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Highly Stereoselective Biocatalytic Synthesis of Key Cyclopropane Intermediate to Ticagrelor

机译:替卡格雷洛的关键中间体环丙烷的高立体选择性生物催化合成

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摘要

Extending the scope of biocatalysis to important non-natural reactions such as olefin cyclopropanation will open new opportunities for replacing multistep chemical syntheses of pharmaceutical intermediates with efficient, clean, and highly selective enzyme-catalyzed processes. In this work, we engineered the truncated globin of Bacillus subtilis for the synthesis of a cyclopropane precursor to the antithrombotic agent ticagrelor. The engineered enzyme catalyzes the cyclopropanation of 3,4-difluorostyrene with ethyl diazoacetate on a preparative scale to give ethyl-(1R, 2R)-2-(3,4-difluorophenyI)-cyclopropanecarboxylate in 79% yield, with very high diastereoselectivity (>99% dr) and enantioselectivity (98% ee), enabling a single-step biocatalytic route to this pharmaceutical intermediate.
机译:将生物催化的范围扩展到重要的非天然反应(例如烯烃环丙烷化)将为用高效,清洁和高度选择性的酶催化方法代替药物中间体的多步化学合成开辟新的机会。在这项工作中,我们设计了枯草芽孢杆菌的截短球蛋白,用于合成抗栓剂替卡格雷的环丙烷前体。该工程化酶以制备规模催化用重氮乙酸乙酯对3,4-二氟苯乙烯进行环丙烷化反应,以79%的收率得到乙基-(1R,2R)-2-(3,4-二氟苯基)-环丙烷甲酸乙酯,非对映选择性非常高( > 99%的dr)和对映体的选择性(98%ee),可实现对该药物中间体的一步生物催化路线。

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