Chiral Alcohols from Alkenes and Water: Directed Evolution of a Styrene Hydratase
Journal article, 2023

Enantioselective synthesis of chiral alcohols through asymmetric addition of water across an unactivated alkene is a highly sought-after transformation and a big challenge in catalysis. Herein we report the identification and directed evolution of a fatty acid hydratase from Marinitoga hydrogenitolerans for the highly enantioselective hydration of styrenes to yield chiral 1-arylethanols. While directed evolution for styrene hydration was performed in the presence of heptanoic acid to mimic fatty acid binding, the engineered enzyme displayed remarkable asymmetric styrene hydration activity in the absence of the small molecule activator. The evolved styrene hydratase provided access to chiral alcohols from simple alkenes and water with high enantioselectivity (>99 : 1 e.r.) and could be applied on a preparative scale.

Hydratase

Directed Evolution

Biocatalysis

Stereoselective Catalysis

Alkene Hydration

Author

Matúš Gajdoš

Bielefeld University

Jendrik Wagner

Bielefeld University

Felipe Ospina

Bielefeld University

Antonia Köhler

Bielefeld University

Martin Engqvist

Chalmers, Life Sciences, Systems and Synthetic Biology

Stephan C. Hammer

Bielefeld University

Angewandte Chemie - International Edition

1433-7851 (ISSN) 1521-3773 (eISSN)

Vol. 62 7 e202215093

Subject Categories

Biochemistry and Molecular Biology

Biocatalysis and Enzyme Technology

Organic Chemistry

DOI

10.1002/anie.202215093

PubMed

36511829

More information

Latest update

2/22/2023