在没有氨的情况下,天然胺脱氢酶可以催化羰基化合物直接还原为醇

Aurélie Fossey‐Jouenne, Laurine Ducrot, Ewald P. J. Jongkind, E. Elisée, A. Zaparucha, G. Grogan, Caroline E. Paul, C. Vergne‐Vaxelaire
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摘要

天然胺脱氢酶(nat-AmDHs)在高浓度氨存在下催化各种酮和醛的(S)-立体选择性还原胺化。基于fuscus囊杆菌CfusAmDH与烟酰胺腺嘌呤二核苷酸磷酸(NADP+)和环己胺复合的结构,我们之前假设了一种机制,包括氨攻击羰基的亲电碳,然后从还原的烟酰胺辅因子将氢化物输送到前手性酮的表面。将羰基底物直接还原为相应的醇需要类似的活性位点结构,并且先前被报道为一些天然胺脱氢酶和变体的次要副反应。在这里,我们描述了一组天然胺脱氢酶和变体的酮还原酶(KRED)活性,事实证明,在反应介质中不存在氨的情况下,酮还原酶活性是显著的,但在存在氨的条件下可以忽略不计。在一大组底物上进行这项研究揭示了这种次级酮还原酶活性的异质性,这取决于所考虑的酶/底物对。计算机对接实验允许鉴定酮还原酶活性与酶的结构特征之间的一些关系。MsmeAmDH的动力学研究强调了这种天然胺脱氢酶作为酮还原酶的优越性能,但其对醇氧化的反向反应的活性也很低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Native amine dehydrogenases can catalyze the direct reduction of carbonyl compounds to alcohols in the absence of ammonia
Native amine dehydrogenases (nat-AmDHs) catalyze the (S)-stereoselective reductive amination of various ketones and aldehydes in the presence of high concentrations of ammonia. Based on the structure of CfusAmDH from Cystobacter fuscus complexed with Nicotinamide adenine dinucleotide phosphate (NADP+) and cyclohexylamine, we previously hypothesized a mechanism involving the attack at the electrophilic carbon of the carbonyl by ammonia followed by delivery of the hydride from the reduced nicotinamide cofactor on the re-face of the prochiral ketone. The direct reduction of carbonyl substrates into the corresponding alcohols requires a similar active site architecture and was previously reported as a minor side reaction of some native amine dehydrogenases and variants. Here we describe the ketoreductase (KRED) activity of a set of native amine dehydrogenases and variants, which proved to be significant in the absence of ammonia in the reaction medium but negligible in its presence. Conducting this study on a large set of substrates revealed the heterogeneity of this secondary ketoreductase activity, which was dependent upon the enzyme/substrate pairs considered. In silico docking experiments permitted the identification of some relationships between ketoreductase activity and the structural features of the enzymes. Kinetic studies of MsmeAmDH highlighted the superior performance of this native amine dehydrogenases as a ketoreductase but also its very low activity towards the reverse reaction of alcohol oxidation.
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