Zhao Xiaoya, Huang Yan, Zhou Siai, Ao Jiaming, Cai Hui, Tanaka Katsunori, Ito Yukishige, Ishiwata Akihiro, Ding Feiqing
School of Pharmaceutical Sciences (Shenzhen), Sun Yat-sen University, Shenzhen, China.
RIKEN Cluster for Pioneering Research, Saitama, Japan.
Front Chem. 2022 May 26;10:880128. doi: 10.3389/fchem.2022.880128. eCollection 2022.
Glycosylation is one of the major forms of protein post-translational modification. -glycans attached to proteins by covalent bonds play an indispensable role in intercellular interaction and immune function. In human bodies, most of the cell surface glycoproteins and secreted glycopeptides are modified with complex-type -glycans. Thus, for analytical or medicinal purposes, efficient and universal methods to provide homogeneous complex-type -glycans have been an urgent need. Despite the extremely complicated structures, tremendous progress in the synthesis of -glycans has been achieved. On one hand, chemical strategies are shown to be effective to prepare core oligosaccharides of -glycans by focusing on stereoselective glycosylations such as β-mannosylation and α-sialylation, as well as the methodology of the -glycan assembly. On the other hand, chemoenzymatic strategies have also become increasingly powerful in recent years. This review attempts to highlight the very recent advancements in chemical and chemoenzymatic strategies for eukaryotic complex-type -glycans.
糖基化是蛋白质翻译后修饰的主要形式之一。通过共价键连接到蛋白质上的聚糖在细胞间相互作用和免疫功能中发挥着不可或缺的作用。在人体中,大多数细胞表面糖蛋白和分泌型糖肽都被复合型聚糖修饰。因此,出于分析或药用目的,提供均质复合型聚糖的高效通用方法一直是迫切需求。尽管聚糖结构极其复杂,但在聚糖合成方面已取得了巨大进展。一方面,化学策略通过专注于立体选择性糖基化反应(如β-甘露糖基化和α-唾液酸化)以及聚糖组装方法,被证明对制备聚糖的核心寡糖有效。另一方面,近年来化学酶法策略也变得越来越强大。本综述试图突出真核生物复合型聚糖化学和化学酶法策略的最新进展。