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Hemostasis Thrombosis and Vascular Biology: Critical role for the mitochondrial permeability transition pore and cyclophilin D in platelet activation and thrombosis

机译:止血血栓形成和血管生物学:线粒体通透性过渡孔和亲环蛋白D在血小板活化和血栓形成中的关键作用

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摘要

Many of the cellular responses that occur in activated platelets resemble events that take place following activation of cell-death pathways in nucleated cells. We tested the hypothesis that formation of the mitochondrial permeability transition pore (MPTP), a key signaling event during cell death, also plays a critical role in platelet activation. Stimulation of murine platelets with thrombin plus the glycoprotein VI agonist convulxin resulted in a rapid loss of mitochondrial transmembrane potential (Δψm) in a subpopulation of activated platelets. In the absence of cyclophilin D (CypD), an essential regulator of MPTP formation, murine platelet activation responses were altered. CypD-deficient platelets exhibited defects in phosphatidylserine externalization, high-level surface fibrinogen retention, membrane vesiculation, and procoagulant activity. Also, in CypD-deficient platelet-rich plasma, clot retraction was altered. Stimulation with thrombin plus H2O2, a known activator of MPTP formation, also increased high-level surface fibrinogen retention, phosphatidylserine externalization, and platelet procoagulant activity in a CypD-dependent manner. In a model of carotid artery photochemical injury, thrombosis was markedly accelerated in CypD-deficient mice. These results implicate CypD and the MPTP as critical regulators of platelet activation and suggest a novel CypD-dependent negative-feedback mechanism regulating arterial thrombosis.
机译:在活化的血小板中发生的许多细胞反应类似于在有核细胞中激活细胞死亡途径后发生的事件。我们测试了以下假设:线粒体通透性过渡孔(MPTP)的形成,细胞死亡期间的关键信号事件,在血小板活化中也起着关键作用。用凝血酶和糖蛋白VI激动剂惊厥毒素刺激鼠血小板会导致活化的血小板亚群中线粒体跨膜电位(Δψm)的快速损失。在缺乏亲环蛋白D(CypD),MPTP形成的重要调节剂,小鼠血小板活化反应被改变。缺乏CypD的血小板在磷脂酰丝氨酸外在化,高水平的表面纤维蛋白原保留,膜囊泡和促凝活性方面表现出缺陷。同样,在缺乏CypD的富含血小板的血浆中,血块缩回发生了改变。凝血酶加H2O2(一种已知的MPTP形成活化剂)刺激,也以CypD依赖性方式增加了高水平的表面纤维蛋白原保留,磷脂酰丝氨酸外在化和血小板促凝活性。在颈动脉光化学损伤的模型中,CypD缺陷小鼠的血栓形成明显加速。这些结果暗示CypD和MPTP作为血小板活化的关键调节剂,并提出了一种新型的依赖CypD的负反馈机制来调节动脉血栓形成。

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