Directed Evolution to Reverse Epoxide Hydrolase Enantioselectivity for meso‐3,4‐Epoxytetrahydrofuran

Author:

Hiraga Kaori1ORCID,Itoh Tetsuji1ORCID,Verma Deeptak2ORCID,Wang Wei3,Huang Chen3,Ardolino Michael1,Zhong Yong‐Li1,Murphy Grant1ORCID

Affiliation:

1. Process Research & Development Merck & Co., Inc Rahway, NJ 07065 USA

2. Modeling and Informatics Merck & Co., Inc Rahway NJ 07065 USA

3. API process research & development – Biocatalysis Shanghai STA Pharmaceutical R&D Co., Ltd Shanghai 200131 P. R. China

Abstract

AbstractChiral vicinal diols are important intermediates in the synthesis of pharmaceuticals. Epoxide hydrolases catalyze hydrolytic ring opening of epoxides to produce the corresponding vicinal diols, providing an attractive way to access these building blocks under mild conditions in a stereoselective and atom‐efficient manner. In this study, an epoxide hydrolase is identified and engineered to form (3S,4S)‐tetrahydrofurandiol in high optical purity via the desymmetrization of meso‐3,4‐epoxytetrahydrofuran. In nine rounds of directed evolution, the enzyme's native (3R,4R)‐stereopreference was reversed and its activity was dramatically improved to achieve quantitative yield under remarkably high 500 g/L substrate concentration and low enzyme loading. Computational modelling provides insights on the changes in enzyme‐substrate interaction that result in divergent enantioselectivities afforded by evolved variants.

Publisher

Wiley

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Catalysis

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