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Human stem cell aging: do mitochondrial DNA mutations have a causal role?

机译:人类干细胞衰老:线粒体DNA突变是否具有因果作用?

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摘要

A decline in the replicative and regenerative capacity of adult stem cell populations is a major contributor to the aging process. Mitochondrial DNA (mtDNA) mutations clonally expand with age in human stem cell compartments including the colon, small intestine, and stomach, and result in respiratory chain deficiency. Studies in a mouse model with high levels of mtDNA mutations due to a defect in the proofreading domain of the mtDNA polymerase γ (mtDNA mutator mice) have established causal relationships between the accumulation of mtDNA point mutations, stem cell dysfunction, and premature aging. These mtDNA mutator mice have also highlighted that the consequences of mtDNA mutations upon stem cells vary depending on the tissue. In this review, we present evidence that these studies in mice are relevant to normal human stem cell aging and we explore different hypotheses to explain the tissue-specific consequences of mtDNA mutations. In addition, we emphasize the need for a comprehensive analysis of mtDNA mutations and their effects on cellular function in different aging human stem cell populations.
机译:成年干细胞群体的复制和再生能力下降是衰老过程的主要因素。线粒体DNA(mtDNA)突变会随着年龄的增长在包括结肠,小肠和胃在内的人类干细胞区室中克隆增长,并导致呼吸链缺乏。由于mtDNA聚合酶γ的校对域存在缺陷而导致mtDNA突变水平较高的小鼠模型(mtDNA mutator小鼠)的研究建立了mtDNA点突变累积,干细胞功能障碍和早衰之间的因果关系。这些mtDNA突变小鼠还强调了mtDNA突变对干细胞的影响取决于组织。在这篇综述中,我们提供证据表明这些小鼠研究与正常人干细胞衰老有关,并且我们探索不同的假设来解释mtDNA突变的组织特异性后果。此外,我们强调需要对mtDNA突变及其对不同衰老的人类干细胞群体的细胞功能的影响进行全面分析。

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