Browse views: by Year, by Function, by GLF, by Subfunction, by Conference, by Journal

Enzyme engineering enables inversion of substrate stereopreference of the halogenase WelO5*

Voss, Moritz, Hüppi, Sean, Schaub, Daniela, Hayashi, Takahiro, Ligibel, Mathieu, Sager, Emine, Schroer, Kirsten, Snajdrova, Radka and Buller, Rebecca (2022) Enzyme engineering enables inversion of substrate stereopreference of the halogenase WelO5*. ChemCatChem.. ISSN 1867-3899

Abstract

Enzymatic late-stage diversification of small molecules has the potential to rapidly generate diversity in compound libraries dedicated to drug discovery. In this context, freestanding Fe(II)/α-ketoglutarate-dependent halogenases have raised particular interest as this enzyme family allows the otherwise difficult regio- and stereoselective halogenation of unactivated C(sp3)-H bonds. Here, we report the development of two engineered variants of the halogenase WelO5* for the racemic resolution of a mixture of stereoisomers generated in the synthesis of a bioactive martinelline-derived fragment. By screening a 3-site combinatorial variant library, we could identify two variants exhibiting exquisite substrate selectivity towards the desired enantiomers. Strikingly, the inversion of substrate stereopreference between the halogenase variants was achieved by varying only three residues in the active site. Protein crystallization and subsequent structure elucidation of the wildtype enzyme and a WelO5* variant shed light on the factors governing substrate acceptance and selectivity.

Item Type: Article
Keywords: halogenase, WelO5
Date Deposited: 22 Nov 2022 00:45
Last Modified: 22 Nov 2022 00:46
URI: https://oak.novartis.com/id/eprint/48483

Search

Email Alerts

Register with OAK to receive email alerts for saved searches.