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酶催化的 Meinwald 重排反应具有不寻常的区域选择性和立体特异性 1,2-甲基迁移。

Enzyme-Catalyzed Meinwald Rearrangement with an Unusual Regioselective and Stereospecific 1,2-Methyl Shift.

机构信息

Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, Singapore, 117585, Singapore.

出版信息

Angew Chem Int Ed Engl. 2022 Jul 11;61(28):e202204889. doi: 10.1002/anie.202204889. Epub 2022 May 24.

Abstract

The Meinwald rearrangement is a synthetically useful reaction but often lacks regioselectivity and stereocontrol. A significant challenge in the Meinwald rearrangement of internal epoxides is the non-regioselective migration of different substituents to give a mixture of products. Herein, an enzyme-catalyzed regioselective and stereospecific 1,2-methyl shift in the Meinwald rearrangement of internal epoxides is reported. Styrene oxide isomerase (SOI) catalyzed the unique isomerization of internal epoxides through 1,2-methyl shift without 1,2-hydride shift to give the corresponding aldehydes and a cyclic ketone as the sole product. SOI-catalyzed isomerization showed high stereospecificity, fully retaining the stereoconfiguration. The synthetic utility of this enzymatic Meinwald rearrangement was demonstrated by its incorporation into three new types of enantioselective cascades, to convert trans-β-methyl styrenes into the corresponding R-configured alcohols, acids, or amines in high ee and yield.

摘要

迈因沃德重排是一种具有合成应用价值的反应,但通常缺乏区域选择性和立体选择性。在中环环氧乙烷的迈因沃德重排中,一个显著的挑战是不同取代基的非区域选择性迁移,导致产生混合物产物。在此,我们报告了一种酶催化的中环环氧乙烷迈因沃德重排的区域选择性和立体特异性 1,2-甲基迁移。苯乙烯氧化物异构酶(SOI)通过 1,2-甲基迁移催化中环环氧乙烷的独特异构化,而没有 1,2-氢化物迁移,从而得到相应的醛和环状酮作为唯一产物。SOI 催化的异构化表现出很高的立体特异性,完全保留了立体构型。该酶促迈因沃德重排的合成实用性通过其在三种新型对映选择性级联反应中的应用得到了证明,可将反式-β-甲基苯乙烯转化为相应的 R 构型醇、酸或胺,产率和对映选择性均很高。

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