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Mitochondrial DNA background modifies the bioenergetics of NARP/MILS ATP6 mutant cells

机译:线粒体DNA背景修饰NARP / MILS ATP6突变细胞的生物能

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Mutations in the mitochondrial DNA (mtDNA) encoded subunit 6 of ATPase (ATP6) are associated with variable disease expression, ranging from adult onset neuropathy, ataxia and retinitis pigmentosa (NARP) to fatal childhood maternally inherited Leigh's syndrome (MILS). Phenotypical variations have largely been attributed to mtDNA heteroplasmy. However, there is often a discrepancy between the levels of mutant mtDNA and disease severity. Therefore, the correlation among genetic defect, bioenergetic impairment and clinical outcome in NARP/MILS remains to be elucidated. We investigated the bioenergetics of cybrids from five patients carrying different ATP6 mutations: three harboring the T8993G, one with the T8993C and one with the T9176G mutation. The bioenergetic defects varied dramatically, not only among different ATP6 mutants, but also among lines carrying the same T8993G mutation. Mutants with the most severe ATP synthesis impairment showed defective respiration and disassembly of respiratory chain complexes. This indicates that respiratory chain defects modulate the bioenergetic impairment in NARP/MILS cells. Sequencing of the entire mtDNA from the different mutant cell lines identified variations in structural genes, resulting in amino acid changes that destabilize the respiratory chain. Taken together, these results indicate that the mtDNA background plays an important role in modulating the biochemical defects and clinical outcome in NARP/MILS.
机译:线粒体DNA(mtDNA)编码的ATPase(ATP6)的亚基6的突变与疾病的表达有关,范围从成年发作的神经病,共济失调和色素性视网膜炎(NARP)到致命的儿童期母亲遗传性Leigh综合征(MILS)。表型变异主要归因于mtDNA异质性。但是,突变体mtDNA的水平与疾病严重程度之间常常存在差异。因此,NARP / MILS中遗传缺陷,生物能损伤与临床结局之间的相关性尚待阐明。我们研究了来自五名携带不同ATP6突变的患者的混合体的生物能:三名携带T8993G,一名患有T8993C,另一名患有T9176G突变。不仅在不同的ATP6突变体之间,而且在携带相同T8993G突变的品系之间,生物能缺陷也发生了巨大变化。具有最严重的ATP合成损伤的突变体显示呼吸功能不良,呼吸链复合物分解。这表明呼吸链缺陷调节了NARP / MILS细胞中的生物能损伤。来自不同突变细胞系的整个mtDNA测序确定了结构基因的变异,从而导致了使呼吸链不稳定的氨基酸变化。综上,这些结果表明,mtDNA背景在调节NARP / MILS中的生化缺陷和临床结果中起着重要作用。

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    《Human Molecular Genetics 》 |2010年第2期| p.374-386| 共13页
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    Weill Medical College of Cornell University, 1300 York Avenue, New York, NY 10065, USA and;

    Weill Medical College of Cornell University, 1300 York Avenue, New York, NY 10065, USA and;

    Department of Neurology, College of Physicians and Surgeons, Columbia University, New York, NY 10032, USA;

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