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通过生物催化卡宾N-H插入对映选择性合成手性胺。

Enantioselective Synthesis of Chiral Amines via Biocatalytic Carbene N-H Insertion.

作者信息

Steck Viktoria, Carminati Daniela M, Johnson Nathan R, Fasan Rudi

机构信息

Department of Chemistry, University of Rochester, 14627 Rochester, New York, USA.

出版信息

ACS Catal. 2020 Oct 2;10(19):10967-10977. doi: 10.1021/acscatal.0c02794. Epub 2020 Aug 31.

Abstract

Optically active amines represent highly valuable building blocks for the synthesis of advanced pharmaceutical intermediates, drug molecules, and biologically active natural products. Hemoproteins have recently emerged as promising biocatalysts for the formation of C-N bonds via carbene transfer, but asymmetric N-H carbene insertion reactions using these or other enzymes have so far been elusive. Here, we report the successful development of a biocatalytic strategy for the asymmetric N-H carbene insertion of aromatic amines with 2-diazopropanoate esters using engineered variants of myoglobin. High activity and stereoinduction in this reaction could be achieved by tuning the chiral environment around the heme cofactor in the metalloprotein in combination with catalyst-matching and tailoring of the diazo reagent. Using this approach, an efficient biocatalytic protocol for the synthesis of a broad range of substituted aryl amines with up to 82% was obtained. In addition, a stereocomplementary catalyst useful for accessing the mirror-image form of the N-H insertion products was identified. This work paves the way to asymmetric amine synthesis via biocatalytic carbene transfer, and the present strategy based on the synergistic combination of protein and diazo reagent engineering is expected to prove useful in the context of these as well as other challenging asymmetric carbene transfer reactions.

摘要

光学活性胺是合成高级药物中间体、药物分子和生物活性天然产物的极具价值的结构单元。血红素蛋白最近已成为通过卡宾转移形成C-N键的有前景的生物催化剂,但迄今为止,使用这些或其他酶的不对称N-H卡宾插入反应一直难以实现。在此,我们报告了一种生物催化策略的成功开发,该策略使用肌红蛋白的工程变体对芳胺与2-重氮丙酸酯进行不对称N-H卡宾插入反应。通过调节金属蛋白中血红素辅因子周围的手性环境,结合催化剂匹配和重氮试剂的定制,可以在该反应中实现高活性和立体诱导。使用这种方法,获得了一种高效的生物催化方案,用于合成各种取代芳基胺,产率高达82%。此外,还鉴定了一种对获得N-H插入产物的镜像形式有用的确立体互补催化剂。这项工作为通过生物催化卡宾转移进行不对称胺合成铺平了道路,基于蛋白质和重氮试剂工程协同组合的当前策略有望在这些以及其他具有挑战性的不对称卡宾转移反应中证明是有用的。

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