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用于立体选择性合成叔胺的工程化C-N裂解酶

Engineered C-N Lyases for Stereoselective Synthesis of Tertiary Amines.

作者信息

Bothof Laura, Gong Xiaofang, Onclin Marrit E, Fodran Peter, Poelarends Gerrit J

机构信息

Department of Chemical and Pharmaceutical Biology, Groningen Research Institute of Pharmacy, University of Groningen, Antonius Deusinglaan 1, Groningen, 9713 AV, The Netherlands.

出版信息

Angew Chem Int Ed Engl. 2025 Aug 18;64(34):e202507311. doi: 10.1002/anie.202507311. Epub 2025 Jul 4.

Abstract

Optically pure N-functionalized α-amino acids are valuable chiral building blocks for pharmaceuticals, nutraceuticals, and agrochemicals. Ethylenediamine-N,N-disuccinic acid lyase from Chelativorans sp. BNC1 catalyzes the addition of a wide range of aliphatic and aromatic primary amines to fumarate, producing the corresponding enantioenriched N-substituted L-aspartic acids. In this work, the enzyme was subjected to iterative cycles of site-saturation mutagenesis and screened for increased activity for the addition of 2-((methylamino)methyl)aniline to fumarate. The final variant displayed an activity of three orders of magnitude higher compared to the wild-type enzyme. Unexpectedly, the enzyme catalyzed the hydroamination of fumarate with the aliphatic secondary amine of the starting substrate, rather than with the aromatic primary amine, leading to the formation of a tertiary amine. Exploring the substrate scope showed that the enzyme accepts various substituted N-methyl-1-phenylmethanamines for the hydroamination of fumarate, yielding N,N-disubstituted L-aspartic acids in high optical purity (up to >99% ee). Furthermore, we showed that the enzyme accepts several ortho-substituted anilines that were previously not accepted by the wild-type enzyme, yielding the corresponding N-arylated L-aspartic acids in high enantiomeric excess (>99% ee). This serendipitous finding enables a new strategy for the biocatalytic synthesis of tertiary amines, unlocked within the C-N lyase toolbox.

摘要

光学纯的N-官能化α-氨基酸是用于制药、营养保健品和农用化学品的有价值的手性构建块。来自Chelativorans sp. BNC1的乙二胺-N,N-二琥珀酸裂解酶催化多种脂肪族和芳香族伯胺加成到富马酸酯上,生成相应的对映体富集的N-取代L-天冬氨酸。在这项工作中,对该酶进行了位点饱和诱变的迭代循环,并筛选其对将2-((甲氨基)甲基)苯胺加成到富马酸酯上的活性增强情况。最终变体与野生型酶相比显示出高三个数量级的活性。出乎意料的是,该酶催化富马酸酯与起始底物的脂肪族仲胺进行氢胺化反应,而不是与芳香族伯胺反应,导致生成叔胺。对底物范围的探索表明,该酶接受各种取代的N-甲基-1-苯基甲胺用于富马酸酯的氢胺化反应,以高光学纯度(高达>99% ee)生成N,N-二取代L-天冬氨酸。此外,我们表明该酶接受几种野生型酶以前不接受的邻位取代苯胺,以高对映体过量(>99% ee)生成相应的N-芳基化L-天冬氨酸。这一意外发现为叔胺的生物催化合成开辟了一种新策略,这是在C-N裂解酶工具箱中发现的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b24e/12363623/db52a46b36ae/ANIE-64-e202507311-g006.jpg

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