Site-Selective C–O Bond Editing of Unprotected Saccharides

化学 分子 立体化学 组合化学 键裂 小分子 催化作用 有机化学 生物化学
作者
Guanjie Wang,Chang Chin Ho,Zhixu Zhou,Yong‐Jia Hao,Jie Lv,Jiamiao Jin,Zhichao Jin,Yonggui Robin
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:146 (1): 824-832 被引量:36
标识
DOI:10.1021/jacs.3c10963
摘要

Glucose and its polyhydroxy saccharide analogs are complex molecules that serve as essential structural components in biomacromolecules, natural products, medicines, and agrochemicals. Within the expansive realm of saccharides, a significant area of research revolves around chemically transforming naturally abundant saccharide units to intricate or uncommon molecules such as oligosaccharides or rare sugars. However, partly due to the presence of multiple hydroxyl groups with similar reactivities and the structural complexities arising from stereochemistry, the transformation of unprotected sugars to the desired target molecules remains challenging. One such formidable challenge lies in the efficient and selective activation and modification of the C-O bonds in saccharides. In this study, we disclose a modular 2-fold "tagging-editing" strategy that allows for direct and selective editing of C-O bonds of saccharides, enabling rapid preparation of valuable molecules such as rare sugars and drug derivatives. The first step, referred to as "tagging", involves catalytic site-selective installation of a photoredox active carboxylic ester group to a specific hydroxyl unit of an unprotected sugar. The second step, namely, "editing", features a C-O bond cleavage to form a carbon radical intermediate that undergoes further transformations such as C-H and C-C bond formations. Our strategy constitutes the most effective and shortest route in direct transformation and modification of medicines and other molecules bearing unprotected sugars.
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