State Key Laboratory of Phytochemistry and Plant Resources in West China, Kunming Institute of Botany, University of Chinese Academy of Sciences, Chinese Academy of Sciences, Kunming, 650201, China.
School of Chemical Science and Technology, Yunnan University, Kunming, 650091, China.
Nat Commun. 2020 Jan 21;11(1):405. doi: 10.1038/s41467-020-14295-z.
Both of O-glycosides and nucleosides are important biomolecules with crucial rules in numerous biological processes. Chemical synthesis is an efficient and scalable method to produce well-defined and pure carbohydrate-containing molecules for deciphering their functions and developing therapeutic agents. However, the development of glycosylation methods for efficient synthesis of both O-glycosides and nucleosides is one of the long-standing challenges in chemistry. Here, we report a highly efficient and versatile glycosylation method for efficient synthesis of both O-glycosides and nucleosides, which uses glycosyl ortho-(1-phenylvinyl)benzoates as donors. This glycosylation protocol enjoys the various features, including readily prepared and stable donors, cheap and readily available promoters, mild reaction conditions, good to excellent yields, and broad substrate scopes. In particular, the applications of the current glycosylation protocol are demonstrated by one-pot synthesis of several bioactive oligosaccharides and highly efficient synthesis of nucleosides drugs capecitabine, galocitabine and doxifluridine.
O-糖苷和核苷都是重要的生物分子,在许多生物过程中起着关键作用。化学合成是一种高效且可扩展的方法,可以生产出具有明确结构和纯度的含碳水化合物分子,以揭示它们的功能并开发治疗剂。然而,开发用于高效合成 O-糖苷和核苷的糖基化方法是化学领域的长期挑战之一。在这里,我们报告了一种高效且通用的糖苷化方法,可用于高效合成 O-糖苷和核苷,该方法使用糖基邻-(1-苯基乙烯基)苯甲酸酯作为供体。该糖苷化方案具有多种特点,包括易于制备和稳定的供体、廉价且易于获得的促进剂、温和的反应条件、良好至优异的产率以及广泛的底物范围。特别是,当前糖苷化方案的应用通过一锅法合成了几种生物活性寡糖和高效合成了核苷药物卡培他滨、吉西他滨和多西氟尿苷得到了证明。