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通过未活化烯烃的生物催化氮丙啶化合成手性噁唑烷酮

Nature · 2026年9月23日 · Li 等 12 位作者

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一分钟了解要点血红素蛋白催化未活化烯烃不对称合成手性噁唑烷酮,用于耐药结核抗生素骨架。

不需要生物学背景,多打比方

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Chiral oxazolidinones are privileged heterocycles broadly used in asymmetric synthesis (1) and drug discovery (2-3). Conventional synthetic routes rely on a "chiral pool" strategy, where enantiopure amino alcohols are required as key intermediates. Of particular importance are a class of 5-(S)-aminomethyl oxazolidinones that are key scaffolds in next-generation antibiotics targeting multidrug- and extensively drug-resistant Mycobacterium tuberculosis (4-6). While many strategies exist to construct chirality at the 4-position (α-to-nitrogen), methods to install the desired 5-stereocentre (α-to-oxygen) remain underdeveloped. Here we report a haemprotein-catalysed aziridination/ring-expansion cascade that enables direct, enantioselective synthesis of clinically relevant and discovery-stage oxazolidinones from simple alkenes. This work advances haemprotein-catalysed nitrene transfer by enabling functionalisation of unactivated alkenes, a reactivity previously limited to conjugated systems such as styrenes. Computational analysis further reveals that key mutations introduced through directed evolution are responsible for the enantioselective formation of these products.

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