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Engineering Hydroxylase Activity, Selectivity, and Stability for a Scalable Concise Synthesis of a Key Intermediate to Belzutifan.

Authors :
Cheung‐Lee, Wai Ling
Kolev, Joshua N.
McIntosh, John A.
Gil, Agnieszka A.
Pan, Weilan
Xiao, Li
Velásquez, Juan E.
Gangam, Rekha
Winston, Matthew S.
Li, Shasha
Abe, Kotoe
Alwedi, Embarek
Dance, Zachary E. X.
Fan, Haiyang
Hiraga, Kaori
Kim, Jungchul
Kosjek, Birgit
Le, Diane N.
Marzijarani, Nastaran Salehi
Mattern, Keith
Source :
Angewandte Chemie; Mar2024, Vol. 136 Issue 13, p1-9, 9p
Publication Year :
2024

Abstract

Biocatalytic oxidations are an emerging technology for selective C−H bond activation. While promising for a range of selective oxidations, practical use of enzymes catalyzing aerobic hydroxylation is presently limited by their substrate scope and stability under industrially relevant conditions. Here, we report the engineering and practical application of a non‐heme iron and α‐ketoglutarate‐dependent dioxygenase for the direct stereo‐ and regio‐selective hydroxylation of a non‐native fluoroindanone en route to the oncology treatment belzutifan, replacing a five‐step chemical synthesis with a direct enantioselective hydroxylation. Mechanistic studies indicated that formation of the desired product was limited by enzyme stability and product overoxidation, with these properties subsequently improved by directed evolution, yielding a biocatalyst capable of >15,000 total turnovers. Highlighting the industrial utility of this biocatalyst, the high‐yielding, green, and efficient oxidation was demonstrated at kilogram scale for the synthesis of belzutifan. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00448249
Volume :
136
Issue :
13
Database :
Complementary Index
Journal :
Angewandte Chemie
Publication Type :
Academic Journal
Accession number :
176104693
Full Text :
https://doi.org/10.1002/ange.202316133