Article ID Journal Published Year Pages File Type
228135 Journal of Industrial and Engineering Chemistry 2012 5 Pages PDF
Abstract

The marine fish microsomal epoxide hydrolase (mEH) of Mugil cephalus was engineered to enhance the enantioselective hydrolytic activity by multiple sequence alignment-inspired mutagenesis. The amino acid sequences of Aspergillus niger, Rhodotorula glutinis, zebra fish and human mEH were aligned and analyzed for identifying target amino acids. Single-point mutants (Q170K, E186K, E378D) and double-point mutants (E378D-Q170K, E378D-Y348F, E378D-Y348H) were developed and their hydrolytic activities were compared. The double-point mutant, E378D-Q170K, exhibited an enhanced hydrolytic activity by 4.6-fold, compared to the wild-type M. cephalus mEH. Enantiopure (S)-styrene oxide could be readily prepared with high enantiopurity more than 99%ee by using the double-point mutant.

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Physical Sciences and Engineering Chemical Engineering Chemical Engineering (General)
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