Zuo Hao, Zhang Chen, Zhang Yang, Niu Dawen
Department of Emergency, State Key Laboratory of Biotherapy, West China Hospital, School of Chemical Engineering, Sichuan University, No. 17 Renmin Nan Road, Chengdu, 610041, China.
Angew Chem Int Ed Engl. 2023 Oct 16;62(42):e202309887. doi: 10.1002/anie.202309887. Epub 2023 Sep 12.
Here we report a simple and general method to achieve fully unprotected, stereoselective glycosylation of carboxylic acids, employing bench-stable allyl glycosyl sulfones as donors. Running the glycosylation reaction under basic conditions was crucial for the efficiencies and selectivities. Both the donor activation stage and the glycosidic bond forming stage of the process are compatible with free hydroxyl groups, thereby allowing for the use of fully unprotected glycosyl donors. This transformation is stereoconvergent, occurs under mild and metal-free conditions at ambient temperature with visible light (455 nm) irradiation, and displays remarkable scope with respect to both reaction partners. Many natural products and commercial drugs, including an acid derived from the complex anticancer agent taxol, were efficiently glycosylated. Experimental studies provide insights into the origin of the stereochemical outcome.
在此,我们报道了一种简单通用的方法,该方法使用易于保存的烯丙基糖基砜作为供体,实现了羧酸的完全无保护立体选择性糖基化反应。在碱性条件下进行糖基化反应对于反应效率和选择性至关重要。该过程的供体活化阶段和糖苷键形成阶段均与游离羟基兼容,从而允许使用完全无保护的糖基供体。这种转化是立体汇聚的,在温和且无金属的条件下于室温可见光(455 nm)照射下发生,并且对于两种反应底物都具有显著的适用范围。许多天然产物和商业药物,包括一种源自复杂抗癌剂紫杉醇的酸,都能被高效糖基化。实验研究为立体化学结果的起源提供了见解。