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Engineering of phenylacetaldehyde reductase for efficient substrate conversion in concentrated 2-propanol.


ABSTRACT: Phenylacetaldehyde reductase (PAR) is suitable for the conversion of various aryl ketones and 2-alkanones to corresponding chiral alcohols. 2-Propanol acts as a substrate solvent and hydrogen donor of coupled cofactor regeneration during the conversion of substrates catalyzed by PAR. To improve the conversion efficiency in high concentrations of substrate and 2-propanol, selection of a PAR mutant library and the subsequent rearrangement of mutations were attempted. With only a single selection round and following the manual combination of advantageous mutations, PAR was successfully adapted for the conversion of high concentrations of substrate with concentrated 2-propanol. This method will be widely applicable for the engineering of enzymes potentially valuable for industry.

SUBMITTER: Makino Y 

PROVIDER: S-EPMC1183298 | biostudies-literature | 2005 Aug

REPOSITORIES: biostudies-literature

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Engineering of phenylacetaldehyde reductase for efficient substrate conversion in concentrated 2-propanol.

Makino Yoshihide Y   Inoue Kousuke K   Dairi Tohru T   Itoh Nobuya N  

Applied and environmental microbiology 20050801 8


Phenylacetaldehyde reductase (PAR) is suitable for the conversion of various aryl ketones and 2-alkanones to corresponding chiral alcohols. 2-Propanol acts as a substrate solvent and hydrogen donor of coupled cofactor regeneration during the conversion of substrates catalyzed by PAR. To improve the conversion efficiency in high concentrations of substrate and 2-propanol, selection of a PAR mutant library and the subsequent rearrangement of mutations were attempted. With only a single selection r  ...[more]

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