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从糖肽中研究寡糖的方法:直接测定蛋白质中的糖基化位点。

Method for investigation of oligosaccharides from glycopeptides: direct determination of glycosylation sites in proteins.

作者信息

Lattová Erika, Kapková Petra, Krokhin Oleg, Perreault Hélène

机构信息

Chemistry Department and Physics and Astronomy Department, University of Manitoba, Winnipeg, Manitoba, Canada R3T 2N2.

出版信息

Anal Chem. 2006 May 1;78(9):2977-84. doi: 10.1021/ac0519918.

Abstract

Characterization of glycopeptides has become an important tool toward a better understanding of the molecular details in carbohydrate-protein interactions. In this approach, oligosaccharides are commonly not detectable under mass spectrometric conditions because of ionization suppression by deglycosylated peptides. Their composition is only deduced from the mass differences between glycopeptides and corresponding deglycosylated peptides. Here, we describe how carbohydrates can be easily detected in the PNGase-treated samples and structurally investigated next to the peptides. The efficacy of this method is demonstrated through the analysis of tryptic glycopeptides obtained from human IgG. Following deglycosylation with PNGaseF and derivatization with phenylhydrazine, MALDI spectra produced ion peaks of labeled oligosaccharides and deglycosylated peptides. The relative abundances of individual oligosaccharides were consistent with those of the glycopeptides. MALDI-MS/MS provided useful data for the structural elucidation of oligosaccharides, including the assignment of dominant isomers and glycosylation sites in peptides. MALDI-MS/MS fragmentation patterns of deglycosylated peptide ions indicated glycosylation sites at asparagine 297 and 299. The observed peptide of the composition ADQTVYR, described for the first time in this study, indicated new glycosylation sites in IgG1 human myeloma plasma.

摘要

糖肽的表征已成为更好地理解碳水化合物 - 蛋白质相互作用分子细节的重要工具。在这种方法中,由于去糖基化肽的电离抑制作用,在质谱条件下通常无法检测到寡糖。其组成仅从糖肽与相应去糖基化肽之间的质量差异推断得出。在此,我们描述了如何在经PNGase处理的样品中轻松检测碳水化合物,并在肽旁边对其进行结构研究。通过分析从人IgG获得的胰蛋白酶糖肽,证明了该方法的有效性。在用PNGaseF进行去糖基化并用苯肼衍生化后,基质辅助激光解吸电离(MALDI)光谱产生了标记寡糖和去糖基化肽的离子峰。各个寡糖的相对丰度与糖肽的相对丰度一致。MALDI - 串联质谱(MS/MS)为寡糖的结构解析提供了有用的数据,包括肽中主要异构体和糖基化位点的归属。去糖基化肽离子的MALDI - MS/MS裂解模式表明在天冬酰胺297和299处存在糖基化位点。本研究首次描述的组成ADQTVYR的观察到的肽表明人IgG1骨髓瘤血浆中有新的糖基化位点。

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