异质性
线粒体DNA
生物
遗传学
生殖系
人类线粒体遗传学
粒线体疾病
疾病
突变
人口
基因
医学
病理
社会学
人口学
作者
James B. Stewart,Patrick F. Chinnery
摘要
Mitochondrial DNA (mtDNA) mutations have been associated with numerous human diseases, from severe inherited disorders to common late-onset diseases. In this Review, the authors consider the origins of these mtDNA mutations in a single cell, their spread across populations and their contributions to disease risk. Common genetic variants of mitochondrial DNA (mtDNA) increase the risk of developing several of the major health issues facing the western world, including neurodegenerative diseases. In this Review, we consider how these mtDNA variants arose and how they spread from their origin on one single molecule in a single cell to be present at high levels throughout a specific organ and, ultimately, to contribute to the population risk of common age-related disorders. mtDNA persists in all aerobic eukaryotes, despite a high substitution rate, clonal propagation and little evidence of recombination. Recent studies have found that de novo mtDNA mutations are suppressed in the female germ line; despite this, mtDNA heteroplasmy is remarkably common. The demonstration of a mammalian mtDNA genetic bottleneck explains how new germline variants can increase to high levels within a generation, and the ultimate fixation of less-severe mutations that escape germline selection explains how they can contribute to the risk of late-onset disorders.
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