1.1.99.20: alkan-1-ol dehydrogenase (acceptor)
This is an abbreviated version!
For detailed information about alkan-1-ol dehydrogenase (acceptor), go to the full flat file.
Word Map on EC 1.1.99.20
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1.1.99.20
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dehydrogenases
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glucose-methanol-choline
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flavin
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flavoproteins
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ensifer
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sphingomonads
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nonylphenols
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dehydrogenation
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stenotrophomonas
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maltophilia
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polypropylene
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industry
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homodimeric
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ppg
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fad
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terrae
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sphingopyxis
- 1.1.99.20
- dehydrogenases
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glucose-methanol-choline
- flavin
- flavoproteins
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ensifer
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sphingomonads
- nonylphenols
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dehydrogenation
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stenotrophomonas
- maltophilia
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polypropylene
- industry
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homodimeric
- ppg
- fad
- terrae
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sphingopyxis
Reaction
Synonyms
alkan-1-ol dehydrogenase, alkan-1-ol:acceptor oxidoreductase, dehydrogenase, polyethylene glycol, ethoxy chain nonylphenol dehydrogenase, NPEO-DH, PEG-DH, PEGDH, polyethylene glycol dehydrogenase
ECTree
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Substrates Products
Substrates Products on EC 1.1.99.20 - alkan-1-ol dehydrogenase (acceptor)
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REACTION DIAGRAM
1-propanol + 2,6-dichloro-phenolindophenol
propanal + reduced 2,6-dichloro-phenolindophenol
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r
2-carboxybenzaldehyde + acceptor
2-carboxybenzoic acid + reduced acceptor
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-
-
?
aromatic aldehyde + acceptor + H2O
aromatic carboxylic acid + reduced acceptor
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-
-
?
benzaldehyde + acceptor + H2O
benzoic acid + reduced acceptor
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-
-
?
beta-phenethyl alcohol + acceptor
beta-phenethyl aldehyde + reduced acceptor
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-
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?
cinnamyl alcohol + acceptor
cinnamyl aldehyde + reduced acceptor
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?
PEG-1000 + 2,6-dichloroindophenol
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520% activity compared to PEG-mono-4-nonylphenyl ether, averaging 2 ethoxy units
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?
PEG-mono-4-nonylphenyl ether, averaging 10 ethoxy units + 2,6-dichloroindophenol
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93% activity compared to PEG-mono-4-nonylphenyl ether, averaging 2 ethoxy units
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?
PEG-mono-4-nonylphenyl ether, averaging 2 ethoxy units + 2,6-dichloroindophenol
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100% activity
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-
?
tetraethylene glycol + 2,6-dichlorophenolindophenol
tetraethylene glycol aldehyde + reduced 2,6-dichlorophenolindophenol
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r
trans-cinnamaldehyde + acceptor
trans-cinnamic acid + reduced acceptor
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?
vanillin aldehyde + acceptor + H2O
vanillic acid + reduced acceptor
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-
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?
vannilyl alcohol + acceptor
vannilyl aldehyde + reduced acceptor
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?
n-tetradecanal + reduced acceptor
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?
acetic acid + reduced acceptor
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?
acetaldehyde + acceptor + H2O
acetic acid + reduced acceptor
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?
carboxylic acid + reduced acceptor
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C-3 to C-7
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?
aliphatic aldehyde + acceptor + H2O
carboxylic acid + reduced acceptor
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products of enzymatic reaction from corresponding alcohols, overview: C-4 to C-7
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?
aliphatic aldehyde + acceptor + H2O
carboxylic acid + reduced acceptor
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products of enzymatic reaction from corresponding alcohols, overview: C-4 to C-7
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?
aromatic aldehyde + reduced acceptor
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?
aromatic alcohol + acceptor
aromatic aldehyde + reduced acceptor
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?
benzyl alcohol + acceptor
benzaldehyde + reduced acceptor
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benzyl alcohol is the best substrate
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?
?
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overview: Triton X-100, Tween 40, Tween 60, Brij 35, Epan 410 to 785
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-
?
detergents + acceptor
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overview: Triton X-100, Tween 40, Tween 60, Brij 35, Epan 410 to 785
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?
dialdehydes + reduced acceptor
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except ethylene glycol, 1,2-and 1,3-propenediol
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?
diols + acceptor
dialdehydes + reduced acceptor
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except ethylene glycol, 1,2-and 1,3-propenediol
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?
diols + acceptor
dialdehydes + reduced acceptor
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diethylene glycol and triethylene glycol are only poor substrates
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?
diols + acceptor
dialdehydes + reduced acceptor
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diethylene glycol and triethylene glycol are only poor substrates
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?
diols + acceptor
dialdehydes + reduced acceptor
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overview: with primary alcoholic groups
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?
diols + acceptor
dialdehydes + reduced acceptor
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except ethylene glycol, 1,2-and 1,3-propenediol
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?
diols + acceptor
dialdehydes + reduced acceptor
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diethylene glycol and triethylene glycol are only poor substrates
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?
ethanol + acceptor
acetaldehyde + reduced acceptor
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?
2,3-epoxypropion aldehyde + reduced acceptor
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-
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?
glycidol + acceptor
2,3-epoxypropion aldehyde + reduced acceptor
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?
heptanoic acid + reduced acceptor
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?
PEG-4000 + acceptor
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enzyme is constitutively expressed
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?
PEG-4000 + acceptor
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enzyme is constitutively expressed
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?
pentanoic acid + reduced acceptor
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?
polyethylene glycol + acceptor
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constitutive quinoprotein enzyme, enzyme of Flavobacterium sp. No.203 inductive
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?
polyethylene glycol + acceptor
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ubiquinone possible physiological acceptor
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?
polyethylene glycol + acceptor
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first and main step in aerobic PEG-metabolism
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?
polyethylene glycol + acceptor
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ubiquinone possible physiological acceptor
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?
polyethylene glycol + acceptor
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first and main step in aerobic PEG-metabolism
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?
aldehyde + reduced acceptor
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C-3 to C-12
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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ethanol is only a poor substrate
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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methanol, glycerol, secondary alcohols and sugar alcohols are no substrates
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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methanol, glycerol, secondary alcohols and sugar alcohols are no substrates
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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2,6-dichlorophenolindophenol is the acceptor in vitro
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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2,6-dichlorophenolindophenol is the acceptor in vitro
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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2,6-dichlorophenolindophenol is the acceptor in vitro
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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2,6-dichlorophenolindophenol is the acceptor in vitro
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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2,6-dichlorophenolindophenol is the acceptor in vitro
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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2,6-dichlorophenolindophenol is the acceptor in vitro
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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coenzyme Q1 and Q2 can act as acceptors
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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coenzyme Q1 and Q2 can act as acceptors
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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overview: C-2 to C-16
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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ethanol is only a poor substrate
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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methanol, glycerol, secondary alcohols and sugar alcohols are no substrates
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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2,6-dichlorophenolindophenol is the acceptor in vitro
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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2,6-dichlorophenolindophenol is the acceptor in vitro
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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2,6-dichlorophenolindophenol is the acceptor in vitro
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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2,6-dichlorophenolindophenol is the acceptor in vitro
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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2,6-dichlorophenolindophenol is the acceptor in vitro
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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coenzyme Q1 and Q2 can act as acceptors
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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overview: C-2 to C-16
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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?
primary alcohol + acceptor
aldehyde + reduced acceptor
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?
propionic acid + reduced acceptor
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?
2,2-dimethyl-1,3-dioxolane-4-carboxaldehyde + reduced acceptor
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?
solketal + acceptor
2,2-dimethyl-1,3-dioxolane-4-carboxaldehyde + reduced acceptor
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?
tetraethylene glycol aldehyde + reduced acceptor
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?
tetraethylene glycol + acceptor
tetraethylene glycol aldehyde + reduced acceptor
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?
tetraethylene glycol + acceptor
tetraethylene glycol aldehyde + reduced acceptor
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a 2,4-dinitrophenylhydrazine-positive compound from tetraethylene glycol, tetrazolium blue, dimethylbenzaldehyde, 3-methyl-2-benzothiazolinonehydrazone hydrochloride and p-nitrophenylhydrazine are also present in the reaction mixture
?
tetraethylene glycol + acceptor
tetraethylene glycol aldehyde + reduced acceptor
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?
tetraethylene glycol + acceptor
tetraethylene glycol aldehyde + reduced acceptor
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a 2,4-dinitrophenylhydrazine-positive compound from tetraethylene glycol, tetrazolium blue, dimethylbenzaldehyde, 3-methyl-2-benzothiazolinonehydrazone hydrochloride and p-nitrophenylhydrazine are also present in the reaction mixture
?
tetraethylene glycol + acceptor
tetraethylene glycol aldehyde + reduced acceptor
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?
tetraethylene glycol + acceptor
tetraethylene glycol aldehyde + reduced acceptor
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?
?
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the enzyme shows no activity toward ethylene glycol, glycerol, secondary alcohols and sugar alcohols
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additional information
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the enzyme shows no activity toward diglycolic acid, tetraethylene glycol dicarboxylic acid, methoxyacetic acid or ethoxyacetic acid
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additional information
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the enzyme shows no activity toward diglycolic acid, tetraethylene glycol dicarboxylic acid, methoxyacetic acid or ethoxyacetic acid
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?