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首页> 外文期刊>Disease models & mechanisms: DMM >The Parkinson's disease-associated protein DJ-1 plays a positive nonmitochondrial role in endocytosis in Dictyostelium cells
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The Parkinson's disease-associated protein DJ-1 plays a positive nonmitochondrial role in endocytosis in Dictyostelium cells

机译:帕金森氏病相关蛋白DJ-1在线粒体细胞内吞作用中发挥积极的非线粒体作用

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摘要

The loss of function of DJ-1 caused by mutations in DJ1 causes a form of familial Parkinson's disease (PD). However, the role of DJ-1 in healthy and in PD cells is poorly understood. Even its subcellular localization in mammalian cells is uncertain, with both cytosolic and mitochondrial locations having been reported. We show here that DJ-1 is normally located in the cytoplasm in healthy Dictyostelium discoideum cells. With its unique life cycle, straightforward genotype-phenotype relationships, experimental accessibility and genetic tractability, D. discoideum offers an attractive model to investigate the roles of PD-associated genes. Furthermore, the study of mitochondrial biology, mitochondrial genome transcription and AMP-activated protein kinase-mediated cytopathologies in mitochondrial dysfunction have been well developed in this organism. Unlike mammalian systems, Dictyostelium mitochondrial dysfunction causes a reproducible and readily assayed array of aberrant phenotypes: defective phototaxis, impaired growth, normal rates of endocytosis and characteristic defects in multicellular morphogenesis. This makes it possible to study whether the underlying cytopathological mechanisms of familial PD involve mitochondrial dysfunction. DJ-1 has a single homologue in the Dictyostelium genome. By regulating the expression level of DJ-1 in D. discoideum , we show here that in unstressed cells, DJ-1 is required for normal rates of endocytic nutrient uptake (phagocytosis and, to a lesser extent, pinocytosis) and thus growth. Reduced expression of DJ-1 had no effect on phototaxis in the multicellular migratory ‘slug’ stage of the life cycle, but resulted in thickened stalks in the final fruiting bodies. This pattern of phenotypes is distinct from that observed in Dictyostelium to result from mitochondrial dyfunction. Direct measurement of mitochondrial respiratory function in intact cells revealed that DJ-1 knockdown stimulates whereas DJ-1 overexpression inhibits mitochondrial activity. Together, our results suggest positive roles for DJ-1 in endocytic pathways and loss-of-function cytopathologies that are not associated with impaired mitochondrial function.
机译:DJ1突变引起的DJ-1功能丧失导致家族性帕金森氏病(PD)。但是,人们对DJ-1在健康和PD细胞中的作用知之甚少。甚至其在哺乳动物细胞中的亚细胞定位都是不确定的,已经报道了胞质和线粒体的位置。我们在这里显示DJ-1通常位于健康的盘基网柄菌细胞中的细胞质中。由于其独特的生命周期,直接的基因型-表型关系,实验可及性和遗传易处理性,D。discoideum提供了一个有吸引力的模型来研究PD相关基因的作用。此外,在这种生物中,线粒体功能障碍的线粒体生物学,线粒体基因组转录和AMP激活的蛋白激酶介导的细胞病理学研究已经得到了很好的发展。与哺乳动物系统不同,盘基线粒体线粒体功能障碍会导致可重复的且易于检测的异常表型阵列:趋光性缺陷,生长受损,内吞率正常以及多细胞形态发生中的特征缺陷。这使得研究家族性PD的潜在细胞病理学机制是否涉及线粒体功能障碍成为可能。 DJ-1在双歧杆菌基因组中只有一个同源物。通过调节D.-1在D.discoideum中的表达水平,我们在这里表明,在未受压力的细胞中,DJ-1是正常速率的内吞养分摄取(吞噬作用,在较小程度上是胞吞作用)并因此生长所必需的。 DJ-1的表达降低在生命周期的多细胞迁移“ sl”阶段对趋光性没有影响,但导致最终子实体中茎的增稠。这种表型与线粒体中观察到的不同,是线粒体功能障碍引起的。直接测量完整细胞中的线粒体呼吸功能显示DJ-1敲低刺激,而DJ-1过表达抑制线粒体活性。总之,我们的结果表明DJ-1在与线粒体功能受损无关的胞吞途径和功能丧失细胞病理学中发挥着积极作用。

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