Department of Chemistry, University of Rochester, Rochester, New York 14627, United States.
Department of Chemistry and Chemical Biology, Rutgers University, New Brunswick, New Jersey 08854, United States.
J Am Chem Soc. 2022 Feb 16;144(6):2590-2602. doi: 10.1021/jacs.1c10750. Epub 2022 Feb 2.
The biocatalytic toolbox has recently been expanded to include enzyme-catalyzed carbene transfer reactions not occurring in Nature. Herein, we report the development of a biocatalytic strategy for the synthesis of enantioenriched α-trifluoromethyl amines through an asymmetric N-H carbene insertion reaction catalyzed by engineered variants of cytochrome from . Using a combination of protein and substrate engineering, this metalloprotein scaffold was redesigned to enable the synthesis of chiral α-trifluoromethyl amino esters with up to >99% yield and 95:5 er using benzyl 2-diazotrifluoropropanoate as the carbene donor. When the diazo reagent was varied, the enantioselectivity of the enzyme could be inverted to produce the opposite enantiomers of these products with up to 99.5:0.5 er. This methodology is applicable to a broad range of aryl amine substrates, and it can be leveraged to obtain chemoenzymatic access to enantioenriched β-trifluoromethyl-β-amino alcohols and halides. Computational analyses provide insights into the interplay of protein- and reagent-mediated control on the enantioselectivity of this reaction. This work introduces the first example of a biocatalytic N-H carbenoid insertion with an acceptor-acceptor carbene donor, and it offers a biocatalytic solution for the enantioselective synthesis of α-trifluoromethylated amines as valuable synthons for medicinal chemistry and the synthesis of bioactive molecules.
生物催化工具箱最近得到了扩展,其中包括自然界中不存在的酶催化卡宾转移反应。在此,我们报告了一种通过工程化变体细胞色素 催化的不对称 N-H 卡宾插入反应合成手性 α-三氟甲基胺的生物催化策略。通过蛋白质和底物工程的结合,这种金属蛋白支架被重新设计,能够使用苄基 2-重氮三氟丙醇酯作为卡宾供体,以高达 >99%的产率和 95:5 的对映选择性合成手性 α-三氟甲基氨基酯。当改变重氮试剂时,酶的对映选择性可以反转,以高达 99.5:0.5 的对映选择性生成这些产物的相反对映体。这种方法适用于广泛的芳基胺底物,并且可以利用它获得化学酶法获得手性富集的 β-三氟甲基-β-氨基醇和卤化物。计算分析提供了对该反应的蛋白质和试剂介导控制的相互作用的深入了解。这项工作引入了第一个具有受体-受体卡宾供体的生物催化 N-H 卡宾插入的例子,并为 α-三氟甲基化胺的对映选择性合成提供了生物催化解决方案,作为药物化学和生物活性分子合成的有价值的前体。