1.2.7.B3: aldehyde oxidoreductase WOR5
This is an abbreviated version!
For detailed information about aldehyde oxidoreductase WOR5, go to the full flat file.
Reaction
+ + 2 oxidized ferredoxin = + 2 reduced ferredoxin + 2 H+
Synonyms
WOR5
ECTree
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Substrates Products
Substrates Products on EC 1.2.7.B3 - aldehyde oxidoreductase WOR5
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REACTION DIAGRAM
2-ethylhexanal + H2O + oxidized benzyl viologen
2-ethylhexanoate + reduced benzyl viologen + H+
E7FHH1; Q8U0V2
Vmax/Km is 56% compared to the value for hexanal
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-
?
2-methylbutyraldehyde + H2O + oxidized benzyl viologen
2-methylbutyrate + reduced benzyl viologen + H+
E7FHH1; Q8U0V2
Vmax/Km is 20% compared to the value for hexanal
-
-
?
2-methylvaleraldehyde + H2O + oxidized benzyl viologen
2-methylvalerate + reduced benzyl viologen + H+
E7FHH1; Q8U0V2
Vmax/Km is 54% compared to the value for hexanal
-
-
?
2-naphthaldehyde + H2O + oxidized benzyl viologen
2-naphthoate + reduced benzyl viologen + H+
E7FHH1; Q8U0V2
Vmax/Km is 6.7% compared to the value for hexanal
-
-
?
3-phenylbutyraldehyde + H2O + oxidized benzyl viologen
3-phenylbutyrate + reduced benzyl viologen + H+
E7FHH1; Q8U0V2
Vmax/Km is 11% compared to the value for hexanal
-
-
?
cinnamaldehyde + H2O + oxidized benzyl viologen
cinnamate + reduced benzyl viologen + H+
E7FHH1; Q8U0V2
Vmax/Km is 5.3% compared to the value for hexanal
-
-
?
hexanal + H2O + 2 oxidized ferredoxin
hexanoate + 2 reduced ferredoxin + 2 H+
E7FHH1; Q8U0V2
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-
-
?
hexanal + H2O + oxidized methyl viologen
hexanoate + reduced methyl viologen + H+
E7FHH1; Q8U0V2
-
-
-
?
hydratropaldehyde + H2O + oxidized benzyl viologen
? + reduced benzyl viologen + H+
E7FHH1; Q8U0V2
Vmax/Km is 89% compared to the value for hexanal
-
-
?
isobutyraldehyde + H2O + oxidized benzyl viologen
isobutyrate + reduced benzyl viologen + H+
E7FHH1; Q8U0V2
Vmax/Km is 17% compared to the value for hexanal
-
-
?
additional information
?
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E7FHH1; Q8U0V2
it is distinguished from aldehyde ferredoxin oxidoreductase (EC 1.2.7.5) by its low activity and affinity for crotonaldehyde, wich is one of the best substrates of aldehyde ferredoxin oxidoreductase. It is distinguished from formaldehyde ferredoxin oxidoreductase by its low activity and affinity for formaldehyde, which is one of the best substrates of formaldehyde ferredoxin oxidoreductase. It shows high affinity for several substituted and nonsubstituted aliphatic and aromatic aldehydes with various chain lengths. Very low activity (Vmax/Km is less than 5% compared to activity with hexanal): formaldehyde, crotonaldehyde, acetaldehyde, glutaraldehyde, 2-methoxybenzaldehyde. No activity with glyceraldehyde 3-phosphate
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?