Morelle Willy, Michalski Jean-Claude
Unité Mixte de Recherche CNRS/USTL 8576, Glycobiologie Structurale et Fonctionnelle, IFR 118, Université des Sciences et Technologies de Lille 1, 59655 Villeneuve d'Ascq Cedex, France.
Curr Pharm Des. 2005;11(20):2615-45. doi: 10.2174/1381612054546897.
Proteomics is closely associated with the modifications of the gene product such as the post-translational events that yield functionally active gene products. Among these, glycosylation represents a critically important post-translational modification and is a target for proteomic research. Glycan moieties are involved in a wide variety of intracellular, cell-cell and cell-matrix recognition events. This is why understanding how glycosylation affects the activities and functions of proteins in health and disease represents a major challenge. The study of the glycome--the whole set of glycans produced in a single organism--is therefore essential to determine the functions of all genes. Mass spectrometry, in combination with modern separation methodologies, is one of the most powerful and versatile techniques for the structural analysis of oligosaccharides. This review provides a summary of the current knowledge for the mass spectrometric analysis of glycoproteins and their glycan structures.
蛋白质组学与基因产物的修饰密切相关,例如产生功能活性基因产物的翻译后事件。其中,糖基化是一种至关重要的翻译后修饰,也是蛋白质组学研究的一个目标。聚糖部分参与了各种各样的细胞内、细胞间和细胞与基质的识别事件。这就是为什么了解糖基化如何影响健康和疾病状态下蛋白质的活性和功能是一项重大挑战。因此,对糖组(单个生物体产生的所有聚糖)的研究对于确定所有基因的功能至关重要。质谱联用现代分离方法,是寡糖结构分析最强大、最通用的技术之一。本综述总结了目前关于糖蛋白及其聚糖结构质谱分析的知识。