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Systematic and site-specific analysis of N-sialoglycosylated proteins on the cell surface by integrating click chemistry and MS-based proteomics

机译:通过集成点击化学和基于MS的蛋白质组学对细胞表面N-唾液酸糖基化蛋白进行系统和定点分析

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摘要

Glycoproteins on the cell surface are ubiquitous and essential for cells to interact with the extracellular matrix, communicate with other cells, and respond to environmental cues. Although surface sialoglycoproteins can dramatically impact cell properties and represent different cellular statuses, global and site-specific analysis of sialoglycoproteins only on the cell surface is extraordinarily challenging. An effective method integrating metabolic labeling, copper-free click chemistry and mass spectrometry-based proteomics was developed to globally and site-specifically analyze surface N-sialoglycoproteins. Surface sialoglycoproteins metabolically labeled with a functional group were specifically tagged through copper-free click chemistry, which is ideal because it is quick, specific and occurs under physiological conditions. Sequentially tagged sialoglycoproteins were enriched for site-specific identification by mass spectrometry. Systematic and quantitative analysis of the surface N-sialoglycoproteome in cancer cells with distinctive invasiveness demonstrated many N-sialoglycoproteins up-regulated in invasive cells, the majority of which contained cell adhesion-related domains. This method is very effective to globally and site-specifically analyze N-sialoglycoproteins on the cell surface, and will have extensive applications in the biological and biomedical research communities. Site-specific information regarding surface sialoglycoproteins can serve as biomarkers for disease detection, targets for vaccine development and drug treatment.
机译:细胞表面的糖蛋白无处不在,对于细胞与细胞外基质相互作用,与其他细胞通讯以及对环境线索作出反应至关重要。尽管表面唾液酸糖蛋白可以显着影响细胞特性并代表不同的细胞状态,但是仅在细胞表面上对唾液酸糖蛋白进行全局和位点特异性的分析是非常困难的。开发了一种有效的方法,该方法整合了代谢标记,无铜点击化学和基于质谱的蛋白质组学技术,可以对表面N-唾液糖蛋白进行全局和位点特异性分析。通过无铜咔嗒化学方法对标记有功能基团的表面唾液糖蛋白进行特殊标记,这是理想的方法,因为它快速,特异性且在生理条件下发生。顺序标记的唾液糖蛋白富集,可通过质谱法进行位点特异性鉴定。对具有独特浸润性的癌细胞中的表面N-唾液酸糖蛋白组进行系统和定量分析表明,浸润细胞中许多N-唾液酸糖蛋白上调,其中大多数包含与细胞粘附相关的结构域。该方法对于全局和定点分析细胞表面的N-唾液酸糖蛋白非常有效,并将在生物学和生物医学研究领域中得到广泛应用。有关表面唾液糖蛋白的特定于位点的信息可以用作疾病检测的生物标记,疫苗开发和药物治疗的靶标。

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