Wisniewski Brett T, Lackner Laura L
bioRxiv. 2024 Jul 19:2024.07.18.604121. doi: 10.1101/2024.07.18.604121.
Mitochondria exist as dynamic tubular networks and the morphology of these networks impacts organelle function and cell health. Mitochondrial morphology is maintained in part by the opposing activities of mitochondrial fission and fusion. Mitochondrial fission and fusion are also required to maintain mitochondrial DNA (mtDNA) integrity. In , the simultaneous inhibition of mitochondrial fission and fusion results in increased mtDNA mutation and the consequent loss of respiratory competence. The mechanism by which fission and fusion maintain mtDNA integrity is not fully understood. Previous work demonstrates that mtDNA is spatially linked to mitochondrial fission sites. Here, we extend this finding using live-cell imaging to localize mtDNA to mitochondrial fusion sites. While mtDNA is present at sites of mitochondrial fission and fusion, mitochondrial fission and fusion rates are not altered in cells lacking mtDNA. Using alleles that alter mitochondrial fission and fusion rates, we find that mtDNA integrity can be maintained in cells with significantly reduced, but balanced, rates of fission and fusion. In addition, we find that increasing mtDNA copy number reduces the loss of respiratory competence in double mitochondrial fission-fusion mutants. Our findings add novel insights into the relationship between mitochondrial dynamics and mtDNA integrity.
线粒体以动态管状网络的形式存在,这些网络的形态会影响细胞器功能和细胞健康。线粒体形态部分由线粒体分裂和融合的相反活动维持。线粒体分裂和融合对于维持线粒体DNA(mtDNA)完整性也是必需的。在 中,同时抑制线粒体分裂和融合会导致mtDNA突变增加以及随之而来的呼吸能力丧失。分裂和融合维持mtDNA完整性的机制尚未完全了解。先前的研究表明,mtDNA在空间上与线粒体分裂位点相关联。在此,我们利用活细胞成像扩展了这一发现,将mtDNA定位到线粒体融合位点。虽然mtDNA存在于线粒体分裂和融合位点,但在缺乏mtDNA的细胞中,线粒体分裂和融合速率并未改变。使用改变线粒体分裂和融合速率的等位基因,我们发现,在分裂和融合速率显著降低但保持平衡的细胞中,mtDNA完整性能够得以维持。此外,我们发现增加mtDNA拷贝数可减少双线粒体分裂 - 融合突变体中呼吸能力的丧失。我们的研究结果为线粒体动态变化与mtDNA完整性之间的关系增添了新的见解。