1.2.1.39: phenylacetaldehyde dehydrogenase
This is an abbreviated version!
For detailed information about phenylacetaldehyde dehydrogenase, go to the full flat file.
Word Map on EC 1.2.1.39
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1.2.1.39
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phenylacetic
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monooxygenase
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phenylpyruvate
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2-phenylethylamine
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nad+-dependent
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2-phenylethanol
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denitrifying
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aromaticum
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agrochemical
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tungstate
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aromatoleum
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tyrosol
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4-hydroxyphenylacetaldehyde
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tungsten-dependent
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dinucleotide-dependent
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betaproteobacterium
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phenylacetyl-coa
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phenylethanols
- 1.2.1.39
-
phenylacetic
- monooxygenase
- phenylpyruvate
- 2-phenylethylamine
-
nad+-dependent
- 2-phenylethanol
-
denitrifying
- aromaticum
-
agrochemical
- tungstate
-
aromatoleum
- tyrosol
- 4-hydroxyphenylacetaldehyde
-
tungsten-dependent
-
dinucleotide-dependent
-
betaproteobacterium
- phenylacetyl-coa
- phenylethanols
Reaction
Synonyms
dehydrogenase, phenylacetaldehyde, ebA4954, feaB, NAD(P)+-dependent phenylacetaldehyde dehydrogenase, NPADH, PAAL dehydrogenase, PAD, PadA, PADH, PDH, PeaE, PeaE protein, phenylacetaldehyde dehydrogenase, styD
ECTree
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Reaction
Reaction on EC 1.2.1.39 - phenylacetaldehyde dehydrogenase
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phenylacetaldehyde + NAD+ + H2O = phenylacetate + NADH + H+
sequential reaction mechanism in which NAD+ serves as both the leading substrate and homotropic allosteric activator, catalytic mechanism involving E169, E267, and C301, overview. The catalytic Glu has two conformations: a passive conformer that tucks away to allow hydride transfer to the nicotinamide ring, and an active conformer that abstracts a proton from the thioester-deacylating water
phenylacetaldehyde + NAD+ + H2O = phenylacetate + NADH + H+
sequential reaction mechanism in which NAD+ serves as both the leading substrate and homotropic allosteric activator, catalytic mechanism involving E169, E267, and C301, overview. The catalytic Glu has two conformations: a passive conformer that tucks away to allow hydride transfer to the nicotinamide ring, and an active conformer that abstracts a proton from the thioester-deacylating water
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