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用于酮不对称还原胺化的NAD(P)H依赖性脱氢酶:结构、机制、进化与应用

NAD(P)H-Dependent Dehydrogenases for the Asymmetric Reductive Amination of Ketones: Structure, Mechanism, Evolution and Application.

作者信息

Sharma Mahima, Mangas-Sanchez Juan, Turner Nicholas J, Grogan Gideon

机构信息

York Structural Biology Laboratory Department of Chemistry University of York YO10 5DD York U.K.

School of Chemistry University of Manchester Manchester Institute of Biotechnology 131 Princess Street Manchester M1 7DN UK.

出版信息

Adv Synth Catal. 2017 Jun 19;359(12):2011-2025. doi: 10.1002/adsc.201700356. Epub 2017 May 11.

Abstract

Asymmetric reductive aminations are some of the most important reactions in the preparation of active pharmaceuticals, as chiral amines feature in many of the world's most important drugs. Although many enzymes have been applied to the synthesis of chiral amines, the development of reductive amination reactions that use enzymes is attractive, as it would permit the one-step transformation of readily available prochiral ketones into chiral amines of high optical purity. However, as most natural "reductive aminase" activities operate on keto acids, and many are able to use only ammonia as the amine donor, there is considerable scope for the engineering of natural enzymes for the reductive amination of ketones, and also for the preparation of secondary amines using alkylamines as donors. This review summarises research into the development of NAD(P)H-dependent dehydrogenases for the reductive amination of ketones, including amino acid dehydrogenases (AADHs), natural amine dehydrogenases (AmDHs), opine dehydrogenases (OpDHs) and imine reductases (IREDs). In each case knowledge of the structure and mechanism of the enzyme class is addressed, with a further description of the engineering of those enzymes for the reductive amination of ketones towards primary and also secondary amine products.

摘要

不对称还原胺化反应是活性药物制备中一些最重要的反应,因为许多世界上最重要的药物都含有手性胺。尽管许多酶已被应用于手性胺的合成,但利用酶的还原胺化反应的开发很有吸引力,因为它可以将容易获得的前手性酮一步转化为高光学纯度的手性胺。然而,由于大多数天然“还原氨基酶”活性作用于酮酸,并且许多酶只能使用氨作为胺供体,因此对天然酶进行工程改造以实现酮的还原胺化,以及使用烷基胺作为供体制备仲胺,仍有很大的空间。本综述总结了关于开发用于酮还原胺化的NAD(P)H依赖性脱氢酶的研究,包括氨基酸脱氢酶(AADHs)、天然胺脱氢酶(AmDHs)、章鱼碱脱氢酶(OpDHs)和亚胺还原酶(IREDs)。在每种情况下,都讨论了酶类的结构和机制知识,并进一步描述了这些酶为实现酮向伯胺和仲胺产物的还原胺化而进行的工程改造。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f190/6033044/11d10be22620/ADSC-359-2011-g013.jpg

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