首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Introduction of disease-related mitochondrial DNA deletions into HeLa cells lacking mitochondrial DNA results in mitochondrial dysfunction.
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Introduction of disease-related mitochondrial DNA deletions into HeLa cells lacking mitochondrial DNA results in mitochondrial dysfunction.

机译:将疾病相关的线粒体DNA缺失引入缺乏线粒体DNA的HeLa细胞会导致线粒体功能障碍。

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摘要

Mutant mitochondrial DNA with large-scale deletions (delta-mtDNA) has been frequently observed in patients with chronic progressive external ophthalmoplegia (CPEO), a subgroup of the mitochondrial encephalomyopathies. To exclude involvement of the nuclear genome in expression of the mitochondrial dysfunction characteristic of CPEO, we introduced the mtDNA of a CPEO patient into clonal mtDNA-less HeLa cells and isolated cybrid clones. Quantitation of delta-mtDNA in the cybrids revealed that delta-mtDNA was selectively propagated with higher levels of delta-mtDNA correlating with slower cellular growth rate. In these cybrid clones, translational complementation of the missing tRNAs occurred only when delta-mtDNA was less than 60% of the total mtDNA, whereas accumulation of delta-mtDNA to greater than 60% resulted in progressive inhibition of overall mitochondrial translation as well as reduction of cytochrome c oxidase activity throughout the organelle population. Because these cybrids shared the same nuclear background as HeLa cells, these results suggest that large-scale deletion mutations of mtDNA alone are sufficient for the mitochondrial dysfunction characteristic of CPEO.
机译:慢性进行性外眼肌麻痹(CPEO)是线粒体脑脊髓病的一个亚组,经常观察到具有大规模缺失的突变线粒体DNA(δ-mtDNA)。为了排除核基因组参与CPEO的线粒体功能异常的表达,我们将CPEO患者的mtDNA引入了无mtDNA克隆的HeLa细胞和分离的杂交克隆中。定量对杂种中的delta-mtDNA的揭示表明,delta-mtDNA是选择性繁殖的,其中delta-mtDNA的含量较高,与细胞生长速度较慢有关。在这些杂种克隆中,仅当delta-mtDNA小于总mtDNA的60%时,才会发生缺失tRNA的翻译互补,而delta-mtDNA的积累至60%以上会导致线粒体整体翻译的逐步抑制以及还原细胞器群体中细胞色素C氧化酶活性的变化因为这些杂种与HeLa细胞具有相同的核背景,所以这些结果表明,仅mtDNA的大规模缺失突变就足以解决CPEO的线粒体功能障碍。

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