1.2.98.1: formaldehyde dismutase
This is an abbreviated version!
For detailed information about formaldehyde dismutase, go to the full flat file.
Word Map on EC 1.2.98.1
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1.2.98.1
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methanol
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putida
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dismutation
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horse
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nicotinoproteins
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methylobacterium
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formic
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detoxifying
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zinc-containing
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synthesis
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amycolatopsis
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erythropolis
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lyophilized
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rhodococcus
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one-half
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benzaldehyde
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methanolica
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dehydrogenation
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groesl
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enzyme-bound
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dissimilate
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degradation
- 1.2.98.1
- methanol
- putida
-
dismutation
- horse
-
nicotinoproteins
- methylobacterium
-
formic
-
detoxifying
-
zinc-containing
- synthesis
- amycolatopsis
- erythropolis
-
lyophilized
-
rhodococcus
-
one-half
- benzaldehyde
- methanolica
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dehydrogenation
-
groesl
-
enzyme-bound
-
dissimilate
- degradation
Reaction
Synonyms
aldehyde dismutase, cannizzanase, dismutase, formaldehyde, EC 1.2.99.4, FDM, Fdm1, Fdm2, Fdm3, N,N9-dimethyl-4-nitrosoaniline oxidoreductase
ECTree
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Substrates Products
Substrates Products on EC 1.2.98.1 - formaldehyde dismutase
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REACTION DIAGRAM
1-butanol + p-nitroso-N,N-dimethylaniline
n-butanal + reduced p-nitroso-N,N-dimethylaniline
1-pentanol + p-nitroso-N,N-dimethylaniline
n-pentanal + reduced p-nitroso-N,N-dimethylaniline
1-propanol + p-nitroso-N,N-dimethylaniline
n-propanal + reduced p-nitroso-N,N-dimethylaniline
2 propanal + H2O
propanoate + 1-propanol
-
-
-
?
cyclohexanol + p-nitroso-N,N-dimethylaniline
cyclohexanal + reduced p-nitroso-N,N-dimethylaniline
-
50% of activity with ethanol
-
?
n-butanol + H2O + isobutyraldehyde
butyraldehyde + isobutanol
-
in general: RCH2OH + R'CHO = RCHO + R'CH2OH, aliphatic alcohols with longer carbon chains than C-5, secondary alcohols, diols and aromatic alcohols and the corresponding aldehydes are no substrates
-
r
n-hexanol + p-nitroso-N,N-dimethylaniline
n-hexanal + reduced p-nitroso-N,N-dimethylaniline
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14% of activity with ethanol
-
?
n-butanal + reduced p-nitroso-N,N-dimethylaniline
-
-
-
?
1-butanol + p-nitroso-N,N-dimethylaniline
n-butanal + reduced p-nitroso-N,N-dimethylaniline
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96.2% of activity with ethanol or methanol
-
?
1-butanol + p-nitroso-N,N-dimethylaniline
n-butanal + reduced p-nitroso-N,N-dimethylaniline
-
96.2% of activity with ethanol or methanol
-
?
n-pentanal + reduced p-nitroso-N,N-dimethylaniline
-
-
-
?
1-pentanol + p-nitroso-N,N-dimethylaniline
n-pentanal + reduced p-nitroso-N,N-dimethylaniline
-
9.62% of activity with ethanol
-
?
1-pentanol + p-nitroso-N,N-dimethylaniline
n-pentanal + reduced p-nitroso-N,N-dimethylaniline
-
9.62% of activity with ethanol
-
?
n-propanal + reduced p-nitroso-N,N-dimethylaniline
-
-
-
?
1-propanol + p-nitroso-N,N-dimethylaniline
n-propanal + reduced p-nitroso-N,N-dimethylaniline
-
-
-
?
1-propanol + p-nitroso-N,N-dimethylaniline
n-propanal + reduced p-nitroso-N,N-dimethylaniline
-
-
-
?
2 formaldehyde + H2O
formate + methanol
-
-
-
?
ethanal + reduced p-nitroso-N,N-dimethylaniline
-
-
-
?
ethanol + p-nitroso-N,N-dimethylaniline
ethanal + reduced p-nitroso-N,N-dimethylaniline
-
-
-
?
ethanol + p-nitroso-N,N-dimethylaniline
ethanal + reduced p-nitroso-N,N-dimethylaniline
-
-
-
?
formaldehyde + H2O
formate + methanol
-
route of detoxification
-
?
formaldehyde + H2O
formate + methanol
-
dismutation of formaldehyde and use of degradation products as carbon source
-
?
formaldehyde + H2O
formate + methanol
-
dismutation of formaldehyde and use of degradation products as carbon source
-
?
formaldehyde + H2O
formate + methanol
-
route of detoxification
-
?
formaldehyde + H2O
formate + methanol
-
route of detoxification
-
?
formate + allyl alcohol
-
coupled oxidoreduction without addition of an electron acceptor
-
?
formaldehyde + H2O + acrolein
formate + allyl alcohol
-
cross-dismutation
-
?
formaldehyde + H2O + acrolein
formate + allyl alcohol
-
cross-dismutation
-
-
?
formaldehyde + H2O + acrolein
formate + allyl alcohol
-
in general: RCHO + R'CHO = RCOOH + R'CH2OH
-
?
formaldehyde + H2O + acrolein
formate + allyl alcohol
-
coupled oxidoreduction without addition of an electron acceptor
-
?
formaldehyde + H2O + acrolein
formate + allyl alcohol
-
cross-dismutation
-
-
?
formate + butanol
-
coupled oxidoreduction without addition of an electron acceptor
-
?
formaldehyde + H2O + butyraldehyde
formate + butanol
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cross-dismutation
-
?
formaldehyde + H2O + butyraldehyde
formate + butanol
-
cross-dismutation
-
-
?
formaldehyde + H2O + butyraldehyde
formate + butanol
-
in general: RCHO + R'CHO = RCOOH + R'CH2OH
-
?
formaldehyde + H2O + butyraldehyde
formate + butanol
-
cross-dismutation
-
-
?
formate + crotonyl alcohol
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coupled oxidoreduction without addition of an electron acceptor
-
?
formaldehyde + H2O + crotonaldehyde
formate + crotonyl alcohol
-
cross-dismutation
-
?
formaldehyde + H2O + crotonaldehyde
formate + crotonyl alcohol
-
cross-dismutation
-
-
?
formaldehyde + H2O + crotonaldehyde
formate + crotonyl alcohol
-
in general: RCHO + R'CHO = RCOOH + R'CH2OH
-
?
formate + isobutanol
-
coupled oxidoreduction without addition of an electron acceptor
-
?
formaldehyde + H2O + isobutyraldehyde
formate + isobutanol
-
cross-dismutation
-
?
formaldehyde + H2O + isobutyraldehyde
formate + isobutanol
-
cross-dismutation
-
-
?
formaldehyde + H2O + isobutyraldehyde
formate + isobutanol
-
in general: RCHO + R'CHO = RCOOH + R'CH2OH
-
?
formaldehyde + H2O + isobutyraldehyde
formate + isobutanol
-
cross-dismutation
-
-
?
formaldehyde + H2O + propionaldehyde
formate + propanol
-
coupled oxidoreduction without addition of an electron acceptor
-
?
formaldehyde + H2O + propionaldehyde
formate + propanol
-
cross-dismutation
-
?
formaldehyde + H2O + propionaldehyde
formate + propanol
-
cross-dismutation
-
?
formaldehyde + H2O + propionaldehyde
formate + propanol
-
in general: RCHO + R'CHO = RCOOH + R'CH2OH
-
?
formaldehyde + H2O + propionaldehyde
formate + propanol
-
coupled oxidoreduction without addition of an electron acceptor
-
?
formaldehyde + H2O + propionaldehyde
formate + propanol
-
cross-dismutation
-
?
formaldehyde + H2O + propionaldehyde
formate + propanol
-
in general: RCHO + R'CHO = RCOOH + R'CH2OH
-
?
formaldehyde + H2O + propionaldehyde
formate + propanol
-
-
-
?
formaldehyde + H2O + propionaldehyde
formate + propanol
-
cross-dismutation
-
?
formate + methanol
formaldehyde
-
the utilization of methanol can be accelerated by adding formate, which helps oxidize methanol and win biologically energy. This pseudo-oxidation is catalyzed by a reverse formaldehyde dismutase
-
-
?
formate + methanol
formaldehyde
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the utilization of methanol can be accelerated by adding formate, which helps oxidize methanol and win biologically energy. This pseudo-oxidation is catalyzed by a reverse formaldehyde dismutase
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-
?
?
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enzyme additionally displays methanol:p-nitroso-N,N-dimethylaniline oxidoreductase activity, reaction of EC 1.1.99.36
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-
-
additional information
?
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enzyme additionally displays methanol:p-nitroso-N,N-dimethylaniline oxidoreductase activity, reaction of EC 1.1.99.36
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