分子间力
化学
组合化学
水溶液
卤化
氨基酸
氢键
氢原子
氟
立体化学
计算化学
有机化学
氢
分子
化学合成
Atom(片上系统)
纳米技术
分子间相互作用
作者
Yu Zhou,Danielle M. Lawson,Zihan Zhang,Yunling Deng,Hejun Deng,Connor J. O'Dea,Zachariah A. Page,Yi Lu
标识
DOI:10.1002/anie.202524744
摘要
Organofluorine compounds are vital in pharmaceuticals, and enzymes, nature's most efficient catalysts, offer tremendous potential for precise fluorination. However, no enzymatic strategies for intermolecular C-H fluorination have been realized-until now. We present the first radical photoenzymatic system enabling intermolecular C-H fluorination using an unnatural amino acid within a robust de novo protein scaffold. This system achieves chemoselective benzylic monofluorination in aqueous solutions with Selectfluor, driven by hydrogen atom transfer from the photoexcited amino acid. It successfully fluorinated various aromatic compounds and enabled biosynthesis of fluorinated polyketides and chiral fluorinated alcohols. These results establish radical photoenzymatic systems as a powerful new approach for efficient, selective biocatalytic fluorination, with direct relevance to pharmaceuticals.
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