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首页> 外文期刊>Angewandte Chemie >Enantioselective Aminohydroxylation of Styrenyl Olefins Catalyzed by an Engineered Hemoprotein
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Enantioselective Aminohydroxylation of Styrenyl Olefins Catalyzed by an Engineered Hemoprotein

机译:由工程血栓素催化的苯乙烯基烯烃的对映选择性氨基羟基化

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摘要

Chiral 1,2-amino alcohols are widely represented in biologically active compounds from neurotransmitters to antivirals. While many synthetic methods have been developed for accessing amino alcohols, the direct aminohydroxylation of alkenes to unprotected, enantioenriched amino alcohols remains a challenge. Using directed evolution, we have engineered a hemoprotein biocatalyst based on a thermostable cytochrome c that directly transforms alkenes to amino alcohols with high enantioselectivity (up to 2500 TTN and 90 % ee) under anaerobic conditions with O-pivaloylhydroxylamine as an aminating reagent. The reaction is proposed to proceed via a reactive iron-nitrogen species generated in the enzyme active site, enabling tuning of the catalyst's activity and selectivity by protein engineering.
机译:手性1,2-氨基醇广泛代表来自神经递质的生物活性化合物到抗病毒。 虽然已经开发了许多合成方法用于进入氨基醇,但烯烃的直接氨基羟基化对未受保护的,对苯丙胺氨基醇仍然是一个挑战。 使用定向的evolution,我们已经基于卤素细胞色素C的基于热稳定的细胞色素C,在厌氧条件下用高映射性(高达2500ttn和90%EE)直接转化为氨基醇的嗜热性细胞催化剂。 提出了通过在酶活性位点中产生的反应性铁氮物质进行的反应,使蛋白质工程能够调整催化剂的活性和选择性。

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