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Insights into the Substrate Promiscuity of Novel Hydroxysteroid Dehydrogenases

化学 立体选择性 辅因子 羟类固醇脱氢酶 基质(水族馆) 生物催化 立体化学 NAD+激酶 类固醇 选择性 对映体 醛酮还原酶 生物化学 脱氢酶 组合化学 催化作用 还原酶 生物 反应机理 激素 生态学
作者
Susanna Bertuletti,Erica Elisa Ferrandi,Stefano Marzorati,Marta Vanoni,Sergio Riva,Daniela Monti
出处
期刊:Advanced Synthesis & Catalysis [Wiley]
卷期号:362 (12): 2474-2485 被引量:17
标识
DOI:10.1002/adsc.202000120
摘要

Abstract Hydroxysteroid dehydrogenases (HSDHs) are valuable biocatalysts for the regio‐ and stereoselective modification of steroids, bile acids and other steroid derivatives. In this work, we investigated the substrate promiscuity of this highly selective class of enzymes. In order to reach this goal, a preliminary search of HSDH homologues in in‐house or public available (meta)genomes was carried out. Eight novel NAD(H)‐dependent HSDHs, showing either 7α‐, 7β‐, or 12α‐HSDH activity, and including, for the first time, enzymes from extremophilic microorganisms, were identified, recombinantly produced, and characterized. Among the novel HSDHs, four highly active (up to 92 U mg −1 ) NAD(H)‐dependent 7β‐HSDHs showing negligible similarity towards previously described 7β‐HSDHs, were discovered. These enzymes, along with previously characterized HSDHs, were tested as biocatalysts for the stereoselective reduction of a panel of substrates including two α‐ketoesters of pharmaceutical interest and selected ketones that partially resemble the structural features of steroids. All the reactions were coupled with a suitable cofactor regeneration system. Regarding the α‐ketoesters, nearly all of the tested HSDHs showed a good activity toward the selected substrates, yielding the reduced α‐hydroxyester with up to 99% conversions and enantiomeric excesses. On the other hand, only the 7β‐HSDHs from Collinsella aerofaciens and Clostridium absonum showed appreciable activity toward more complex ketones, i. e., (±)‐trans‐1‐decalone, but with interesting as well as different selectivity. magnified image
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