Locke Darren, Chen Hong, Liu Ying, Liu Changdong, Kahn Mark L
Division of Cardiology, Department of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6100, USA.
J Biol Chem. 2002 May 24;277(21):18801-9. doi: 10.1074/jbc.M111520200. Epub 2002 Feb 13.
The platelet collagen receptor glycoprotein VI (GPVI) couples to the immune receptor adaptor Fc receptor gamma-chain (FcRgamma) and signals using many of the same intracellular signaling molecules as immune receptors. Studies of immune receptor signaling have revealed a critical role for specialized areas of the cell membrane known as lipid rafts, which are enriched in essential signaling molecules. However, the role of lipid rafts in signaling in nonimmune cells such as platelets remains poorly defined. This study shows that GPVI-FcRgamma does not constitutively associate with rafts, but is recruited to lipid rafts following receptor stimulation in both GPVI-expressing RBL-2H3 cells and human platelets. FcRgamma is required for GPVI association with lipid rafts, as mutant GPVI receptors that do not couple to FcRgamma were unable to associate with lipid rafts after receptor clustering. Following GPVI stimulation in platelets, virtually all phosphorylated FcRgamma was found in lipid rafts, but inhibition of FcRgamma phosphorylation did not block receptor association with lipid rafts. This work demonstrates that lipid rafts orchestrate GPVI receptor signaling in platelets in a manner analogous to immune cell receptors and supports a model of GPVI signaling in which FcRgamma phosphorylation is controlled by ligand-dependent association with lipid rafts.
血小板胶原受体糖蛋白VI(GPVI)与免疫受体适配器Fc受体γ链(FcRγ)偶联,并使用许多与免疫受体相同的细胞内信号分子进行信号传导。对免疫受体信号传导的研究揭示了细胞膜特定区域(称为脂筏)的关键作用,脂筏富含重要的信号分子。然而,脂筏在血小板等非免疫细胞信号传导中的作用仍不清楚。本研究表明,GPVI-FcRγ并非组成性地与脂筏结合,而是在表达GPVI的RBL-2H3细胞和人血小板中受体刺激后被招募到脂筏。FcRγ是GPVI与脂筏结合所必需的,因为不与FcRγ偶联的突变型GPVI受体在受体聚集后无法与脂筏结合。在血小板中GPVI刺激后,几乎所有磷酸化的FcRγ都存在于脂筏中,但抑制FcRγ磷酸化并不阻止受体与脂筏结合。这项工作表明,脂筏以类似于免疫细胞受体的方式协调血小板中的GPVI受体信号传导,并支持一种GPVI信号传导模型,其中FcRγ磷酸化由与脂筏的配体依赖性结合控制。