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In order to excavate microbial epoxide hydrolases (EHs) with desired catalytic properties, a novel EH, SfEH1, was identified based on the genome annotation of Streptomyces fradiae and sequence alignment analysis with local protein library. The SfEH1-encoding gene, sfeh1, was then cloned and over-expressed in soluble form in Escherichia coli/BL21(DE3). The optimal temperature and pH of recombinant SfEH1 (reSfEH1) and reSfEH1-expressing E. coli (E. coli/sfeh1) were both determined as 30 ℃ and 7.0, also indicating that the influences of temperature and pH on reSfEH1's activities were more obvious than those of E. coli/sfeh1 whole cells. Subsequently, using E. coli/sfeh1 as catalyst, its catalytic properties towards thirteen common mono-substituted epoxides were tested, in which E. coli/sfeh1 had the highest activity of 28.5 U/g dry cells for rac-1,2-epoxyoctane (rac-6a), and (R)-1,2-pentanediol ((R)-3b) (or (R)-1,2-hexanediol ((R)-4b)) with up to 92.5% (or 94.1%) ee was obtained at almost 100% conversion ratio. Regioselectivity coefficients (α and β) displayed in the enantioconvergent hydrolysis of rac-3a (or rac-4a) were calculated to be 98.7% and 93.8% (or 95.2% and 98.9%). Finally, the reason of the high and complementary regioselectivity was confirmed by both kinetic parameter analysis and molecular docking simulations.
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http://dx.doi.org/10.1016/j.enzmictec.2023.110228 | DOI Listing |
Biotechnol J
June 2025
Hangzhou Weiyuan Biotechnology Co., Ltd, Hangzhou, P. R. China.
(R)-Styrene oxide is a high-value chiral intermediate in pharmaceutical and chemical industries, yet its enantioselective synthesis remains challenging. Here, we engineered an epoxide hydrolase from Spatholobus suberectus (SsEH) to address its limitations in catalytic activity and thermostability. Through a computational strategy integrating homology modeling, molecular dynamics (MD) simulations, and machine learning, we rationally designed a mutagenesis library and identified the quintuple variant SsEH-His41Arg-Thr71Val-Lys117Leu-Leu187Phe-Ser244Ala (SsEH-M5).
View Article and Find Full Text PDFInt J Mol Sci
April 2023
Institute of Biotechnology, Faculty of Chemical and Food Technology, Slovak University of Technology, Radlinského 9, 812 37 Bratislava, Slovakia.
Epoxide hydrolases are attractive and industrially important biocatalysts. They can catalyze the enantioselective hydrolysis of epoxides to the corresponding diols as chiral building blocks for bioactive compounds and drugs. In this review article, we discuss the state of the art and development potential of epoxide hydrolases as biocatalysts based on the most recent approaches and techniques.
View Article and Find Full Text PDFEnzyme Microb Technol
May 2023
College of Biological and Food Engineering, Anhui Polytechnic University, Wuhu 241000, China; Anhui Engineering Laboratory for Industrial Microbiology Molecular Breeding, Anhui Polytechnic University, Wuhu 241000, China. Electronic address:
In order to excavate microbial epoxide hydrolases (EHs) with desired catalytic properties, a novel EH, SfEH1, was identified based on the genome annotation of Streptomyces fradiae and sequence alignment analysis with local protein library. The SfEH1-encoding gene, sfeh1, was then cloned and over-expressed in soluble form in Escherichia coli/BL21(DE3). The optimal temperature and pH of recombinant SfEH1 (reSfEH1) and reSfEH1-expressing E.
View Article and Find Full Text PDFFront Bioeng Biotechnol
February 2022
Wuxi School of Medicine, Jiangnan University, Wuxi, China.
()--chlorophenyl-1,2-ethanediol (CPED) is an important intermediate for the synthesis of ()-eliprodil that is widely applied in the treatment of ischemic stroke. To prepare ()-CPED with high enantiomeric excess ( ) and yield via the enantioconvergent hydrolysis of racemic styrene oxide (CSO) at high concentration, the bi-enzymatic catalysis was designed and investigated by a pair of epoxide hydrolases, a mutant (EH1) of EH1 and a mutant (EH) of EH Firstly, the maximum allowable concentration of -CSO was confirmed. Subsequently, the addition mode and the weight ratio of two cells were optimized.
View Article and Find Full Text PDFInt J Biol Macromol
December 2020
Wuxi School of Medicine, Jiangnan University, Wuxi 214122, PR China. Electronic address:
A novel epoxide hydrolase from Glycine max, designated GmEH3, was excavated based on the computer-aided analysis. Then, gmeh3, a GmEH3-encoding gene, was cloned and successfully expressed in E. coli Rosetta(DE3).
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