Department of Biomedical Engineering, Oregon Health & Science University, Portland, Oregon;
Am J Physiol Cell Physiol. 2013 Dec 15;305(12):C1230-9. doi: 10.1152/ajpcell.00053.2013. Epub 2013 Sep 11.
The tubulin cytoskeleton plays a key role in maintaining the characteristic quiescent discoid shape of resting platelets. Upon activation, platelets undergo a dramatic change in shape; however, little is known of how the microtubule system contributes to regulating platelet shape and function. Here we investigated the role of the covalent modification of α-tubulin by acetylation in the regulation of platelet physiology during activation. Superresolution microscopy analysis of the platelet tubulin cytoskeleton showed that the marginal band together with an interconnected web of finer tubulin structures collapsed upon platelet activation with the glycoprotein VI (GPVI)-agonist collagen-related peptide (CRP). Western blot analysis revealed that α-tubulin was acetylated in resting platelets and deacetylated during platelet activation. Tubacin, a specific inhibitor of the tubulin deacetylase HDAC6, prevented tubulin deacetylation upon platelet activation with CRP. Inhibition of HDAC6 upregulated tubulin acetylation and disrupted the organization of the platelet microtubule marginal band without significantly affecting platelet volume changes in response to CRP stimulation. HDAC6 inhibitors also inhibited platelet aggregation in response to CRP and blocked platelet signaling events upstream of platelet Rho GTPase activation. Together, these findings support a role for acetylation signaling in controlling the resting structure of the platelet tubulin marginal band as well as in the coordination of signaling systems that drive platelet cytoskeletal changes and aggregation.
微管细胞骨架在维持静止血小板特征性的盘状形态中起着关键作用。血小板激活后会发生形态的剧烈变化,但对于微管系统如何调节血小板的形态和功能知之甚少。本研究旨在探讨 α-微管蛋白乙酰化修饰在血小板激活过程中对血小板生理功能的调控作用。对血小板微管细胞骨架的超分辨率显微镜分析显示,血小板激活后,边缘带与较细的微管结构的互联网络一起崩溃,这种变化是由糖蛋白 VI(GPVI)激动剂胶原蛋白相关肽(CRP)引起的。Western blot 分析显示,α-微管蛋白在静止血小板中被乙酰化,在血小板激活过程中被去乙酰化。特异性的微管去乙酰化酶 HDAC6 抑制剂 tubacin 可阻止 CRP 诱导的血小板激活过程中的微管去乙酰化。抑制 HDAC6 可上调微管乙酰化水平,并破坏血小板微管边缘带的组织结构,但对 CRP 刺激引起的血小板体积变化影响不大。HDAC6 抑制剂还可抑制 CRP 诱导的血小板聚集,并阻断血小板 Rho GTPase 激活上游的信号事件。综上所述,这些发现支持乙酰化信号在控制血小板微管边缘带的静止结构以及协调驱动血小板细胞骨架变化和聚集的信号系统中的作用。