes [BR:mbf01000]
 1. Oxidoreductases
  1.1  Acting on the CH-OH group of donors
   1.1.1  With NAD+ or NADP+ as acceptor
    1.1.1.1  alcohol dehydrogenase
     BHV42_03805
  1.2  Acting on the aldehyde or oxo group of donors
   1.2.1  With NAD+ or NADP+ as acceptor
    1.2.1.10  acetaldehyde dehydrogenase (acetylating)
     BHV42_03805
SSDB
Motif
Pfam: ADH_Fe_C Fe-ADH Aldedh Fe-ADH_2
Other DBs
NCBI-ProteinID: AOR39409
UniProt: A0A1D7YV75
LinkDB
Position
805479..808106
AA seq 875 aa
MNKSSLVDSAEQLELLIERAKKAQKIFATFTQEQVDAIFKAAATAADKARIPLARLAHEE
TGMGVLEDKIIKNHFASEYIYNKHKHAKTCGVIKEDKANGIKVVAEPLGVIAGIVPTTNP
TSTAIFKSLIALKTRNAIIFSPHPRATKSTIAAAKVVYEAAVKAGAPEDIIGWIDVPSIE
LSSQLMQHPNIACILATGGPGMVKAAYSSGNPALGVGPGNACALIDETADIQMAVSSILM
SKTFDNGMICASEQSVVVVDEVYEAVKKEFIYRGAYLLNAAEEKKMIDLPFIDPKRGTAH
PDIVGQSAYNIAKLSGFEIPKTSKILLAERPSVDWEDPFSREKLSPILTMYRAKDFEAAA
NVAYELVSKGGAGHTADLYTDARSQERIDKYANMMPACRVLINSPSALGGIGDLYNFKLE
PSLSLGCGSWGKNAVSGNIGVENLLNYKTVAERRENMLWFKVPPKVYFKRGAVDLALREL
EGKKRAFIVTDRFLFNSGAVDSIIKVLDEVGIDHEVFFDVKPDPTLSTIRQAMEIMKPFE
PDVIISLGGGSPMDAAKIMWLLYEQPDTVFEDVAMRFLDIRKRICKIPELGKKATMVAIP
TTSGTGSEVTPFAIITDDETHVKYAIADYALTPNMSIIDPNFVDGMPKGLTAASGIDALV
HATEAYVSCMATNFTNSNALEAAKLIFRYLERSYKEGANDPIAREKMHYAATIAGMAFAN
SFLGLCHSMAHKLGAMFHVPHGVANALLFRQIIKYNAVDCPKKQAIFPQYKFPNAKAKYG
QIADELGLGGKTDDEKVELYIKAIEDLMKKINLPFSIKEFGVSEEDFNAKLDEMVELAFD
DQCTGANPAYPLMEDIKAIYIDAFNGVVRDYYPTK
NT seq 2628 nt   +upstreamnt  +downstreamnt
ttgaacaagtcttctcttgttgacagtgccgaacaattggaattgcttatcgaaagagct
aaaaaagctcaaaagatttttgcaacatttactcaagaacaagttgatgcaatcttcaaa
gcagctgcaactgccgctgacaaagctcgtattcctctagctagattagctcatgaagaa
actggtatgggcgttttagaagataaaatcattaaaaaccacttcgcatcagaatatatt
tacaacaaacacaaacacgctaaaacttgtggtgtaattaaagaagataaagcaaacggt
attaaagtagttgctgaacctcttggtgttatcgcaggtatcgttcctacaactaaccct
acttcaacagctatttttaaatcattaatcgctttaaaaacaagaaacgcaatcatcttc
tcaccacaccctagagctacaaaatcaacaattgcagctgctaaagttgtttacgaagct
gcagtaaaagctggtgcgccagaagatattatcggttggattgatgttccatctatcgaa
ttgtctagccaattgatgcaacaccctaacatcgcttgcatcttagctacaggcggtcct
ggaatggttaaagctgcatattcatcaggaaaccctgctttaggtgttggtcctggtaac
gcttgtgctttaattgacgaaactgccgatattcaaatggctgtttcttcaatcttgatg
tcaaaaactttcgataacggtatgatttgtgcatctgaacaatcagttgttgttgttgat
gaagtttacgaagcagtaaaaaaagaatttatctacagaggcgcatacctattgaacgct
gctgaagaaaagaaaatgattgatcttccatttatcgatccaaaacgtggaactgctcac
cctgacatcgtaggtcaaagcgcatacaatatcgctaaattgtcaggatttgaaattcca
aaaacttctaaaatcttgttagcagaaagaccttcagttgattgggaagatccattctca
agagaaaaactttctccaatcttaactatgtacagagctaaagattttgaagcagctgca
aatgttgcatatgaattagtatcaaaaggtggcgcaggtcacactgcagacctttacaca
gatgctagaagccaagaaagaattgacaaatatgctaatatgatgcctgcttgccgtgta
ttgattaactctccatctgcattaggtggtatcggcgacttgtacaacttcaaacttgaa
ccgtcattatcattaggttgcggttcttggggtaaaaacgccgtatctggtaacatcggt
gttgaaaacttattgaactacaaaacagttgctgaaaggagagaaaatatgctttggttc
aaagttccgccaaaagtttacttcaaaagaggcgctgttgatttagctctacgtgaactt
gaaggcaaaaaacgtgcattcatcgtaacagatagattcttattcaattctggtgcagtt
gatagcattattaaagtattggatgaagttggtatcgaccacgaagtattcttcgatgta
aaaccagatccaacattgtcaacaatcagacaagctatggaaattatgaaaccatttgaa
cctgatgtaatcatttcattaggtggcggttctcctatggatgctgctaaaattatgtgg
ttattgtatgaacaaccagatacagtatttgaagatgttgcaatgagattcttagatatc
agaaaaagaatttgtaaaatccctgaacttggtaagaaagcaacaatggttgcaatccct
actacatcaggtactggttctgaagttacacctttcgcaatcattactgatgacgaaact
cacgtaaaatatgcaattgcagattacgctttaactccaaatatgtcaatcatcgaccct
aacttcgttgatggtatgccaaaaggcttgacagcagcatctggtatcgacgcattagtt
cacgcaactgaagcttatgtatcttgtatggctacaaactttacaaattcaaacgctttg
gaagcagctaaattaatcttcagatacttggaaagatcatacaaagaaggtgctaacgat
cctatcgcaagagaaaaaatgcactatgcagcaacaattgcaggtatggcattcgctaac
tcattcttaggtttgtgccactcaatggctcacaaactaggtgctatgttccacgtacca
cacggtgtagctaacgcattgttattcagacaaatcatcaaatacaacgcagttgattgt
cctaaaaaacaagcaatcttccctcaatacaagttccctaacgctaaggctaaatatggt
caaatcgctgacgaacttggtttgggcggtaaaactgatgatgaaaaagttgaattgtac
atcaaagctattgaagatttgatgaagaaaatcaacttgccattctctattaaagaattt
ggtgtatcagaagaagacttcaacgctaaattggatgaaatggtagaacttgcatttgac
gaccaatgtacaggtgcaaaccctgcatatccattgatggaagatattaaagcaatttat
atcgacgcattcaacggtgttgttagagattactaccctacaaaatag

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