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Parkin overexpression selects against a deleterious mtDNA mutation in heteroplasmic cybrid cells

机译:Parkin过表达选择针对异质杂交细胞中有害的mtDNA突变

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摘要

Mitochondrial genomes with deleterious mutations can replicate in cells along with wild-type genomes in a state of heteroplasmy, and are a cause of severe inherited syndromes, such as mitochondrial myopathy, encephalopathy, lactic acidosis, and stroke (MELAS), neuropathy, ataxia, retinitis pigmentosa-maternally inherited Leigh syndrome (NARP-MILS), and Leber's hereditary optic neuropathy (LHON). The cytosolic E3 ligase, Parkin, commonly mutated in recessive familial parkinsonism, translocates to depolarized mitochondria and induces their autophagic elimination, suggesting that Parkin may signal the selective removal of defective mitochondria within the cell. We report that long-term overexpression of Parkin can eliminate mitochondria with deleterious COXI mutations in heteroplasmic cybrid cells, thereby enriching cells for wild-type mtDNA and restoring cytochrome c oxidase activity. After relieving cybrid cells of Parkin overexpression, a more favorable wild-type to mutant mitochondrial genome ratio is stably maintained. These data support the model that Parkin functions in a mitochondrial quality control pathway. Additionally, they suggest that transiently increasing levels of Parkin expression might ameliorate certain mitochondrial diseases.
机译:具有有害突变的线粒体基因组可以与野生型基因组一起以异质状态在细胞中复制,并且是严重遗传综合征的原因,例如线粒体肌病,脑病,乳酸性酸中毒和中风(MELAS),神经病,共济失调,色素性视网膜炎-母亲遗传的雷氏综合征(NARP-MILS)和莱伯遗传性视神经病变(LHON)。通常在隐性家族性帕金森病中发生突变的胞质E3连接酶Parkin易位至去极化的线粒体并诱导其自噬消除,这表明Parkin可能表示选择性清除了细胞内有缺陷的线粒体。我们报告说,Parkin的长期过表达可以消除线粒体,使其在异质杂种细胞中具有有害的COXI突变,从而丰富细胞的野生型mtDNA并恢复细胞色素C氧化酶的活性。减轻帕金森族的杂交细胞后,稳定地维持了更有利的野生型与突变型线粒体基因组比率。这些数据支持帕金森在线粒体质量控制途径中起作用的模型。此外,他们认为,瞬时增加的Parkin表达水平可能会改善某些线粒体疾病。

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