InsP3R signaling and actomyosin-dependent mitochondrial dynamics play essential roles in mitochondrial stress-induced longevity.
basic_science · Level V
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- Record sourced from PubMed, PMID 42722646.
- Also identified by DOI 10.1038/s41467-026-76514-3.
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Abstract
Certain forms of mitochondrial impairment confer longevity, while disease-associated mitochondrial dysfunction triggers pathogenesis. The adaptive pathways that distinguish benefit from pathology remain unclear. Here we reveal that longevity induced by mitochondrial Complex I/nuo-6 mutation in C. elegans is dependent on the endoplasmic reticulum (ER) Ca<sup>2+</sup> channel, InsP3R. To explain this connection, we test multiple candidate links between Ca<sup>2+</sup> and mitochondrial homeostasis previously established in vitro, including mitochondrial calcium uniporter (MCU)-dependent stimulation of respiration and cytosolic pathways regulating mitochondrial dynamics. We find that MCU is dispensable for both respiration and longevity in Complex I mutants. Conversely, transcriptomic profiling and imaging reveal InsP3R impairment results in maladaptive expansion of compromised mitochondrial networks. We provide evidence that this aberrant mitochondrial expansion results from disruption of a conserved, InsP3R-dependent actin remodeling network centered on Arp2/3. Disruption of actin remodeling or autophagy mimics the mitochondrial expansion and longevity suppression of InsP3R mutants. Conversely, driving mitochondrial fragmentation ameliorates mitochondrial expansion and rescues longevity in InsP3R mutants, supporting a model in which InsP3R-dependent actin remodeling is required for segregation and clearance of mitochondria. These findings identify an inter-organelle signaling axis linking ER calcium release and cytoskeletal remodeling to adaptive mitochondrial responses associated with longevity.
Medical subject headings
- Caenorhabditis elegans
- Mitochondrial Dynamics
- Longevity
- Mitochondria
- Inositol 1,4,5-Trisphosphate Receptors
- Actomyosin