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线粒体网络状态衡量 mtDNA 遗传动态。

Mitochondrial Network State Scales mtDNA Genetic Dynamics.

机构信息

Department of Mathematics, Imperial College London, SW7 2AZ, United Kingdom.

Department of Clinical Neurosciences, University of Cambridge, CB2 0QQ, United Kingdom.

出版信息

Genetics. 2019 Aug;212(4):1429-1443. doi: 10.1534/genetics.119.302423. Epub 2019 Jun 28.

Abstract

Mitochondrial DNA (mtDNA) mutations cause severe congenital diseases but may also be associated with healthy aging. mtDNA is stochastically replicated and degraded, and exists within organelles which undergo dynamic fusion and fission. The role of the resulting mitochondrial networks in the time evolution of the cellular proportion of mutated mtDNA molecules (heteroplasmy), and cell-to-cell variability in heteroplasmy (heteroplasmy variance), remains incompletely understood. Heteroplasmy variance is particularly important since it modulates the number of pathological cells in a tissue. Here, we provide the first wide-reaching theoretical framework which bridges mitochondrial network and genetic states. We show that, under a range of conditions, the (genetic) rate of increase in heteroplasmy variance and mutation are proportionally modulated by the (physical) fraction of unfused mitochondria, independently of the absolute fission-fusion rate. In the context of selective fusion, we show that intermediate fusion:fission ratios are optimal for the clearance of mtDNA mutants. Our findings imply that modulating network state, mitophagy rate, and copy number to slow down heteroplasmy dynamics when mean heteroplasmy is low could have therapeutic advantages for mitochondrial disease and healthy aging.

摘要

线粒体 DNA(mtDNA)突变会导致严重的先天性疾病,但也可能与健康衰老有关。mtDNA 是随机复制和降解的,存在于经历动态融合和裂变的细胞器中。由此产生的线粒体网络在细胞中突变 mtDNA 分子(异质性)的比例随时间的演化,以及异质性在细胞间的变异性(异质性方差)中的作用仍不完全清楚。异质性方差特别重要,因为它调节组织中病理细胞的数量。在这里,我们提供了第一个广泛的理论框架,将线粒体网络和遗传状态联系起来。我们表明,在一系列条件下,异质性方差和突变的(遗传)增长率与未融合线粒体的(物理)分数成比例地调节,而与绝对裂变融合率无关。在选择性融合的背景下,我们表明中间融合:裂变比对于清除 mtDNA 突变体是最优的。我们的发现意味着,当平均异质性较低时,通过调节网络状态、自噬率和拷贝数来减缓异质性动力学,可能对线粒体疾病和健康衰老具有治疗优势。

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