Promiscuity and Selectivity of Hydroxysteroid Dehydrogenases in the Biocatalyzed Reduction of 1,2‐Diketones

Author:

Tognoli Chiara12ORCID,Bertuletti Susanna1ORCID,Patti Stefania12ORCID,Ferrandi Erica Elisa1ORCID,Vanoni Marta1ORCID,Riva Sergio1ORCID,Bassanini Ivan1ORCID,Monti Daniela1ORCID

Affiliation:

1. Istituto di Scienze e Tecnologie Chimiche “G. Natta” (SCITEC) Consiglio Nazionale delle Ricerche Via Bianco 9 20131 Milano Italy

2. Department of Pharmaceutical Sciences University of Milan Via Mangiagalli 25 20133 Milano Italy

Abstract

AbstractHydroxysteroid dehydrogenases (HSDHs) are NAD(P)H‐dependent alcohol dehydrogenases (ADHs) known for their exceptional stereo‐ and regioselectivity when acting on natural substrates, including neutral steroids, bile acids, and various steroid derivatives. Notably, in recent studies this specific subfamily of oxidoreductases has displayed intriguing substrate promiscuity, exhibiting the capacity to accommodate a diverse array of substrates, such as sterically hindered ketones and even α‐keto esters. Herein, the promiscuous nature of HSDHs was further explored by investigating their catalytic activity with representative 1,2‐diketones. This set encompasses symmetric aliphatic/aromatic diketones – namely, 3,4‐hexandione and benzil – as well as the asymmetric synthon 1‐phenyl‐1,2‐propanedione. In the case of 3,4‐hexandione, substrate conversion and selectivity closely resembled that previously observed with aliphatic α‐keto esters. On the contrary, a more heterogeneous behavior was observed in the case of aromatic substrates, with diverse performances in terms of conversions and stereo‐ or regioselectivity. Additionally, docking studies were carried out to get a deeper insight in the stereochemistry of 1,2‐diketones reduction catalyzed by the broad substrate scope and steroid‐active ketoreductase Is2‐SDR.

Publisher

Wiley

Subject

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

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