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Platelets and Thrombopoiesis: Role for ADAP in shear flow–induced platelet mechanotransduction

机译:血小板和血小板生成:ADAP在剪切流诱导的血小板机械转导中的作用

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摘要

Binding of platelets to fibrinogen via integrin αIIbβ3 stimulates cytoskeletal reorganization and spreading. These responses depend on tyrosine phosphorylation of multiple proteins by Src family members and Syk. Among Src substrates in platelets is adhesion- and degranulation-promoting adapter protein (ADAP), an adapter with potential binding partners: SLP-76, VASP, and SKAP-HOM. During studies of platelet function under shear flow, we discovered that ADAP−/− mouse platelets, unlike ADAP+/+ platelets, formed unstable thrombi in response to carotid artery injury. Moreover, fibrinogen-adherent ADAP−/− platelets in shear flow ex vivo showed reduced spreading and smaller zones of contact with the matrix. These abnormalities were not observed under static conditions, and they could not be rescued by stimulating platelets with a PAR4 receptor agonist or by direct αIIbβ3 activation with MnCl2, consistent with a defect in outside-in αIIbβ3 signaling. ADAP+/+ platelets subjected to shear flow assembled F-actin–rich structures that colocalized with SLP-76 and the Rac1 exchange factor, phospho-Vav1. In contrast, platelets deficient in ADAP, but not those deficient in VASP or SKAP-HOM, failed to form these structures. These results establish that ADAP is an essential component of αIIbβ3-mediated platelet mechanotransduction that promotes F-actin assembly and enables platelet spreading and thrombus stabilization under fluid shear stress.
机译:血小板通过整合素αIIbβ3与纤维蛋白原的结合可刺激细胞骨架的重组和扩散。这些反应取决于Src家族成员和Syk对多种蛋白质的酪氨酸磷酸化作用。血小板的Src底物中有促进粘附和脱粒的衔接蛋白(ADAP),一种具有潜在结合伴侣的衔接子:SLP-76,VASP和SKAP-HOM。在剪切流作用下的血小板功能研究中,我们发现ADAP -/-小鼠血小板与ADAP + / + 血小板不同,它对颈动脉损伤形成不稳定的血栓。而且,离体剪切流中粘附纤维蛋白原的ADAP -/-血小板显示出减少的散布和与基质接触的较小区域。这些异常在静态条件下未观察到,并且不能通过用PAR4受体激动剂刺激血小板或通过MnCl2直接激活αIIbβ3来挽救,这与αIIbβ3内-外信号转导的缺陷相一致。 ADAP + / + 血小板经过剪切流组装的富含F-肌动蛋白的结构,与SLP-76和Rac1交换因子phospho-Vav1共定位。相反,缺乏ADAP的血小板却没有形成VASP或SKAP-HOM的血小板,但未能形成这些结构。这些结果表明,ADAP是αIIbβ3介导的血小板机械转导的重要组成部分,可促进F-肌动蛋白的组装,并在流体剪切应力作用下使血小板扩散和血栓稳定。

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