氢胺化
化学
对映体过量
胺气处理
生物催化
基质(水族馆)
饱和突变
立体化学
酶
对映体
苯胺
有机化学
组合化学
对映选择合成
催化作用
反应机理
生物化学
海洋学
地质学
突变体
基因
作者
Laura Bothof,Xianda Gong,Marrit E. Onclin,Peter Fodran,Gerrit J. Poelarends
出处
期刊:Angewandte Chemie
[Wiley]
日期:2025-06-24
卷期号:64 (34): e202507311-e202507311
被引量:1
标识
DOI:10.1002/anie.202507311
摘要
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.
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