van Lier Marjolijn, Verhoef Sandra, Cauwenberghs Sandra, Heemskerk Johan W M, Akkerman Jan-Willem N, Heijnen Harry F G
Department of Clinical Chemistry and Hematology and Cell Microscopy Center, UMCU, Utrecht, The Netherlands.
Thromb Haemost. 2008 Jun;99(6):1068-78. doi: 10.1160/TH07-08-0528.
Several studies have highlighted a specific role for membrane cholesterol domains in platelet signalling. Upon adhesion to von Willebrand factor (VWF) or collagen, cholesterol-rich domains (CRDs) accumulate in filopodial extensions and selectively harbour counterpart receptors (GPIb and GPVI) and associated signalling molecules. In the present study we have addressed the role of membrane cholesterol in Ca(2+) signalling and secretion during the interaction of platelets with VWF and collagen. VWF/ristocetin-induced platelet aggregation was delayed after treatment with methyl beta-cyclodextrin (mbCD), but the maximal aggregation response was not affected. Platelet spreading but not adhesion to immobilised VWF under flow was attenuated by cholesterol removal, and accompanied by moderate lowering in the spiking Ca(2+) response. On the other hand, platelet interaction with collagen was quite sensitive to cholesterol depletion. Platelet aggregation decreased after treatment with mbCD, and Ca(2+) responses were decreased, both under static and flow conditions. Cholesterol depletion affected the secondary feedback activation via release of thromboxane A(2) and ADP. The collagen-induced secretion of alpha granules and surface translocation of P-selectin and CD63 was also critically affected by cholesterol depletion. Confocal microscopy showed localization of p-Tyr at sites of contact with substrate and other platelets, where also CRDs accumulate. Our data thus reveal a more critical role for membrane cholesterol in collagen-induced than in VWF-induced Ca(2+) signalling, and furthermore support the concept that secondary activation responses are dependent on intact CRDs.
多项研究强调了膜胆固醇结构域在血小板信号传导中的特定作用。血小板黏附于血管性血友病因子(VWF)或胶原蛋白后,富含胆固醇的结构域(CRDs)在丝状伪足延伸中积聚,并选择性地容纳相应受体(糖蛋白Ib和糖蛋白VI)及相关信号分子。在本研究中,我们探讨了膜胆固醇在血小板与VWF和胶原蛋白相互作用过程中钙(Ca2+)信号传导和分泌中的作用。用甲基-β-环糊精(mbCD)处理后,VWF/瑞斯托菌素诱导的血小板聚集延迟,但最大聚集反应未受影响。去除胆固醇可减弱血小板在流动状态下对固定化VWF的铺展但不影响黏附,并伴有尖峰状Ca2+反应适度降低。另一方面,血小板与胶原蛋白的相互作用对胆固醇耗竭相当敏感。用mbCD处理后,血小板聚集减少,在静态和流动条件下Ca2+反应均降低。胆固醇耗竭影响了通过血栓素A2和ADP释放的二次反馈激活。胆固醇耗竭还严重影响了胶原蛋白诱导的α颗粒分泌以及P-选择素和CD63的表面转位。共聚焦显微镜显示磷酸化酪氨酸定位于与底物和其他血小板接触的部位,CRDs也在这些部位积聚。因此,我们的数据揭示了膜胆固醇在胶原蛋白诱导的Ca2+信号传导中比在VWF诱导的Ca2+信号传导中起更关键的作用,并且进一步支持了二次激活反应依赖于完整CRDs这一概念。