Department of Cardiometabolic Health, University of Melbourne, Melbourne, Victoria, Australia.
Atherothrombosis and Vascular Biology, Baker Heart and Diabetes Institute, Melbourne, Victoria, Australia.
Proteomics. 2024 Jun;24(11):e2300391. doi: 10.1002/pmic.202300391. Epub 2024 Mar 31.
Arterial thrombosis manifesting as heart attack and stroke is the leading cause of death worldwide. Platelets are central mediators of thrombosis that can be activated through multiple activation pathways. Platelet-derived extracellular vesicles (pEVs), also known as platelet-derived microparticles, are granular mixtures of membrane structures produced by platelets in response to various activating stimuli. Initial studies have attracted interest on how platelet agonists influence the composition of the pEV proteome. In the current study, we used physiological platelet agonists of varying potencies which reflect the microenvironments that platelets experience during thrombus formation: adenosine diphosphate, collagen, thrombin as well as a combination of thrombin/collagen to induce platelet activation and pEV generation. Proteomic profiling revealed that pEVs have an agonist-dependent altered proteome in comparison to their cells of origin, activated platelets. Furthermore, we found that various protein classes including those related to coagulation and complement (prothrombin, antithrombin, and plasminogen) and platelet activation (fibrinogen) are attributed to platelet EVs following agonist stimulation. This agonist-dependent altered proteome suggests that protein packaging is an active process that appears to occur without de novo protein synthesis. This study provides new information on the influence of physiological agonist stimuli on the biogenesis and proteome landscape of pEVs.
动脉血栓形成表现为心脏病发作和中风,是全球范围内的主要死亡原因。血小板是血栓形成的主要介质,可以通过多种激活途径被激活。血小板衍生的细胞外囊泡(pEVs),也称为血小板衍生的微泡,是血小板对各种激活刺激反应产生的膜结构颗粒混合物。最初的研究引起了人们的兴趣,即血小板激动剂如何影响 pEV 蛋白质组的组成。在本研究中,我们使用了不同效力的生理血小板激动剂,这些激动剂反映了血小板在血栓形成过程中经历的微环境:二磷酸腺苷、胶原、凝血酶以及凝血酶/胶原的组合,以诱导血小板激活和 pEV 的产生。蛋白质组学分析显示,与原始细胞激活血小板相比,pEVs 的蛋白质组在激动剂的作用下发生了改变。此外,我们发现,包括与凝血和补体(凝血酶原、抗凝血酶和纤溶酶原)和血小板激活(纤维蛋白原)相关的各种蛋白质类别都归因于血小板 EVs 在激动剂刺激后。这种激动剂依赖性改变的蛋白质组表明,蛋白质包装是一个主动的过程,似乎不需要从头合成蛋白质。本研究提供了关于生理激动剂刺激对 pEV 生物发生和蛋白质组图谱影响的新信息。