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Functional Impairment in Miro Degradation and Mitophagy Is a Shared Feature in Familial and Sporadic Parkinson's Disease

机译:Miro降解和线粒体功能受损是家族性和散发性帕金森氏病的共同特征

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Mitochondrial movements are tightly controlled to maintain energy homeostasis and prevent oxidative stress. Miro is an outer mitochondrial membrane protein that anchors mitochondria to microtubule motors and is removed to stop mitochondrial motility as an early step in the clearance of dysfunctional mitochondria. Here, using human induced pluripotent stem cell (iPSC)-derived neurons and other complementary models, we build on a previous connection of Parkinson's disease (PD)-linked PINK1 and Parkin to Miro by showing that a third PD-related protein, LRRK2, promotes Miro removal by forming a complex with Miro. Pathogenic LRRK2G2019S disrupts this function, delaying the arrest of damaged mitochondria and consequently slowing the initiation of mitophagy. Remarkably, partial reduction of Miro levels in LRRK2G2019S human neuron and Drosophila PD models rescues neurodegeneration. Miro degradation and mitochondrial motility are also impaired in sporadic PD patients. We reveal that prolonged retention of Miro, and the downstream consequences that ensue, may constitute a central component of PD pathogenesis.
机译:线粒体运动受到严格控制,以保持能量稳态并防止氧化应激。 Miro是一种线粒体外膜蛋白,可将线粒体锚定到微管马达上,并被清除以阻止线粒体的运动,这是清除功能异常的线粒体的第一步。在这里,我们使用人类诱导的多能干细胞(iPSC)衍生的神经元和其他互补模型,建立了帕金森氏病(PD)关联的PINK1和帕金与Miro的先前联系,方法是显示第三个PD相关蛋白LRRK2,通过与Miro形成复合物来促进Miro的去除。致病性LRRK2G2019S破坏了该功能,延迟了受损线粒体的阻滞并因此减慢了线粒体的起始。值得注意的是,LRRK2G2019S人类神经元和果蝇PD模型中Miro水平的部分降低可挽救神经退行性变。散发性PD患者的Miro降解和线粒体运动性也受损。我们发现,Miro的长期保留以及随之而来的下游后果可能构成PD发病机理的重要组成部分。

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