Information on EC 1.1.1.1 - alcohol dehydrogenase and Organism(s) Claviceps paspali and UniProt Accession P00327

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This record set is specific for:
Claviceps paspali
UNIPROT: P00327


The expected taxonomic range for this enzyme is: Bacteria, Archaea, Eukaryota

EC NUMBER
COMMENTARY hide
1.1.1.1
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RECOMMENDED NAME
GeneOntology No.
alcohol dehydrogenase
REACTION TYPE
ORGANISM
UNIPROT
COMMENTARY hide
LITERATURE
oxidation
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redox reaction
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reduction
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PATHWAY
BRENDA Link
KEGG Link
MetaCyc Link
(S)-propane-1,2-diol degradation
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3-methylbutanol biosynthesis (engineered)
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acetaldehyde biosynthesis I
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acetylene degradation
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butanol and isobutanol biosynthesis (engineered)
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chitin degradation to ethanol
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ethanol degradation I
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ethanol degradation II
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ethanolamine utilization
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heterolactic fermentation
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L-isoleucine degradation II
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L-leucine degradation III
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L-methionine degradation III
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L-phenylalanine degradation III
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L-tryptophan degradation V (side chain pathway)
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L-tyrosine degradation III
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L-valine degradation II
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mixed acid fermentation
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noradrenaline and adrenaline degradation
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phenylethanol biosynthesis
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phytol degradation
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pyruvate fermentation to ethanol I
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pyruvate fermentation to ethanol II
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pyruvate fermentation to ethanol III
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pyruvate fermentation to isobutanol (engineered)
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salidroside biosynthesis
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serotonin degradation
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superpathway of fermentation (Chlamydomonas reinhardtii)
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ethanol fermentation
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leucine metabolism
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methionine metabolism
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phenylalanine metabolism
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propanol degradation
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tryptophan metabolism
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tyrosine metabolism
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valine metabolism
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Glycolysis / Gluconeogenesis
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Fatty acid degradation
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Glycine, serine and threonine metabolism
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Tyrosine metabolism
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alpha-Linolenic acid metabolism
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Chloroalkane and chloroalkene degradation
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Naphthalene degradation
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Retinol metabolism
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Metabolism of xenobiotics by cytochrome P450
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Drug metabolism - cytochrome P450
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Metabolic pathways
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Biosynthesis of secondary metabolites
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Microbial metabolism in diverse environments
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Biosynthesis of antibiotics
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SYSTEMATIC NAME
IUBMB Comments
alcohol:NAD+ oxidoreductase
A zinc protein. Acts on primary or secondary alcohols or hemi-acetals with very broad specificity; however the enzyme oxidizes methanol much more poorly than ethanol. The animal, but not the yeast, enzyme acts also on cyclic secondary alcohols.
CAS REGISTRY NUMBER
COMMENTARY hide
9031-72-5
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