Gerwig G J, Vliegenthart J F
Bijvoet Center for Biomolecular Research, Department of Bio-Organic Chemistry, Utrecht University, Utrecht, The Netherlands.
EXS. 2000;88:159-86. doi: 10.1007/978-3-0348-8458-7_11.
Glycosylation of proteins represents one of the most important post-(co-)translational events in view of the ubiquity of the phenomenon. In most cases, the covalently linked glycans are involved in the functioning of these biomolecules in biological systems. Detailed information on the carbohydrate moieties including monosaccharide composition, anomeric configurations, type of glycosidic linkages and attachment sites at the protein is indispensable in describing the ultimate structure of a specific glycoprotein. This chapter presents a general strategy for the structural characterization of glycoproteins/glycopeptides focussed on the glycan part. Some of the techniques commonly used, like enzyme treatments, separation methods, chemical analyses, mass spectrometry and nuclear magnetic resonance spectroscopy are briefly reviewed.
鉴于蛋白质糖基化现象的普遍性,它是最重要的翻译后(共)修饰事件之一。在大多数情况下,共价连接的聚糖参与这些生物分子在生物系统中的功能。关于碳水化合物部分的详细信息,包括单糖组成、异头构型、糖苷键类型以及蛋白质上的连接位点,对于描述特定糖蛋白的最终结构是必不可少的。本章介绍了一种针对糖蛋白/糖肽聚糖部分进行结构表征的通用策略。简要回顾了一些常用技术,如酶处理、分离方法、化学分析、质谱和核磁共振光谱。