School of Physiology, Pharmacology and Neuroscience, University of Bristol , Bristol, UK, BS8 1TD.
Platelets. 2020 Jul 3;31(5):641-645. doi: 10.1080/09537104.2019.1686754. Epub 2019 Nov 4.
The principal demonstrated role of the nonvisual arrestins is to limit G protein-coupled receptor (GPCR) signaling. Nonetheless, a direct demonstration of this fundamental ability in platelets remains lacking, despite the prominent role played by GPCRs in platelet activation. This paper describes the basic characterization of the activatory responses of platelets from mice lacking arrestin-3 (arr3-/-), revealing pleiotropic roles dependent on GPCR ligand. Functionally, arrestin-3 acts as a brake on platelet aggregation regardless of ligand tested. Downstream of P2Y receptors, arr3-/- mice show increased secretion and integrin activation mirrored by enhanced intracellular calcium signaling and global PKC-dependent phosphorylation. Furthermore, P2Y12 receptor (P2Y12R) activity as assessed by ADP-mediated reduction of VASP phosphorylation is enhanced in arr3-/-mice. Downstream of PAR receptors there are similar increases in secretion and integrin activation in arr3-/- mice, together with enhanced PKC activity. Last, in arr3-/- mice the TP receptor displays unaltered PKC activity but markedly reduced calcium responses, which together with the kinetics of the aggregation response suggested a unique positive regulatory role for arrestin-3 in TP signaling. Overall, this paper reveals pleiotropic roles for arrestin-3 dependent on GPCR ligand describing for the first time a negative regulatory function for arrestin-3 in platelets.
非视觉 arrestin 的主要作用是限制 G 蛋白偶联受体 (GPCR) 的信号转导。尽管 GPCR 在血小板激活中起着重要作用,但在血小板中直接证明这种基本能力仍然缺乏。本文描述了缺乏 arrestin-3 (arr3-/-) 的小鼠血小板激活反应的基本特征,揭示了依赖于 GPCR 配体的多效性作用。在功能上,无论测试的配体如何,arrestin-3 都能抑制血小板聚集。在 P2Y 受体下游,arr3-/- 小鼠表现出增强的分泌和整合素激活,这与增强的细胞内钙信号和全局 PKC 依赖性磷酸化相匹配。此外,ADP 介导的 VASP 磷酸化减少评估的 P2Y12 受体 (P2Y12R) 活性在 arr3-/- 小鼠中增强。在 PAR 受体下游,arr3-/- 小鼠的分泌和整合素激活也增加,同时 PKC 活性增强。最后,在 arr3-/- 小鼠中,TP 受体显示出不变的 PKC 活性,但钙反应明显降低,与聚集反应的动力学一起表明 arrestin-3 在 TP 信号转导中具有独特的正调节作用。总的来说,本文揭示了依赖于 GPCR 配体的 arrestin-3 的多效性作用,首次描述了 arrestin-3 在血小板中的负调节功能。