KEGG   Amphibacillus xylanus: AXY_03010Help
Entry
AXY_03010         CDS       T02266                                 

Gene name
adhE
Definition
acetaldehyde/alcohol dehydrogenase (EC:1.1.1.1 1.2.1.10)
Orthology
K04072  
acetaldehyde dehydrogenase / alcohol dehydrogenase [EC:1.2.1.10 1.1.1.1]
Organism
axl  Amphibacillus xylanus
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:axl00001]
 Metabolism
  Overview
   01220 Degradation of aromatic compounds
    AXY_03010 (adhE)
  Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    AXY_03010 (adhE)
   00620 Pyruvate metabolism
    AXY_03010 (adhE)
   00650 Butanoate metabolism
    AXY_03010 (adhE)
  Lipid metabolism
   00071 Fatty acid degradation
    AXY_03010 (adhE)
  Amino acid metabolism
   00350 Tyrosine metabolism
    AXY_03010 (adhE)
  Xenobiotics biodegradation and metabolism
   00625 Chloroalkane and chloroalkene degradation
    AXY_03010 (adhE)
   00626 Naphthalene degradation
    AXY_03010 (adhE)
Enzymes [BR:axl01000]
 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
     AXY_03010 (adhE)
  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)
     AXY_03010 (adhE)
BRITE hierarchy
SSDB OrthologParalogGene clusterGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
UniProt: 
Position
complement(301918..304530)
Genome map
AA seq 870 aa AA seqDB search
MVAVVKKKEKDNQVKLSAQEQIDRLAAQGKKALKEMKKLTQEQIDHIVKEMALAGLDHHM
YLAKFAVEETGRGVYEDKIIKNMFATEYVYHNVKYDKTVGVINENPHDGVVEIAEPIGVI
AGVTPVTNPTSTTLFKSIISIKTGNPIIFAFHPSAQKSSSEAARIVYQAAVKAGAPENCI
QWIEQPSIEATQALMKHKDIATILATGGPGMVKSAYSSGKPALGVGAGNVPCYIEKSVDI
KRAVNDLILSKTFDNGMICASEQAMIVDEEIYDMVKQEMIDNNCYFLSPAEKAKVEKTVI
NEETASVNPDIVGMSPVYIAEKAGIKVPENTKILVAELTGVGPKHPLSREKLSPVLAAYK
VKSTEEGMKRAEEMLEFGGLGHSAVIHSNDQDVIDEYGSRMKAGRIIVNAPSSQGAIGDI
YNAYMPSLTLGCGSYGGNSVSTNVGAIHLINVKHMARRNNNMQWFKIPPKVYFEKNSVQY
LAKMPNISKAFIVTDEMMVKLGYVDKVLYHLRKRSDYVHCEIFSDVEPDPSKETVMRGAE
AMAAFNPDVIIAIGGGSPMDAAKGMWLFHEHPETDFNGLKQKFLDIRKRVYKYPKLGHKA
QFVAIPTTSGTGSEVTSFSVITDKELNVKYPLADYELTPDVAIIDPQFVMTVPKTVTADT
GMDVLTHAIEAYVSNMANDYTDGLAIRAIQLIFEYLPLAYKDGSNELAREKVHNASTIAG
MAFANAFLGINHSLAHKIGGEFGIAHGRANAVLMPHVIRYNAQKPTKFVSFPKYEHFIAD
KRYAEIAKALDLPARTAEEGVESLINAIYKLAKQLDIPMSLAENGVDEKEFNEKLDYLAD
KAFEDQCTTANPKLPLVTELAEVLRQAYKG
NT seq 2613 nt NT seq  +upstreamnt  +downstreamnt
atggtagccgttgttaaaaagaaagaaaaagataaccaagttaaattgtcagctcaagaa
caaattgatcgattagcagctcaaggtaaaaaagcattaaaagaaatgaaaaaactaact
caagaacaaatcgatcatattgtaaaggaaatggctcttgctggattagatcatcatatg
tatttagcgaaatttgctgtcgaagaaacaggacgcggagtctatgaagataagattatt
aaaaatatgtttgctactgaatatgtctatcacaatgttaaatatgataaaactgttggt
gtaataaatgaaaatcctcacgatggtgttgttgaaattgctgaaccaattggtgtaatc
gctggggtaacacctgttacaaacccgacatcaacaactctgtttaaatcaattatttct
attaaaactggtaatccaataatatttgcgtttcacccttctgcacaaaaatcaagttca
gaagcagctagaattgtatatcaagcagctgtaaaagctggagcaccagaaaactgtatt
cagtggattgaacaaccttcaattgaagcaacgcaagctttaatgaagcataaggatatt
gcaacaattttagcaactggtggaccaggcatggttaaatctgcttatagttcaggtaaa
ccagcacttggtgtaggtgcagggaacgtaccttgctatattgaaaaatctgttgacatt
aaacgtgctgtaaatgaccttattctatcaaaaacgtttgataacggtatgatttgtgct
tcagaacaagcgatgattgttgacgaagaaatttacgatatggtgaaacaagaaatgatc
gataacaactgttatttcttatcaccagcagaaaaagctaaagttgaaaaaactgtaatc
aatgaagaaacagcttcagttaacccagatatcgttggtatgagtccagtatatattgct
gaaaaagcaggcattaaagttcctgaaaacacaaaaattttagttgccgaattaactggc
gttggacctaagcatccactatctcgcgaaaaactgagtccagttttagcagcttacaag
gttaaaagcactgaagaaggtatgaaacgtgcagaagaaatgctggaatttggtggttta
ggtcactcagcagttattcattcaaatgatcaagatgttattgatgagtatggatcaaga
atgaaagcaggtcgtattattgtaaatgcgccatcttctcaaggagcaattggagatatt
tacaatgcttacatgccttcacttactttaggctgtggttcttacggaggtaactctgtt
tcaactaacgttggagcaattcacttaatcaacgttaagcacatggcacgtcgaaacaat
aacatgcaatggttcaagataccgccaaaagtgtattttgagaagaactcagttcaatat
ttagctaaaatgcctaatatatcaaaagcatttattgttactgatgagatgatggttaag
cttggctacgttgataaagtactatatcacttacgtaaaagatcagattatgttcactgt
gaaattttctctgatgtagagcctgatccatcgaaggaaacagttatgcgaggagcagag
gcaatggcagcctttaatccagacgttatcattgctattggcggtggttcaccgatggat
gctgctaaaggtatgtggttattccacgagcaccctgaaactgactttaacggcttgaaa
caaaaattcttagatattcgtaaacgtgtctataaatatcctaaactaggtcataaagca
caatttgttgcgattccaactacatctggtactggttcagaagtaacatcattctctgtt
attacagataaagagctaaatgtgaaatatccgttagctgattatgagctaactccagac
gtagcaattattgacccacaatttgttatgacagtacctaagacagtaacagctgatact
ggtatggacgtcttaacacacgcgattgaagcttacgtttcaaatatggcgaatgattac
actgacggtttagctattcgtgcgattcaattaatctttgaatacttaccattagcatat
aaagatggtagcaatgaattggcacgtgaaaaagttcataacgcttcaacaattgctggt
atggcatttgccaatgcattcttaggtattaaccacagtctcgcacacaaaattggtgga
gagtttggtatcgctcacggtcgagcgaatgcagtattaatgccacacgtcattcgttat
aacgcacagaaaccaactaagtttgtctcattccctaaatatgagcactttattgcagac
aaacgttatgctgagattgctaaagcacttgatttacctgcaagaacagctgaagaaggc
gttgagagtctaatcaatgccatttacaaactagctaaacaacttgatattcctatgagt
cttgctgaaaatggcgttgacgaaaaagaatttaatgaaaaacttgattatttagctgat
aaggcattcgaagatcaatgtacaacagcaaatccaaagttaccacttgtaactgaactt
gctgaagttcttcgtcaagcttataaaggataa

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