Overexpression of mitochondrial fission or mitochondrial fusion genes enhances resilience and extends longevity

IF 7.8 1区 医学 Q1 Biochemistry, Genetics and Molecular Biology Aging Cell Pub Date : 2024-07-02 DOI:10.1111/acel.14262
Annika Traa, Allison Keil, Abdelrahman AlOkda, Suleima Jacob-Tomas, Aura A. Tamez González, Shusen Zhu, Zenith Rudich, Jeremy M. Van Raamsdonk
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Abstract

The dynamicity of the mitochondrial network is crucial for meeting the ever-changing metabolic and energy needs of the cell. Mitochondrial fission promotes the degradation and distribution of mitochondria, while mitochondrial fusion maintains mitochondrial function through the complementation of mitochondrial components. Previously, we have reported that mitochondrial networks are tubular, interconnected, and well-organized in young, healthy C. elegans, but become fragmented and disorganized with advancing age and in models of age-associated neurodegenerative disease. In this work, we examine the effects of increasing mitochondrial fission or mitochondrial fusion capacity by ubiquitously overexpressing the mitochondrial fission gene drp-1 or the mitochondrial fusion genes fzo-1 and eat-3, individually or in combination. We then measured mitochondrial function, mitochondrial network morphology, physiologic rates, stress resistance, and lifespan. Surprisingly, we found that overexpression of either mitochondrial fission or fusion machinery both resulted in an increase in mitochondrial fragmentation. Similarly, both mitochondrial fission and mitochondrial fusion overexpression strains have extended lifespans and increased stress resistance, which in the case of the mitochondrial fusion overexpression strains appears to be at least partially due to the upregulation of multiple pathways of cellular resilience in these strains. Overall, our work demonstrates that increasing the expression of mitochondrial fission or fusion genes extends lifespan and improves biological resilience without promoting the maintenance of a youthful mitochondrial network morphology. This work highlights the importance of the mitochondria for both resilience and longevity.

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线粒体裂变或线粒体融合基因的过度表达可增强复原能力并延长寿命。
线粒体网络的动态性对于满足细胞不断变化的新陈代谢和能量需求至关重要。线粒体分裂促进线粒体的降解和分布,而线粒体融合则通过线粒体成分的互补来维持线粒体的功能。以前,我们曾报道过线粒体网络在年轻、健康的线虫体内是管状、相互连接和组织良好的,但随着年龄的增长以及在年龄相关的神经退行性疾病模型中,线粒体网络变得支离破碎和混乱。在这项工作中,我们研究了通过单独或联合过表达线粒体裂变基因 drp-1 或线粒体融合基因 fzo-1 和 eat-3 来提高线粒体裂变或线粒体融合能力的效果。然后,我们测量了线粒体功能、线粒体网络形态、生理速率、抗压性和寿命。令人惊讶的是,我们发现过量表达线粒体裂变或融合机制都会导致线粒体碎片增加。同样,线粒体裂变和线粒体融合过表达菌株都延长了寿命并增强了抗应激能力,线粒体融合过表达菌株的抗应激能力增强似乎至少部分归因于这些菌株中多种细胞恢复途径的上调。总之,我们的工作表明,增加线粒体裂变或融合基因的表达可延长寿命并提高生物复原力,而不会促进线粒体网络形态年轻化的维持。这项工作凸显了线粒体对恢复力和寿命的重要性。
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来源期刊
Aging Cell
Aging Cell 生物-老年医学
CiteScore
14.40
自引率
2.60%
发文量
212
审稿时长
8 weeks
期刊介绍: Aging Cell, an Open Access journal, delves into fundamental aspects of aging biology. It comprehensively explores geroscience, emphasizing research on the mechanisms underlying the aging process and the connections between aging and age-related diseases.
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