MtDNA deletions and aging

Charlotte Sprason, Trudy Tucker, David Clancy
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Abstract

Aging is the major risk factor in most of the leading causes of mortality worldwide, yet its fundamental causes mostly remain unclear. One of the clear hallmarks of aging is mitochondrial dysfunction. Mitochondria are best known for their roles in cellular energy generation, but they are also critical biosynthetic and signaling organelles. They also undergo multiple changes with organismal age, including increased genetic errors in their independent, circular genome. A key group of studies looking at mice with increased mtDNA mutations showed that premature aging phenotypes correlated with increased deletions but not point mutations. This generated an interest in mitochondrial deletions as a potential fundamental cause of aging. However, subsequent studies in different models have yielded diverse results. This review summarizes the research on mitochondrial deletions in various organisms to understand their possible roles in causing aging while identifying the key complications in quantifying deletions across all models.
MtDNA 缺失与衰老
衰老是导致全球大多数主要死亡原因的主要风险因素,但其根本原因大多仍不清楚。线粒体功能障碍是衰老的明显标志之一。线粒体因其在细胞能量生成中的作用而最为人熟知,但它们也是关键的生物合成和信号传导细胞器。随着机体年龄的增长,线粒体也会发生多种变化,包括其独立的循环基因组中的遗传错误增加。一组对 mtDNA 突变增加的小鼠进行的重要研究表明,早衰表型与缺失增加有关,但与点突变无关。这引起了人们对线粒体缺失作为衰老潜在根本原因的兴趣。然而,随后在不同模型中进行的研究产生了不同的结果。本综述总结了各种生物体内线粒体缺失的研究情况,以了解它们在导致衰老方面可能发挥的作用,同时找出在所有模型中量化缺失的关键并发症。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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