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DJ-1 regulation of mitochondrial function and autophagy through oxidative stress

机译:DJ-1通过氧化应激调节线粒体功能和自噬

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摘要

The dysregulation of mitochondrial function has been implicated in the pathogenesis of Parkinson disease. Mutations in the parkin, PINK1 and DJ-1 genes all result in recessive parkinsonism. Although the protein products of these genes have not been fully characterized, it has been established that all three contribute to the maintenance of mitochondrial function. PINK1 and parkin act in a common pathway to regulate the selective autophagic removal of depolarized mitochondria, but the relationship between DJ-1 and PINK1- and/or parkin-mediated effects on mitochondria and autophagy is less clear. We have shown that loss of DJ-1 leads to mitochondrial phenotypes including reduced membrane potential, increased fragmentation and accumulation of autophagic markers. Supplementing DJ-1-deficient cells with glutathione reverses both mitochondrial and autophagic changes suggesting that DJ-1 may act to maintain mitochondrial function during oxidative stress and thereby alter mitochondrial dynamics and autophagy indirectly.
机译:线粒体功能失调与帕金森病的发病机理有关。帕金,PINK1和DJ-1基因的突变都会导致隐性帕金森病。尽管这些基因的蛋白质产物尚未完全表征,但已确定所有这三种都有助于维持线粒体功能。 PINK1和parkin在共同途径中调节去极化线粒体的选择性自噬去除,但DJ-1和PINK1和/或parkin介导的线粒体和自噬作用之间的关系尚不清楚。我们已经表明,DJ-1的缺失会导致线粒体表型,包括膜电位降低,片段化和自噬标记物的积累。用谷胱甘肽补充DJ-1缺乏的细胞可逆转线粒体和自噬的变化,这表明DJ-1可能在氧化应激期间起到维持线粒体功能的作用,从而间接改变线粒体的动力学和自噬。

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