mtDNA缺失患者骨骼肌的表型-基因型相关性。

C T Moraes, M Sciacco, E Ricci, C H Tengan, H Hao, E Bonilla, E A Schon, S DiMauro
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引用次数: 38

摘要

线粒体DNA (mtDNA)的大规模缺失与线粒体脑肌病亚群有关,通常以进行性眼外麻痹(PEO)和肌纤维线粒体增殖为特征。我们和其他人已经证明,mtDNA缺失患者的肌肉具有可变细胞色素c氧化酶(COX)缺乏和受影响肌纤维中线粒体合成多肽的减少。本研究总结了在患者肌肉中观察到的表型-基因型相关性。原位杂交显示,虽然大多数cox缺陷纤维的突变mtDNA水平增加,但它们几乎总是具有降低的正常mtDNA水平。对“常见缺失”患者正常和呼吸缺陷肌纤维中缺失和野生型mtdna的PCR定量分析显示,正常纤维中存在缺失mtdna(31 +/- 26%),但受损纤维中缺失mtdna的比例要高得多(95% +/- 2%)。在受影响的纤维中,缺失mtDNA的绝对水平也增加了,而野生型mtDNA的绝对水平显著降低。综上所述,我们的研究结果表明,尽管突变型和野生型线粒体基因组之间的特定比例可能是与mtDNA缺失相关的呼吸链缺陷的主要决定因素,但野生型mtDNA绝对数量的减少也可能起着重要的致病作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phenotype-genotype correlations in skeletal muscle of patients with mtDNA deletions.

Large-scale deletions of mitochondrial DNA (mtDNA) have been associated with a subgroup of mitochondrial encephalomyopathies, usually characterized by progressive external ophthalmoplegia (PEO) and mitochondrial proliferation in muscle fibers. We and others have shown that muscle from patients with mtDNA deletions have variable cytochrome c oxidase (COX) deficiency and reduction of mitochondrially-synthesized polypeptides in affected muscle fibers. The present work summarizes the phenotype-genotype correlations observed in patients' muscle. In situ hybridization revealed that, while most COX-deficient fibers had increased levels of mutant mtDNA, they almost invariably had reduced levels of normal mtDNA. PCR quantitation of both deleted and wild-type mtDNAs in normal and respiration-deficient muscle fibers from patients with the "common deletion" showed that deleted mtDNAs were present in normal fibers (31 +/- 26%), but their percentages were much higher in affected fibers (95% +/- 2%). Absolute levels of deleted mtDNA were also increased in affected fibers, whereas absolute levels of wild-type mtDNA were significantly reduced. Taken together, our results suggest that although a specific ratio between mutant and wild-type mitochondrial genomes is probably the major determinant of the respiratory chain deficiency associated with mtDNA deletions, the reduction in the absolute amounts of wild-type mtDNA may also play a significant pathogenetic role.

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