School of Chemistry and Biochemistry and the Petit Institute for Bioengineering and Bioscience, Georgia Institute of Technology , Atlanta, Georgia 30332, United States.
J Proteome Res. 2014 Mar 7;13(3):1466-73. doi: 10.1021/pr401000c. Epub 2014 Feb 10.
Glycosylation is one of the most important protein modifications in biological systems. It plays a critical role in protein folding, trafficking, and stability as well as cellular events such as immune response and cell-to-cell communication. Aberrant protein glycosylation is correlated with several diseases including diabetes, cancer, and infectious diseases. The heterogeneity of glycans makes comprehensive identification of protein glycosylation sites very difficult by MS because it is challenging to match mass spectra to peptides that contain different types of unknown glycans. We combined a chemical deglycosylation method with LC-MS-based proteomics techniques to comprehensively identify protein N-glycosylation sites in yeast. On the basis of the differences in chemical properties between the amide bond of the N-linkage and the glycosidic bond of the O-linkage of sugars, O-linked sugars were removed and only the innermost N-linked GlcNAc remained, which served as a mass tag for MS analysis. This chemical deglycosylation method allowed for the identification of 555 protein N-glycosylation sites in yeast by LC-MS, which is 46% more than those obtained from the parallel experiments using the Endo H cleavage method. A total of 250 glycoproteins were identified, including 184 membrane proteins. This method can be extensively used for other biological samples.
糖基化是生物系统中最重要的蛋白质修饰之一。它在蛋白质折叠、运输和稳定性以及免疫反应和细胞间通讯等细胞事件中起着关键作用。异常的蛋白质糖基化与包括糖尿病、癌症和传染病在内的几种疾病有关。糖基的异质性使得通过 MS 全面鉴定蛋白质糖基化位点变得非常困难,因为将质谱与包含不同类型未知聚糖的肽进行匹配具有挑战性。我们结合了一种化学去糖基化方法和基于 LC-MS 的蛋白质组学技术,全面鉴定了酵母中的蛋白质 N-糖基化位点。基于 N 连接的酰胺键和 O 连接的糖的糖苷键之间的化学性质的差异,去除了 O-连接的糖,只留下了最内部的 N-连接的 GlcNAc,它作为 MS 分析的质量标记。这种化学去糖基化方法通过 LC-MS 鉴定了酵母中的 555 个蛋白质 N-糖基化位点,比使用 Endo H 切割方法的平行实验获得的糖基化位点多 46%。总共鉴定了 250 种糖蛋白,包括 184 种膜蛋白。这种方法可以广泛应用于其他生物样本。