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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Mass Spectrometric Analysis of the Cell Surface N-Glycoproteome by Combining Metabolic Labeling and Click Chemistry
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Mass Spectrometric Analysis of the Cell Surface N-Glycoproteome by Combining Metabolic Labeling and Click Chemistry

机译:结合代谢标记和点击化学对细胞表面N-糖蛋白组进行质谱分析

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Cell surface N-glycoproteins play extraordinarily important roles in cell-cell communication, cell-matrix interactions, and cellular response to environmental cues. Global analysis is exceptionally challenging because many N-glycoproteins are present at low abundances and effective separation is difficult to achieve. Here, we have developed a novel strategy integrating metabolic labeling, copper-free click chemistry, and mass spectrometry (MS)-based proteomics methods to analyze cell surface N-glycoproteins comprehensively and site-specifically. A sugar analog containing an azido group, N-azidoacetylgalactosamine, was fed to cells to label glycoproteins. Glycoproteins with the functional group on the cell surface were then bound to dibenzocyclooctyne-sulfo-biotin via copper-free click chemistry under physiological conditions. After protein extraction and digestion, glycopeptides with the biotin tag were enriched by NeutrAvidin conjugated beads. Enriched glycopeptides were deglycosylated with peptide-N-glycosidase F in heavy-oxygen water, and in the process of glycan removal, asparagine was converted to aspartic acid and tagged with 18O for MS analysis. With this strategy, 144 unique N-glycopeptides containing 152 N-glycosylation sites were identified in 110 proteins in HEK293T cells. As expected, 95% of identified glycoproteins were membrane proteins, which were highly enriched. Many sites were located on important receptors, transporters, and cluster of differentiation proteins. The experimental results demonstrated that the current method is very effective for the comprehensive and site-specific identification of the cell surface N-glycoproteome and can be extensively applied to other cell surface protein studies.
机译:细胞表面N糖蛋白在细胞与细胞之间的通讯,细胞与基质的相互作用以及细胞对环境提示的反应中起着极其重要的作用。全局分析极具挑战性,因为许多N-糖蛋白含量低,并且难以实现有效分离。在这里,我们已经开发出一种新的策略,将代谢标记,无铜点击化学和基于质谱(MS)的蛋白质组学方法相结合,以全面和特定于位点分析细胞表面N-糖蛋白。将含有叠氮基的糖类似物N-叠氮乙酰基半乳糖胺喂入细胞以标记糖蛋白。然后,在生理条件下,通过无铜点击化学将细胞表面具有官能团的糖蛋白与二苯并环辛炔-磺基生物素结合。在蛋白质提取和消化后,带有生物素标签的糖肽被NeutrAvidin缀合的磁珠富集。富集的糖肽在重氧水中被肽-N-糖苷酶F去糖基化,在去除糖的过程中,天冬酰胺转化为天冬氨酸并用18 O标记以进行MS分析。通过这种策略,在HEK293T细胞的110种蛋白质中鉴定出包含152个N-糖基化位点的144个独特的N-糖肽。如所期望的,鉴定出的糖蛋白的95%是膜蛋白,其高度富集。许多位点位于重要的受体,转运蛋白和分化蛋白簇上。实验结果表明,当前的方法对于细胞表面N-糖蛋白组的全面和位点特异性鉴定非常有效,可广泛应用于其他细胞表面蛋白研究。

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