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可见光光氧化还原法合成非天然手性α-氨基酸

Visible-light photoredox synthesis of unnatural chiral α-amino acids.

作者信息

Jiang Min, Jin Yunhe, Yang Haijun, Fu Hua

机构信息

Key Laboratory of Bioorganic Phosphorus Chemistry and Chemical Biology (Ministry of Education), Department of Chemistry, Tsinghua University, Beijing 100084, P. R. China.

出版信息

Sci Rep. 2016 May 17;6:26161. doi: 10.1038/srep26161.

Abstract

Unnatural chiral α-amino acids are widely used in fields of organic chemistry, biochemistry and medicinal chemistry, and their synthesis has attracted extensive attention. Although the asymmetric synthesis provides some efficient protocols, noble and elaborate catalysts, ligands and additives are usually required which leads to high cost. Distinctly, it is attractive to make unnatural chiral α-amino acids from readily available natural α-amino acids through keeping of the existing chiral α-carbon. However, it is a great challenge to construct them under mild conditions. In this paper, 83 unnatural chiral α-amino acids were prepared at room temperature under visible-light assistance. The protocol uses two readily available genetically coded proteinogenic amino acids, L-aspartic acid and glutamic acid derivatives as the chiral sources and radical precursors, olefins, alkynyl and alkenyl sulfones, and 2-isocyanobiphenyl as the radical acceptors, and various unnatural chiral α-amino acids were prepared in good to excellent yields. The simple protocol, mild conditions, fast reactions, and high efficiency make the method an important strategy for synthesis of diverse unnatural chiral α-amino acids.

摘要

非天然手性α-氨基酸在有机化学、生物化学和药物化学领域有着广泛应用,其合成受到了广泛关注。尽管不对称合成提供了一些有效的方法,但通常需要昂贵且精细的催化剂、配体和添加剂,这导致成本高昂。显然,通过保留现有的手性α-碳,从容易获得的天然α-氨基酸制备非天然手性α-氨基酸很有吸引力。然而,在温和条件下构建它们是一个巨大的挑战。本文在可见光辅助下于室温制备了83种非天然手性α-氨基酸。该方法使用两种容易获得的遗传编码蛋白质原氨基酸、L-天冬氨酸和谷氨酸衍生物作为手性源和自由基前体,烯烃、炔基和烯基砜以及2-异氰基联苯作为自由基受体,以良好至优异的产率制备了各种非天然手性α-氨基酸。该方法操作简单、条件温和、反应迅速且效率高,使其成为合成多种非天然手性α-氨基酸的重要策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b782/4868990/7676f5893ab2/srep26161-f1.jpg

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