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使用基质辅助激光解吸电离飞行时间质谱法分析糖蛋白中的N-和O-连接聚糖。

Analysis of N- and O-linked glycans from glycoproteins using MALDI-TOF mass spectrometry.

作者信息

Morelle Willy, Faid Valegh, Chirat Frédéric, Michalski Jean-Claude

机构信息

Unité Mixte de Recherche CNRS/USTL 8576, << Glycobiologie Structurale et Fonctionnelle >>, IFR 118, Bâtiment C9, Université des Sciences et Technologies de Lille 1, 59655, Villeneuve d'Ascq Cedex, France.

出版信息

Methods Mol Biol. 2009;534:5-21. doi: 10.1007/978-1-59745-022-5_1.

Abstract

Glycosylation represents the most common of all known protein post-translational modifications. Carbohydrates can modulate the biological functions of a glycoprotein, protect a protein against hydrolysis via protease activity, and reduce or prevent aggregation of a protein. The determination of the carbohydrate structure and function in glycoproteins remains one of the most challenging tasks given to biochemists, as these molecules can exhibit complex branched structures that can differ in linkage and in the level of branching. In this review, we will present the approach followed in our laboratory for the elucidation of N- and O-glycan chains of glycoproteins. First, reduced/carboxamidomethylated glycoproteins are digested with a protease or a chemical reagent. N-Glycans are then released from the resulting peptides/glycopeptides via digestion with peptide N-glycosidase F (PNGase F). Oligosaccharides released by PNGase F are separated from peptides and glycopeptides using a C18 Sep-Pak, and their methylated derivatives are characterized by matrix-assisted laser desorption/ionization-time of flight mass spectrometry (MALDI-TOF-MS). O-Glycans are released by reductive elimination, which are permethylated, purified on a Sep-Pak C18 cartridge, and analyzed with MALDI-TOF-MS. Finally, to confirm the structures N-glycans released by PNGase F are characterized using MALDI-TOF-MS following on-plate sequential exoglycosidase digestions. The clean-up procedures of native and permethylated oligosaccharides for an efficient MALDI-TOF-MS analysis will also be described. This strategy was applied to calf fetuin and glycoproteins present in human serum.

摘要

糖基化是所有已知蛋白质翻译后修饰中最常见的一种。碳水化合物可以调节糖蛋白的生物学功能,通过蛋白酶活性保护蛋白质免受水解,并减少或防止蛋白质聚集。确定糖蛋白中碳水化合物的结构和功能仍然是生物化学家面临的最具挑战性的任务之一,因为这些分子可以呈现出复杂的分支结构,其连接方式和分支程度可能不同。在这篇综述中,我们将介绍我们实验室用于阐明糖蛋白N-和O-聚糖链的方法。首先,用蛋白酶或化学试剂消化还原/羧甲基化的糖蛋白。然后通过用肽N-糖苷酶F(PNGase F)消化,从所得的肽/糖肽中释放出N-聚糖。使用C18 Sep-Pak将PNGase F释放的寡糖与肽和糖肽分离,并用基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF-MS)对其甲基化衍生物进行表征。O-聚糖通过还原消除法释放,进行全甲基化,在Sep-Pak C18柱上纯化,并用MALDI-TOF-MS分析。最后,为了确认结构,在平板上进行外切糖苷酶顺序消化后,用MALDI-TOF-MS对PNGase F释放的N-聚糖进行表征。还将描述用于高效MALDI-TOF-MS分析的天然和全甲基化寡糖的净化程序。该策略应用于小牛胎球蛋白和人血清中的糖蛋白。

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