Identification of Novel Bacterial Members of the Imine Reductase Enzyme Family that Perform Reductive Amination

还原胺化 亚胺 化学 胺气处理 吡咯烷 生物催化 有机化学 组合化学 胺化 催化作用 反应机理
作者
Scott P. France,Roger M. Howard,Jeremy Steflik,Nicholas J. Weise,Juan Mangas‐Sánchez,Sarah L. Montgomery,Robert Crook,Rajesh Kumar,Nicholas J. Turner
出处
期刊:Chemcatchem [Wiley]
卷期号:10 (3): 510-514 被引量:107
标识
DOI:10.1002/cctc.201701408
摘要

Abstract Reductive amination of carbonyl compounds constitutes one of the most efficient ways to rapidly construct chiral and achiral amine frameworks. Imine reductase (IRED) biocatalysts represent a versatile family of enzymes for amine synthesis through NADPH‐mediated imine reduction. The reductive aminases (RedAms) are a subfamily of IREDs that were recently shown to catalyze imine formation as well as imine reduction. Herein, a diverse library of novel enzymes were expressed and screened as cell‐free lysates for their ability to facilitate reductive amination to expand the known suite of biocatalysts for this transformation and to identify more enzymes with potential industrial applications. A range of ketones and amines were examined, and enzymes were identified that were capable of accepting benzylamine, pyrrolidine, ammonia, and aniline. Amine equivalents as low as 2.5 were employed to afford up to >99 % conversion, and for chiral products, up to >98 % ee could be achieved. Preparative‐scale reactions were conducted with low amine equivalents (1.5 or 2.0) of methylamine, allylamine, and pyrrolidine, achieving up to >99 % conversion and 76 % yield.
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