Department of Biochemistry, Boston University, Boston, Massachusetts, USA.
OMICS. 2010 Aug;14(4):401-18. doi: 10.1089/omi.2009.0146.
Glycosylation defines the adhesive properties of animal cell surfaces and the surrounding extracellular environments. Because cells respond to stimuli by altering glycan expression, glycan structures vary according to spatial location in tissue and temporal factors. These dynamic structural expression patterns, combined with the essential roles glycans play in physiology, drive the need for analytical methods for glycoconjugates. In addition, recombinant glycoprotein drug products represent a multibillion dollar market. Effective analytical methods are needed to speed the identification of new targets and the development of industrial glycoprotein products, both new and biosimilar. Mass spectrometry is an enabling technology in glycomics. This review summarizes mass spectrometry of glycoconjugate glycans. The intent is to summarize appropriate methods for glycans given their chemical properties as distinct from those of proteins, lipids, and small molecule metabolites. Special attention is given to the uses of mass spectral profiling for glycomics with respect to the N-linked, O-linked, ganglioside, and glycosaminoglycan compound classes. Next, the uses of tandem mass spectrometry of glycans are summarized. The review finishes with an update on mass spectral glycoproteomics.
糖基化定义了动物细胞表面及其周围细胞外环境的黏附特性。由于细胞通过改变糖链表达来对刺激做出反应,因此糖链结构根据组织中的空间位置和时间因素而有所不同。这些动态的结构表达模式,加上糖在生理中的重要作用,促使人们需要分析糖缀合物的方法。此外,重组糖蛋白药物产品代表着数十亿美元的市场。需要有效的分析方法来加速识别新的靶标和开发新的和类似生物的工业糖蛋白产品。质谱是糖组学的一项使能技术。本文综述了糖缀合物糖链的质谱分析。本综述旨在根据糖的化学性质(与蛋白质、脂质和小分子代谢物不同),对糖进行适当的方法总结。特别关注糖谱分析在 N 连接、O 连接、神经节苷脂和糖胺聚糖化合物类别的糖组学中的应用。接下来,总结了糖链串联质谱的应用。本文最后更新了基于质谱的糖蛋白质组学。