Institute of Cell Biology, ETH Zurich , CH-8093 Zurich, Switzerland.
J Proteome Res. 2012 Mar 2;11(3):1598-608. doi: 10.1021/pr2007895. Epub 2012 Jan 27.
Cell surface N-glycoproteins provide a key interface of cells to their environment and therapeutic entry points for drug and biomarker discovery. Their comprehensive description denotes therefore a formidable challenge. The β-cells of the pancreas play a crucial role in blood glucose homeostasis, and disruption of their function contributes to diabetes. By combining cell surface and whole cell capturing technologies with high-throughput quantitative proteomic analysis, we report on the identification of a total of 956 unique N-glycoproteins from mouse MIN6 β-cells and human islets. Three-hundred-forty-nine of these proteins encompass potential surface N-glycoproteins and include orphan G-protein-coupled receptors, novel proteases, receptor protein kinases, and phosphatases. Interestingly, stimulation of MIN6 β-cells with glucose and the hormone GLP1, known stimulators of insulin secretion, causes significant changes in surface N-glycoproteome expression. Taken together, this β-cell N-glycoproteome resource provides a comprehensive view on the composition of β-cell surface proteins and expands the scope of signaling systems potentially involved in mediating responses of β-cells to various forms of (patho)physiologic stress and the extent of dynamic remodeling of surface N-glycoprotein expression associated with metabolic and hormonal stimulation. Moreover, it provides a foundation for the development of diabetes medicines that target or are derived from the β-cell surface N-glycoproteome.
细胞表面 N-糖蛋白为细胞与其环境的关键界面提供了服务,并为药物和生物标志物发现的治疗靶点提供了服务。因此,全面描述它们是一个艰巨的挑战。胰腺的β细胞在血糖稳态中起着至关重要的作用,其功能的破坏会导致糖尿病。通过将细胞表面和全细胞捕获技术与高通量定量蛋白质组学分析相结合,我们报告了从小鼠 MIN6 β细胞和人胰岛中共鉴定出 956 种独特的 N-糖蛋白。其中 349 种蛋白包含潜在的表面 N-糖蛋白,包括孤儿 G 蛋白偶联受体、新型蛋白酶、受体蛋白激酶和磷酸酶。有趣的是,用葡萄糖和激素 GLP1 刺激 MIN6 β细胞,已知这两种物质可刺激胰岛素分泌,会导致表面 N-糖蛋白组表达发生显著变化。总之,该β细胞 N-糖蛋白组资源提供了对β细胞表面蛋白组成的全面了解,并扩展了参与调节β细胞对各种形式的(病理)生理应激反应以及与代谢和激素刺激相关的表面 N-糖蛋白表达的动态重塑的信号转导系统的范围。此外,它为开发针对β细胞表面 N-糖蛋白组或源自该糖蛋白组的糖尿病药物提供了基础。