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Context-Dependent Role of Mitochondrial Fusion-Fission in Clonal Expansion of mtDNA Mutations

机译:线粒体融合裂变在mtDNA突变的克隆扩展中的上下文相关作用。

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摘要

The accumulation of mutant mitochondrial DNA (mtDNA) molecules in aged cells has been associated with mitochondrial dysfunction, age-related diseases and the ageing process itself. This accumulation has been shown to often occur clonally, where mutant mtDNA grow in number and overpopulate the wild-type mtDNA. However, the cell possesses quality control (QC) mechanisms that maintain mitochondrial function, in which dysfunctional mitochondria are isolated and removed by selective fusion and mitochondrial autophagy (mitophagy), respectively. The aim of this study is to elucidate the circumstances related to mitochondrial QC that allow the expansion of mutant mtDNA molecules. For the purpose of the study, we have developed a mathematical model of mitochondrial QC process by extending our previous validated model of mitochondrial turnover and fusion-fission. A global sensitivity analysis of the model suggested that the selectivity of mitophagy and fusion is the most critical QC parameter for clearing de novo mutant mtDNA molecules. We further simulated several scenarios involving perturbations of key QC parameters to gain a better understanding of their dynamic and synergistic interactions. Our model simulations showed that a higher frequency of mitochondrial fusion-fission can provide a faster clearance of mutant mtDNA, but only when mutant–rich mitochondria that are transiently created are efficiently prevented from re-fusing with other mitochondria and selectively removed. Otherwise, faster fusion-fission quickens the accumulation of mutant mtDNA. Finally, we used the insights gained from model simulations and analysis to propose a possible circumstance involving deterioration of mitochondrial QC that permits mutant mtDNA to expand with age.
机译:突变的线粒体DNA(mtDNA)分子在衰老细胞中的积累与线粒体功能障碍,与年龄有关的疾病以及衰老过程本身有关。已经表明这种积累经常是克隆发生的,突变mtDNA的数量会增长,而野生型mtDNA则会过度繁殖。但是,该细胞具有维持线粒体功能的质量控制(QC)机制,其中功能异常的线粒体通过选择性融合和线粒体自噬(线粒体)被分离并去除。这项研究的目的是阐明与线粒体QC有关的情况,该情况允许突变mtDNA分子的扩增。出于研究目的,我们通过扩展先前验证的线粒体更新和融合裂变模型,建立了线粒体质控过程的数学模型。该模型的全局敏感性分析表明,线粒体和融合的选择性是清除从头突变mtDNA分子的最关键的QC参数。我们进一步模拟了几种涉及关键QC参数扰动的场景,以更好地了解它们的动态和协同相互作用。我们的模型仿真表明,较高频率的线粒体融合裂变可以提供更快的突变mtDNA清除率,但是只有当有效地防止瞬时产生的富含突变体的线粒体与其他线粒体重新融合并有选择地去除时,才可以。否则,更快的融合裂变会加快突变体mtDNA的积累。最后,我们利用从模型仿真和分析中获得的见解,提出了可能涉及线粒体QC恶化的可能情况,该情况可能导致突变mtDNA随着年龄的增长而扩大。

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