Senis Yotis A, Mazharian Alexandra, Mori Jun
Centre for Cardiovascular Sciences, Institute of Biomedical Research, School of Clinical and Experimental Medicine, College of Medical and Dental Sciences, University of Birmingham, Edgbaston, Birmingham, United Kingdom.
Blood. 2014 Sep 25;124(13):2013-24. doi: 10.1182/blood-2014-01-453134. Epub 2014 Aug 12.
Src family kinases (SFKs) play a central role in mediating the rapid response of platelets to vascular injury. They transmit activation signals from a diverse repertoire of platelet surface receptors, including the integrin αIIbβ3, the immunoreceptor tyrosine-based activation motif-containing collagen receptor complex GPVI-FcR γ-chain, and the von Willebrand factor receptor complex GPIb-IX-V, which are essential for thrombus growth and stability. Ligand-mediated clustering of these receptors triggers an increase in SFK activity and downstream tyrosine phosphorylation of enzymes, adaptors, and cytoskeletal proteins that collectively propagate the signal and coordinate platelet activation. A growing body of evidence has established that SFKs also contribute to Gq- and Gi-coupled receptor signaling that synergizes with primary activation signals to maximally activate platelets and render them prothrombotic. Interestingly, SFKs concomitantly activate inhibitory pathways that limit platelet activation and thrombus size. In this review, we discuss past discoveries that laid the foundation for this fundamental area of platelet signal transduction, recent progress in our understanding of the distinct and overlapping functions of SFKs in platelets, and new avenues of research into mechanisms of SFK regulation. We also highlight the thrombotic and hemostatic consequences of targeting platelet SFKs.
Src家族激酶(SFKs)在介导血小板对血管损伤的快速反应中起核心作用。它们从多种血小板表面受体传递激活信号,包括整合素αIIbβ3、含免疫受体酪氨酸激活基序的胶原受体复合物GPVI-FcRγ链以及血管性血友病因子受体复合物GPIb-IX-V,这些受体对于血栓的生长和稳定至关重要。这些受体的配体介导的聚集触发SFK活性增加以及酶、衔接蛋白和细胞骨架蛋白的下游酪氨酸磷酸化,这些共同传播信号并协调血小板激活。越来越多的证据表明,SFKs也有助于Gq和Gi偶联受体信号传导,该信号传导与初级激活信号协同作用,以最大程度地激活血小板并使其具有促血栓形成作用。有趣的是,SFKs同时激活限制血小板激活和血栓大小的抑制途径。在本综述中,我们讨论了为血小板信号转导这一基础领域奠定基础的以往发现、我们对SFKs在血小板中独特和重叠功能理解的最新进展以及SFK调节机制的新研究途径。我们还强调了靶向血小板SFKs的血栓形成和止血后果。