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线粒体分裂基因drp-1的发育破坏延长了daf-2胰岛素/IGF-1受体突变体的寿命。

Developmental disruption of the mitochondrial fission gene drp-1 extends the longevity of daf-2 insulin/IGF-1 receptor mutant.

作者信息

Traa Annika, Tamez González Aura A, Van Raamsdonk Jeremy M

机构信息

Department of Neurology and Neurosurgery, McGill University, Montreal, Quebec, Canada.

Metabolic Disorders and Complications Program, Research Institute of the McGill University Health Centre, Montreal, Quebec, Canada.

出版信息

Geroscience. 2025 Feb;47(1):877-902. doi: 10.1007/s11357-024-01276-z. Epub 2024 Jul 19.

Abstract

The dynamic nature of the mitochondrial network is regulated by mitochondrial fission and fusion, allowing for re-organization of mitochondria to adapt to the cell's ever-changing needs. As organisms age, mitochondrial fission and fusion become dysregulated and mitochondrial networks become increasingly fragmented. Modulation of mitochondrial dynamics has been shown to affect longevity in fungi, yeast, Drosophila and C. elegans. Disruption of the mitochondrial fission gene drp-1 drastically increases the already long lifespan of daf-2 insulin/IGF-1 signaling (IIS) mutants. In this work, we determined the conditions required for drp-1 disruption to extend daf-2 longevity and explored the molecular mechanisms involved. We found that knockdown of drp-1 during development is sufficient to extend daf-2 lifespan, while tissue-specific knockdown of drp-1 in neurons, intestine or muscle failed to increase daf-2 longevity. Disruption of other genes involved in mitochondrial fission also increased daf-2 lifespan as did treatment with RNA interference clones that decrease mitochondrial fragmentation. In exploring potential mechanisms involved, we found that deletion of drp-1 increases resistance to chronic stresses. In addition, we found that disruption of drp-1 increased mitochondrial and peroxisomal connectedness in daf-2 worms, increased oxidative phosphorylation and ATP levels, and increased mitophagy in daf-2 worms, but did not affect their ROS levels, food consumption or mitochondrial membrane potential. Disruption of mitophagy through RNA interference targeting pink-1 decreased the lifespan of daf-2;drp-1 worms suggesting that increased mitophagy contributes to their extended lifespan. Overall, this work defined the conditions under which drp-1 disruption increases daf-2 lifespan and has identified multiple changes in daf-2;drp-1 mutants that may contribute to their lifespan extension.

摘要

线粒体网络的动态特性受线粒体分裂和融合的调控,使线粒体能够重新组织以适应细胞不断变化的需求。随着生物体衰老,线粒体分裂和融合失调,线粒体网络变得越来越碎片化。线粒体动力学的调节已被证明会影响真菌、酵母、果蝇和秀丽隐杆线虫的寿命。线粒体分裂基因drp-1的破坏显著延长了daf-2胰岛素/胰岛素样生长因子-1信号通路(IIS)突变体本就较长的寿命。在这项研究中,我们确定了drp-1破坏以延长daf-2寿命所需的条件,并探索了其中涉及的分子机制。我们发现,发育过程中敲低drp-1足以延长daf-2的寿命,而在神经元、肠道或肌肉中组织特异性敲低drp-1未能增加daf-2的寿命。破坏其他参与线粒体分裂的基因以及用减少线粒体碎片化的RNA干扰克隆进行处理也增加了daf-2的寿命。在探索潜在机制时,我们发现删除drp-1可增加对慢性应激的抵抗力。此外,我们发现破坏drp-1增加了daf-2线虫中线粒体与过氧化物酶体的连通性,提高了氧化磷酸化和ATP水平,并增加了daf-2线虫中的线粒体自噬,但不影响它们的ROS水平、食物消耗或线粒体膜电位。通过RNA干扰靶向pink-1破坏线粒体自噬降低了daf-2;drp-1线虫的寿命,这表明增加的线粒体自噬有助于延长它们的寿命。总体而言,这项研究确定了drp-1破坏增加daf-2寿命的条件,并确定了daf-2;drp-1突变体中可能有助于延长其寿命的多种变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcb0/11872967/86a98963176c/11357_2024_1276_Fig1_HTML.jpg

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