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Published on: February 14, 2021
Aging STINGs: mitophagy at the crossroads of neuroinflammation
Juan Ignacio Jiménez-Loygorri1, Patricia Boya1,2
1Department of Cellular and Molecular Biology, Centro de Investigaciones Biológicas Margarita Salas, CSIC, Madrid, Spain.
Abstract:
Loss of proteostasis and dysregulated mitochondrial function are part of the traditional hallmarks of aging, and in their last revision impaired macroautophagy and chronic inflammation are also included. Mitophagy is at the intersection of all these processes but whether it undergoes age-associated perturbations was not known. In our recent work, we performed a systematic and systemic analysis of mitolysosome levels in mice and found that, despite the already-known decrease in nonselective macroautophagy, mitophagy remains stable or increases upon aging in all tissues analyzed and is mediated by the PINK1-PRKN-dependent pathway. Further analyses revealed a concomitant increase in mtDNA leakage into the cytosol and activation of the CGAS-STING1 inflammation axis. Notably, both phenomena are also observed in primary fibroblasts from aged human donors. We hypothesized that mitophagy might be selectively upregulated during aging to improve mitochondrial fitness and reduce mtDNA-induced inflammation. Treatment with the mitophagy inducer urolithin A alleviates age-associated neurological decline, including improved synaptic connectivity, cognitive memory and visual function. Supporting our initial hypothesis, urolithin A reduces the levels of cytosolic mtDNA, CGAS-STING1 activation and neuroinflammation. Finally, using an in vitro model of mitochondrial membrane permeabilization we validated that PINK1-PRKN-mediated mitophagy is essential to resolve cytosolic mtDNA-triggered inflammation. These findings open up an integrative approach to tackle aging and increase healthspan via mitophagy induction.
Insights
Mitophagy, the process of clearing damaged mitochondria, remains stable or increases with age, potentially reducing inflammation. Inducing mitophagy with urolithin A improves age-related neurological decline.
Area of Science:
- Cellular Biology
- Aging Research
- Immunology
Background:
- Hallmarks of aging include loss of proteostasis and mitochondrial dysfunction.
- Impaired macroautophagy and chronic inflammation are also recognized aging hallmarks.
- The role of mitophagy in aging was previously unknown.
Purpose of the Study:
- To investigate age-associated changes in mitophagy.
- To explore the link between mitophagy, mitochondrial DNA (mtDNA) leakage, and inflammation.
- To evaluate the therapeutic potential of mitophagy induction for age-related decline.
Main Methods:
- Systematic analysis of mitolysosome levels in aged mice.
- Assessment of mtDNA leakage and the CGAS-STING1 inflammatory pathway.
- Treatment of aged mice with urolithin A, a mitophagy inducer.
- In vitro studies using mitochondrial membrane permeabilization models.
Main Results:
- Mitophagy remains stable or increases with age across all analyzed tissues in mice, mediated by the PINK1-PRKN pathway.
- Aging is associated with increased cytosolic mtDNA leakage and activation of the CGAS-STING1 inflammation axis.
- Urolithin A treatment improved neurological function, reduced cytosolic mtDNA, and decreased neuroinflammation in aged mice.
- PINK1-PRKN-mediated mitophagy is crucial for resolving mtDNA-triggered inflammation.
Conclusions:
- Mitophagy may be selectively upregulated during aging to enhance mitochondrial quality control and mitigate inflammation.
- Targeting mitophagy represents a promising strategy to combat age-associated decline and extend healthspan.
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