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The determination of complete human mitochondrial DNA sequences in singlecells: implications for the study of somatic mitochondrial DNA pointmutations

机译:单细胞中完整的人类线粒体DNA序列的确定:对体细胞线粒体DNA点突变研究的意义

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Studies of single cells have previously shown intracellular clonal expansion of mitochondrial DNA (mtDNA) mutations to levels that can cause a focal cytochrome c oxidase (COX) defect. Whilst techniques are available to study mtDNA rearrangements at the level of the single cell, recent interest has focused on the possible role of somatic mtDNA point mutations in ageing, neurodegenerative disease and cancer. We have therefore developed a method that permits the reliable determination of the entire mtDNA sequence from single cells without amplifying contaminating, nuclear-embedded pseudogenes. Sequencing and PCR-RFLP analyses of individual COX-negative muscle fibres from a patient with a previously described heteroplasmic COX II (T7587C) mutation indicate that mutant loads as low as 30% can be reliably detected by sequencing. This technique will be particularly useful In identifying the mtDNA mutational spectra in age-related COX-negative cells and will increase our understanding of the pathogenetic mechanisms by which they occur.
机译:单个细胞的研究以前显示线粒体DNA(mtDNA)突变的细胞内克隆扩展到可以引起局灶性细胞色素C氧化酶(COX)缺陷的水平。尽管已有技术可用于研究单细胞水平的mtDNA重排,但最近的关注点集中在体细胞mtDNA点突变在衰老,神经退行性疾病和癌症中的可能作用。因此,我们开发了一种方法,该方法可从单个细胞可靠地确定整个mtDNA序列,而无需扩增污染的核嵌入假基因。对具有先前描述的异质COX II(T7587C)突变的患者的单个COX阴性肌纤维进行测序和PCR-RFLP分析表明,通过测序可以可靠地检测出低至30%的突变体负荷。这项技术在鉴定与年龄相关的COX阴性细胞中的mtDNA突变谱时将特别有用,并将增进我们对它们发生的发病机制的了解。

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