4.7 Article

Mitochondrial function in skeletal myofibers is controlled by a TRF2-SIRT3 axis over lifetime

期刊

AGING CELL
卷 19, 期 3, 页码 -

出版社

WILEY
DOI: 10.1111/acel.13097

关键词

aging; mitochondria; postmitotic cells; skeletal muscle; telomeres

资金

  1. Canceropole PACA
  2. AFM trampoline grant
  3. cross-cutting Inserm program on aging (AGEMED)
  4. ANR program TELOPOST
  5. Sino-French PHC Cai Yuanpei program
  6. Investments for the Future LABEXSIGNALIFE [ANR-11-LABX-0028-01]
  7. Fondation ARC pour la recherche contre le cancer
  8. AFM-Telethon TRIMRD program
  9. National Natural Science Foundation of China [81471400, 81522017, 91749126, 81971312]
  10. Shanghai Talent Development Fund [2017100]
  11. Foundation of Shanghai Jiaotong University School of Medicine for Translational Medicine Innovation project [15ZH4005]
  12. Region Provence Alpes-Cote d'Azur
  13. Conseil Departemental 06
  14. Inserm

向作者/读者索取更多资源

Telomere shortening follows a developmentally regulated process that leads to replicative senescence of dividing cells. However, whether telomere changes are involved in postmitotic cell function and aging remains elusive. In this study, we discovered that the level of the TRF2 protein, a key telomere-capping protein, declines in human skeletal muscle over lifetime. In cultured human myotubes, TRF2 downregulation did not trigger telomere dysfunction, but suppressed expression of the mitochondrial Sirtuin 3 gene (SIRT3) leading to mitochondrial respiration dysfunction and increased levels of reactive oxygen species. Importantly, restoring the Sirt3 level in TRF2-compromised myotubes fully rescued mitochondrial functions. Finally, targeted ablation of the Terf2 gene in mouse skeletal muscle leads to mitochondrial dysfunction and sirt3 downregulation similarly to those of TRF2-compromised human myotubes. Altogether, these results reveal a TRF2-SIRT3 axis controlling muscle mitochondrial function. We propose that this axis connects developmentally regulated telomere changes to muscle redox metabolism.

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