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用于手性烷基胺合成的光酶不对称氢胺化反应

Photoenzymatic Asymmetric Hydroamination for Chiral Alkyl Amine Synthesis.

作者信息

Harrison Wesley, Jiang Guangde, Zhang Zhengyi, Li Maolin, Chen Haoyu, Zhao Huimin

机构信息

DOE Center for Advanced Bioenergy and Bioproducts Innovation, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, United States.

Department of Chemical and Biomolecular Engineering, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, United States.

出版信息

J Am Chem Soc. 2024 Apr 17;146(15):10716-10722. doi: 10.1021/jacs.4c00620. Epub 2024 Apr 5.

Abstract

Chiral alkyl amines are common structural motifs in pharmaceuticals, natural products, synthetic intermediates, and bioactive molecules. An attractive method to prepare these molecules is the asymmetric radical hydroamination; however, this approach has not been explored with dialkyl amine-derived nitrogen-centered radicals since designing a catalytic system to generate the aminium radical cation, to suppress deleterious side reactions such as α-deprotonation and H atom abstraction, and to facilitate enantioselective hydrogen atom transfer is a formidable task. Herein, we describe the application of photoenzymatic catalysis to generate and harness the aminium radical cation for asymmetric intermolecular hydroamination. In this reaction, the flavin-dependent ene-reductase photocatalytically generates the aminium radical cation from the corresponding hydroxylamine and catalyzes the asymmetric intermolecular hydroamination to furnish the enantioenriched tertiary amine, whereby enantioinduction occurs through enzyme-mediated hydrogen atom transfer. This work highlights the use of photoenzymatic catalysis to generate and control highly reactive radical intermediates for asymmetric synthesis, addressing a long-standing challenge in chemical synthesis.

摘要

手性烷基胺是药物、天然产物、合成中间体和生物活性分子中常见的结构基序。制备这些分子的一种有吸引力的方法是不对称自由基氢胺化反应;然而,自从设计一种催化体系来生成铵自由基阳离子、抑制诸如α-去质子化和氢原子夺取等有害副反应以及促进对映选择性氢原子转移是一项艰巨的任务以来,这种方法尚未用于二烷基胺衍生的氮中心自由基。在此,我们描述了光酶催化在生成和利用铵自由基阳离子进行不对称分子间氢胺化反应中的应用。在该反应中,黄素依赖性烯还原酶从相应的羟胺光催化生成铵自由基阳离子,并催化不对称分子间氢胺化反应以提供对映体富集的叔胺,其中对映体诱导通过酶介导的氢原子转移发生。这项工作突出了光酶催化在生成和控制用于不对称合成的高活性自由基中间体方面的应用,解决了化学合成中一个长期存在的挑战。

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