Yu Changyue, Xu Yinghuan, Zeng Mingjie, Wang Jingjing, Dai Wenhao, Wang Jiang, Liu Hong
State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, 201203, China.
School of Pharmacy, University of Chinese Academy of Sciences, Beijing, 100049, China.
Adv Sci (Weinh). 2024 Mar;11(12):e2307226. doi: 10.1002/advs.202307226. Epub 2024 Jan 18.
Among C-glycosides, C-alkyl glycosides are significant building blocks for natural products and glycopeptides. However, research on efficient construction methods for C-alkyl glycosides remains relatively limited. Compared with Michael acceptors, non-activated olefins are more challenging substrates and have rarely been employed in the construction of C-glycosides. Here, a highly efficient and convenient approach for the synthesis of C-alkyl glycosides through a nickel-catalyzed C(sp)-C(sp) coupling reaction is presented. A distinctive feature of this method is its utilization of non-activated olefins as the anomeric radical acceptors for hydroalkylation, allowing for the direct formation of C-glycoside bonds in a single step. Furthermore, this method demonstrates excellent compatibility with a broad scope of highly reactive functional groups. Mechanistic investigations suggest that the reaction proceeds via a free radical pathway, leading predominantly to the formation of products with α-configuration. Overall, this innovative methodology offers a versatile and practical approach for the synthesis of C-alkyl glycosides, offering new avenues for the production of intricate glycosides with potential applications in drug discovery and chemical biology.
在C-糖苷中,C-烷基糖苷是天然产物和糖肽的重要结构单元。然而,关于C-烷基糖苷高效构建方法的研究仍然相对有限。与迈克尔受体相比,非活化烯烃是更具挑战性的底物,很少用于C-糖苷的构建。在此,提出了一种通过镍催化的C(sp)-C(sp)偶联反应高效便捷地合成C-烷基糖苷的方法。该方法的一个显著特点是利用非活化烯烃作为氢烷基化的异头自由基受体,能够一步直接形成C-糖苷键。此外,该方法与广泛的高反应性官能团具有优异的兼容性。机理研究表明,该反应通过自由基途径进行,主要生成α-构型的产物。总体而言,这种创新方法为C-烷基糖苷的合成提供了一种通用且实用的方法,为生产在药物发现和化学生物学中具有潜在应用的复杂糖苷开辟了新途径。