4.7 Article

Mitochondrial DNA-deletion mutations accumulate intracellularly to detrimental levels in aged human skeletal muscle fibers

期刊

AMERICAN JOURNAL OF HUMAN GENETICS
卷 79, 期 3, 页码 469-480

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UNIV CHICAGO PRESS
DOI: 10.1086/507132

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  1. NIA NIH HHS [R01 AG011604, AG11604] Funding Source: Medline

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Skeletal muscle - mass loss with age has severe health consequences, yet the molecular basis of the loss remains obscure. Although mitochondrial DNA ( mtDNA) - deletion mutations have been shown to accumulate with age, for these aberrant genomes to be physiologically relevant, they must accumulate to high levels intracellularly and be present in a significant number of cells. We examined mtDNA-deletion mutations in vastus lateralis (VL) muscle of human subjects aged 49 - 93 years, using both histologic and polymerase-chain-reaction (PCR) analyses, to determine the physiological and genomic integrity of mitochondria in aging human muscle. The number of VL muscle fibers exhibiting mitochondrial electrontransport-system (ETS) abnormalities increased from an estimated 6% at age 49 years to 31% at age 92 years. We analyzed the mitochondrial genotype of 48 single ETS-abnormal, cytochrome c oxidase-negative/succinate dehydrogenase-hyperreactive (COX5(-)/SDH++) fibers from normal aging human subjects and identified mtDNA-deletion mutations in all abnormal fibers. Deletion mutations were clonal within a fiber and concomitant to the COX5(-)/SDH++ region. Quantitative PCR analysis of wild-type and deletion-containing mtDNA genomes within ETS-abnormal regions of single fibers demonstrated that these deletion mutations accumulate to detrimental levels (190% of the total mtDNA).

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