Kolli Venkata, Schumacher Katherine N, Dodds Eric D
Department of Chemistry, University of Nebraska-Lincoln, Lincoln, NE 68588-0304, USA.
Bioanalysis. 2015;7(1):113-31. doi: 10.4155/bio.14.272.
The proteomic analysis of glycosylation is uniquely challenging. The numerous and varied biological roles of protein-linked glycans have fueled a tremendous demand for technologies that enable rapid, in-depth structural examination of glycosylated proteins in complex biological systems. In turn, this demand has driven many innovations in wide ranging fields of bioanalytical science. This review will summarize key developments in glycoprotein separation and enrichment, glycoprotein proteolysis strategies, glycopeptide separation and enrichment, the role of mass measurement accuracy in glycopeptide detection, glycopeptide ion dissociation methods for MS/MS, and informatic tools for glycoproteomic analysis. In aggregate, this selection of topics serves to encapsulate the present status of MS-based analytical technologies for engaging the challenges of glycoproteomic analysis.
糖基化的蛋白质组学分析极具挑战性。蛋白质连接聚糖的众多且多样的生物学作用激发了对能够在复杂生物系统中对糖基化蛋白质进行快速、深入结构检测的技术的巨大需求。反过来,这种需求推动了生物分析科学广泛领域的许多创新。本综述将总结糖蛋白分离与富集、糖蛋白蛋白酶解策略、糖肽分离与富集、质量测量精度在糖肽检测中的作用、用于串联质谱的糖肽离子解离方法以及糖蛋白质组学分析的信息学工具等方面的关键进展。总体而言,这些主题的选择旨在概括基于质谱的分析技术应对糖蛋白质组学分析挑战的现状。