School of Physiology, Pharmacology and Neuroscience, Biomedical Sciences Building, University of Bristol, Bristol, BS8 1TD, United Kingdom.
InteRNA Technologies BV, Utrecht, 3584 CM, The Netherlands.
Sci Rep. 2018 Sep 26;8(1):14377. doi: 10.1038/s41598-018-32716-4.
PTEN-induced putative kinase (PINK) 1 is regarded as a master regulator of cellular mitophagy such that loss of function mutations contribute to early onset Parkinson's disease, through aberrant mitochondrial control and function. Mitochondrial function is key to platelet procoagulant activity, controlling the haemostatic response to vessel injury, but can also predispose blood vessels to thrombotic complications. Here, we sought to determine the role of PINK1 in platelet mitochondrial health and function using PINK1 knockout (KO) mice. The data largely show an absence of such a role. Haematological analysis of blood counts from KO mice was comparable to wild type. Quantification of mitochondrial mass by citrate synthase activity assay or expression of mitochondrial markers were comparable, suggesting normal mitophagy in KO platelets. Analysis of mitochondrial permeability transition pore opening, changes in mitochondrial membrane potential and calcium signalling to platelet activation were unaffected by loss of PINK1, whereas subtle enhancements of activation-induced reactive oxygen species were detected. Platelet aggregation, integrin activation, α- and dense granule secretion and phosphatidylserine exposure were unaltered in KO platelets while mouse tail bleeding responses were similar to wild type. Together these results demonstrate that PINK1 does not regulate basal platelet mitophagy and is dispensable for platelet function.
PTEN 诱导假定激酶 (PINK) 1 被认为是细胞线粒体自噬的主要调节因子,功能丧失突变通过异常的线粒体控制和功能导致早发性帕金森病。线粒体功能是血小板促凝活性的关键,控制血管损伤后的止血反应,但也使血管容易发生血栓并发症。在这里,我们试图使用 PINK1 敲除 (KO) 小鼠确定 PINK1 在血小板线粒体健康和功能中的作用。数据主要表明不存在这样的作用。KO 小鼠的血液学分析显示血细胞计数与野生型相当。柠檬酸合酶活性测定或线粒体标记物表达的线粒体质量定量相当,表明 KO 血小板中存在正常的线粒体自噬。线粒体通透性转换孔开放、线粒体膜电位变化和钙信号对血小板激活的分析不受 PINK1 缺失的影响,而检测到激活诱导的活性氧的细微增强。KO 血小板的血小板聚集、整合素激活、α-和致密颗粒分泌以及血小板磷脂酰丝氨酸暴露没有改变,而小鼠尾巴出血反应与野生型相似。这些结果表明,PINK1 不调节基础血小板线粒体自噬,并且对血小板功能不是必需的。