KEGG   Actinobacillus suis: ASU2_01515Help
Entry
ASU2_01515        CDS       T02262                                 

Definition
bifunctional acetaldehyde-CoA/alcohol dehydrogenase
Orthology
K04072  
acetaldehyde dehydrogenase / alcohol dehydrogenase [EC:1.2.1.10 1.1.1.1]
Organism
asi  Actinobacillus suis
Pathway
Glycolysis / Gluconeogenesis
Fatty acid degradation
Tyrosine metabolism
Pyruvate metabolism
Chloroalkane and chloroalkene degradation
Naphthalene degradation
Butanoate metabolism
Metabolic pathways
Biosynthesis of secondary metabolites
Microbial metabolism in diverse environments
Degradation of aromatic compounds
Brite
KEGG Orthology (KO) [BR:asi00001]
 Metabolism
  Overview
   01220 Degradation of aromatic compounds
    ASU2_01515
  Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    ASU2_01515
   00620 Pyruvate metabolism
    ASU2_01515
   00650 Butanoate metabolism
    ASU2_01515
  Lipid metabolism
   00071 Fatty acid degradation
    ASU2_01515
  Amino acid metabolism
   00350 Tyrosine metabolism
    ASU2_01515
  Xenobiotics biodegradation and metabolism
   00625 Chloroalkane and chloroalkene degradation
    ASU2_01515
   00626 Naphthalene degradation
    ASU2_01515
Enzymes [BR:asi01000]
 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
     ASU2_01515
  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)
     ASU2_01515
BRITE hierarchy
SSDB OrthologParalogGene clusterGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
UniProt: 
Position
complement(333099..335714)
Genome map
AA seq 871 aa AA seqDB search
MANNAKNAQPYDAQAEVNVLVEKGLKALDEFRQLNQEQVDYIVAKASVAALDKHGILAMH
AYEETGRGVFEDKATKNLFACEYVVNNMRHLKTAGVISEDDVTGITEIADPVGVVCGITP
TTNPTSTTIFKALIAIKTRNPIVFAFHPSAQKSSAHAAQIVRDAAVAAGAPENCVQWIET
PSMEGTSALMKHPGIATILATGGNAMVEAAYSCGKPALGVGAGNVPAYVEKTAKLEQAVY
DIVMSKSFDNGMICASEQAAIVDKEIYADFVKEMQSYGVYLVNKKEKALLEKFIFGVDKA
KDENCAGAKLNAAVVGKPAAWIAEQAGFSVPPKTNILLAECAFVGEGEPLTREKLSPVLA
LLKSNSTEHGLELSEAMVNFHGLGHSAAIHTQNAELARTFGERVKAIRVIWNSPSTFGGI
GDVYNSFLPSLTLGCGSYGKNSVSNNVSAVNLINIKRVGRRRNNMQWFKVPSKIYFERDS
IQYLKSMKNAEKVMIVTDRSMVDLGFVDRITDQLRQRRNKVMIQLFTDVEPNPSLQTVQR
GTELMRSFQPDTIIALGGGSPMDAAKVMWLFYEQPEVDFRDLVQKFMDIRKRAFKFPQLG
RKAKFVGIPTTSGTGSEVTPFAVITDGDIKYPLADYSLTPTVAIVDPALVMSVPAHVAAD
TGLDVLTHATEAYTSILANDYTDGLALQAIKLVFENLEKSVKEFDEVAREKMHNASTMAG
MAFANAFLGICHSMAHKIGGKFHTIHGRTNAILLPHVIRYNGTRPTKVATWPKYTNYVAD
KRFQDIARILGLPAATPEEAVESYAKAVHDLAVRCGVKMSLREQGIDEQEFLAARRELAL
NAFEDQCTPANPRLAMVEDMEELMTKAYYGK
NT seq 2616 nt NT seq  +upstreamnt  +downstreamnt
atggctaacaatgcaaaaaatgcacaaccatatgacgctcaagcagaagtaaatgtactt
gttgaaaaaggtttaaaagcattagacgaattccgtcagcttaaccaagaacaagtggat
tatatcgtagcgaaagcctctgtggcggcactggataaacatggcatactcgcaatgcat
gcttatgaagaaacaggtcgaggtgtatttgaggataaagcaactaaaaacttatttgcc
tgtgaatatgtcgtcaataatatgcgtcatttaaaaacagccggcgtaattagtgaagat
gatgtaaccggtattaccgaaattgctgatcctgtcggtgttgtatgtggtatcacgcca
acaactaacccaacctcaacaaccattttcaaagcgttaatcgctattaaaactcgtaac
ccaatcgtttttgctttccacccttctgcacaaaaatcttcagctcatgcagcgcaaatt
gttcgtgatgcagcagttgctgccggcgcaccggaaaattgcgtacaatggattgaaacc
ccgtcaatggaaggtacttcagcattaatgaaacaccctggcatcgcaaccattcttgca
acaggtggtaatgctatggttgaagcggcatattcttgcggtaaaccagcattaggcgta
ggggcaggtaacgtaccggcttatgttgaaaaaacagcaaaattagaacaagccgtttat
gacattgtaatgtcaaaatcttttgacaacggtatgatttgtgcatctgaacaagcagca
attgtcgataaagaaatttatgccgatttcgttaaagaaatgcaatcttacggcgtatat
ctcgtaaataaaaaagaaaaagcactattagaaaaattcattttcggtgtggataaagca
aaagatgaaaactgtgccggtgcaaaactaaatgcggcggtagtaggtaaaccggctgca
tggattgccgaacaagcaggcttcagcgtgccaccaaaaacgaatatcctacttgcagaa
tgcgcttttgttggagaaggtgagccgcttactcgtgaaaaattatcaccagtacttgca
ttattaaaatcaaactcaaccgaacatggtttagagctttctgaagcgatggtgaatttc
catggtttagggcactcagcggcaattcacacacaaaatgccgaattagctagaacattc
ggtgaacgtgttaaagcaattcgtgtgatttggaactcaccgtcaacattcggtggtatc
ggcgatgtatataactcattcctaccgtccctcacattaggttgtggctcttacggtaaa
aactctgtaagtaacaacgtaagtgcagtgaacttaattaatattaaacgtgtgggcaga
cggagaaacaatatgcaatggtttaaagttccatcaaaaatctactttgagcgcgattca
atccaatatctcaaatcaatgaaaaatgctgaaaaagtgatgatcgtcaccgaccgctca
atggtagatcttggctttgtagatagaattactgatcagttacgtcaacgtcgtaataaa
gtgatgattcagctatttaccgatgttgaaccaaacccaagtttacaaaccgtacaacgt
ggtacagagctaatgcgcagcttccaaccggatactattattgcattaggtggcggttca
ccaatggatgcggcaaaagtaatgtggttattctatgaacaaccggaagtggatttccgt
gatttagtccaaaaatttatggatatccgtaaacgtgcgttcaaattcccacaattaggt
cgtaaagcaaaatttgtcggtattccaaccacatctggtacaggttctgaagtaacaccg
tttgcagtaattactgacggcgatattaaatatcctttagcagactactcattaacccca
accgttgcaattgttgaccctgcattagtaatgtcagtaccggctcacgttgcagcagat
acaggtttagacgtattaactcacgcaacagaagcttatacttcaattcttgccaacgac
tacaccgacggtttagcgttacaagcaattaaactggtatttgaaaacttagaaaaatcc
gtgaaagaatttgatgaagtcgctcgtgaaaaaatgcacaacgcctcaaccatggcaggt
atggcatttgcgaatgcattcttaggtatttgtcactcaatggcgcacaaaatcggtggt
aaattccacacgattcatggtcgtaccaatgcgattttattgccacacgtgattcgttat
aacggtactcgcccaacgaaagtggcaacttggccgaaatacacaaactatgttgcggat
aaacgcttccaagacattgcacgtattttaggtttaccagcagcaactccggaagaagcg
gtggaatcctatgcaaaagccgtacacgacttagcggtacgttgtggcgtgaaaatgtct
ttacgtgagcaaggtattgatgaacaagagttcttagcagcacgtcgtgagcttgcatta
aatgcctttgaagaccaatgtactccagcaaacccacgtcttgcaatggtagaagatatg
gaagagctaatgactaaagcttactacggtaaataa

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