Biomolecular Mass Spectrometry Unit, Department of Parasitology, Leiden University Medical Center, Leiden, The Netherlands.
J Sep Sci. 2010 Mar;33(6-7):903-10. doi: 10.1002/jssc.200900850.
Analysis of protein glycosylation is essential in order to correlate certain disease types with oligosaccharide structures on proteins. Here, a method for the MS characterization of site-specific protein glycosylation is presented. Using asialofetuin and fetuin as model substances, a protocol for glycopeptide dissection was developed based on unspecific proteolysis by Proteinase K. The resulting glycopeptides were then resolved by nanoscale hydrophilic interaction liquid chromatography-electrospray multistage MS. The early elution range of O-glycopeptides was clearly separated from the late elution range of N-glycopeptides. Glycopeptides were analyzed by ion trap-MS/MS, which revealed fragmentations of glycosidic linkages and some peptide backbone cleavages; MS(3) spectra predominantly exhibited cleavages of the peptide backbone and provided essential information on the peptide sequence. The previously reported N- and O-glycan attachment sites of fetuin could be confirmed; moreover using our method, the occupation of a new, additional O-glycosylation site serine 296 was found. In conclusion, this approach appears to be a valuable technique for in-depth analysis of the site-specific N-glycosylation and O-glycosylation of individual glycoproteins.
为了将某些疾病类型与蛋白质上的寡糖结构相关联,分析蛋白质糖基化是必不可少的。本文介绍了一种用于 MS 鉴定糖基化的方法。使用脱唾液酸胎球蛋白和胎球蛋白作为模型物质,基于蛋白酶 K 的非特异性蛋白水解,开发了糖肽酶切的方案。然后,通过纳升亲水相互作用液相色谱-电喷雾多级 MS 分离得到的糖肽。O-糖肽的早期洗脱范围与 N-糖肽的晚期洗脱范围明显分离。通过离子阱-MS/MS 分析糖肽,揭示了糖苷键的断裂和一些肽骨架的裂解;MS(3)谱主要表现为肽骨架的裂解,并提供了关于肽序列的重要信息。可以证实胎球蛋白中先前报道的 N-和 O-聚糖连接位点;此外,使用我们的方法,发现了一个新的、额外的 O-糖基化位点丝氨酸 296 的占据。总之,这种方法似乎是一种深入分析单个糖蛋白中特定 N-糖基化和 O-糖基化的有价值的技术。