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一种还原胺化酶针对庞大的胺底物转变为亚胺还原酶模式。

A Reductive Aminase Switches to Imine Reductase Mode for a Bulky Amine Substrate.

作者信息

Gilio Amelia K, Thorpe Thomas W, Heyam Alex, Petchey Mark R, Pogrányi Balázs, France Scott P, Howard Roger M, Karmilowicz Michael J, Lewis Russell, Turner Nicholas, Grogan Gideon

机构信息

Department of Chemistry, University of York, Heslington, York YO10 5DD, U.K.

School of Chemistry, Manchester Institute of Biotechnology, University of Manchester, 131 Princess Street, Manchester M1 7DN, U.K.

出版信息

ACS Catal. 2023 Jan 12;13(3):1669-1677. doi: 10.1021/acscatal.2c06066. eCollection 2023 Feb 3.

Abstract

Imine reductases (IREDs) catalyze the asymmetric reduction of cyclic imines, but also in some cases the coupling of ketones and amines to form secondary amine products in an enzyme-catalyzed reductive amination (RedAm) reaction. Enzymatic RedAm reactions have typically used small hydrophobic amines, but many interesting pharmaceutical targets require that larger amines be used in these coupling reactions. Following the identification of IR77 from as a promising biocatalyst for the reductive amination of cyclohexanone with pyrrolidine, we have characterized the ability of this enzyme to catalyze couplings with larger bicyclic amines such as isoindoline and octahydrocyclopenta()pyrrole. By comparing the activity of IR77 with reductions using sodium cyanoborohydride in water, it was shown that, while the coupling of cyclohexanone and pyrrolidine involved at least some element of reductive amination, the amination with the larger amines likely occurred ex situ, with the imine recruited from solution for enzyme reduction. The structure of IR77 was determined, and using this as a basis, structure-guided mutagenesis, coupled with point mutations selecting improving amino acid sites suggested by other groups, permitted the identification of a mutant A208N with improved activity for amine product formation. Improvements in conversion were attributed to greater enzyme stability as revealed by X-ray crystallography and nano differential scanning fluorimetry. The mutant IR77-A208N was applied to the preparative scale amination of cyclohexanone at 50 mM concentration, with 1.2 equiv of three larger amines, in isolated yields of up to 93%.

摘要

亚胺还原酶(IREDs)催化环状亚胺的不对称还原反应,但在某些情况下,也能在酶催化的还原胺化(RedAm)反应中催化酮与胺的偶联反应,生成仲胺产物。酶促RedAm反应通常使用小的疏水性胺,但许多有前景的药物靶点要求在这些偶联反应中使用更大的胺。在鉴定出来自[具体来源未提及]的IR77是环己酮与吡咯烷还原胺化反应的有前景的生物催化剂后,我们表征了这种酶催化与更大的双环胺(如异吲哚啉和八氢环戊并[b]吡咯)偶联反应的能力。通过将IR77的活性与在水中使用氰基硼氢化钠进行还原反应的活性进行比较,结果表明,虽然环己酮与吡咯烷的偶联反应至少涉及一些还原胺化的元素,但与更大的胺的胺化反应可能是在非原位发生的,从溶液中募集亚胺进行酶还原。确定了IR77的结构,并以此为基础进行结构导向的诱变,结合其他研究小组提出的选择改善氨基酸位点的点突变,鉴定出了对胺产物形成具有更高活性的突变体A208N。转化率的提高归因于X射线晶体学和纳米差示扫描荧光法揭示的更高的酶稳定性。突变体IR77 - A208N被应用于50 mM浓度的环己酮与1.2当量的三种更大的胺的制备规模胺化反应,分离产率高达93%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8285/9903292/87218c0e2ad1/cs2c06066_0009.jpg

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