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Deciphering the Molecular Signals of PINK1/Parkin Mitophagy

机译:破解PINK1 / Parkin线粒体的分子信号

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摘要

Functional mitochondria are critically important for the maintenance of cellular integrity and survival. Mitochondrial dysfunction is a major contributor to neurodegenerative diseases including Parkinson's disease (PD). Two gene products mutated in familial Parkinsonism, PINK1 and Parkin, function together to degrade damaged mitochondria through a selective form of autophagy termed mitophagy. PINK1 accumulates on the surface of dysfunctional mitochondria where it simultaneously recruits and activates Parkin's E3 ubiquitin ligase activity. This forms the basis of multiple signaling events that culminate in engulfment of damaged mitochondria within autophagosomes and degradation by lysosomes. This review discusses the molecular signals of PINK1/Parkin mitophagy and the ubiquitin code that drives not only Parkin recruitment and activation by PINK1 but also the downstream signaling events of mitophagy.
机译:功能性线粒体对于维持细胞完整性和存活至关重要。线粒体功能障碍是包括帕金森氏症(PD)在内的神经退行性疾病的主要病因。在家族性帕金森病中突变的两种基因产物PINK1和帕金森一起发挥作用,通过称为自噬的选择性自噬形式降解受损的线粒体。 PINK1积聚在功能异常的线粒体表面,同时募集并激活Parkin的E3泛素连接酶活性。这形成了多种信号传递事件的基础,这些信号传递事件最终导致自噬小体吞噬受损的线粒体并被溶酶体降解。这篇评论讨论了PINK1 / Parkin线粒体的分子信号和泛素代码,不仅驱动PINK1招募和激活Parkin,而且还驱动线粒体的下游信号事件。

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