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PINK1 deficiency enhances autophagy and mitophagy induction

机译:PINK1缺乏促进自噬和线粒体诱导

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摘要

Parkinson's disease (PD) is a neurodegenerative disorder with poorly understood etiology. Increasing evidence suggests that age-dependent compromise of the maintenance of mitochondrial function is a key risk factor. Several proteins encoded by PD-related genes are associated with mitochondria including PTEN-induced putative kinase 1 (PINK1), which was first identified as a gene that is upregulated by PTEN. Loss-of-function PINK1 mutations induce mitochondrial dysfunction and, ultimately, neuronal cell death. To mitigate the negative effects of altered cellular functions cells possess a degradation mechanism called autophagy for recycling damaged components; selective elimination of dysfunctional mitochondria by autophagy is termed mitophagy. Our study indicates that autophagy and mitophagy are upregulated in PINK1-deficient cells, and is the first report to demonstrate efficient fluxes by one-step analysis. We propose that autophagy is induced to maintain cellular homeostasis under conditions of non-regulated mitochondrial quality control.
机译:帕金森氏病(PD)是一种病因学知之甚少的神经退行性疾病。越来越多的证据表明,线粒体功能维持的年龄依赖性损害是关键的危险因素。 PD相关基因编码的几种蛋白质与线粒体相关,包括PTEN诱导的假定激酶1(PINK1),后者首先被鉴定为被PTEN上调的基因。功能丧失的PINK1突变诱导线粒体功能障碍,并最终导致神经元细胞死亡。为了减轻细胞功能改变的负面影响,细胞具有一种称为自噬的降解机制,可以回收受损的成分。通过自噬选择性消除功能异常的线粒体称为线粒体。我们的研究表明,在PINK1缺陷型细胞中自噬和线粒体上调,并且是第一个通过一步分析证明有效通量的报告。我们建议自噬诱导维持线粒体质量控制不受调控的条件下的细胞稳态。

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