Resveratrol Improves Mitochondrial Function and Protects against Metabolic Disease by Activating SIRT1 and PGC-1α

Research output: Contribution to journalJournal articleResearchpeer-review

  • Marie Lagouge
  • Carmen Argmann
  • Gerhart-Hines, Zach
  • Hamid Meziane
  • Carles Lerin
  • Frederic Daussin
  • Nadia Messadeq
  • Jill Milne
  • Philip Lambert
  • Peter Elliott
  • Bernard Geny
  • Markku Laakso
  • Pere Puigserver
  • Johan Auwerx

Diminished mitochondrial oxidative phosphorylation and aerobic capacity are associated with reduced longevity. We tested whether resveratrol (RSV), which is known to extend lifespan, impacts mitochondrial function and metabolic homeostasis. Treatment of mice with RSV significantly increased their aerobic capacity, as evidenced by their increased running time and consumption of oxygen in muscle fibers. RSV's effects were associated with an induction of genes for oxidative phosphorylation and mitochondrial biogenesis and were largely explained by an RSV-mediated decrease in PGC-1α acetylation and an increase in PGC-1α activity. This mechanism is consistent with RSV being a known activator of the protein deacetylase, SIRT1, and by the lack of effect of RSV in SIRT1-/- MEFs. Importantly, RSV treatment protected mice against diet-induced-obesity and insulin resistance. These pharmacological effects of RSV combined with the association of three Sirt1 SNPs and energy homeostasis in Finnish subjects implicates SIRT1 as a key regulator of energy and metabolic homeostasis.

Original languageEnglish
JournalCell
Volume127
Issue number6
Pages (from-to)1109-1122
Number of pages14
ISSN0092-8674
DOIs
Publication statusPublished - 15 Dec 2006

Bibliographical note

Funding Information:
This work was supported by grants of CNRS, INSERM, ULP, Hôpital Universitaire de Strasbourg, NIH (DK59820 and DK069966), EU FP6 (EUGENE2; LSHM-CT-2004-512013), and Sirtris Pharmaceuticals. M.L. and C.A. received fellowships from Institut Danone and Marie-Curie, respectively. The authors thank Fred Alt (Harvard Medical School) for the gift of SIRT1 −/− and +/+ MEFs, the members of the Auwerx, Laakso, and Puigserver labs for discussions and technical assistance, the ICS, and the Affymetrics platform of IGBMC.

ID: 347794400