SIRT2 deacetylase represses NFAT transcription factor to maintain cardiac homeostasis

J Biol Chem. 2018 Apr 6;293(14):5281-5294. doi: 10.1074/jbc.RA117.000915. Epub 2018 Feb 13.

Abstract

Heart failure is an aging-associated disease that is the leading cause of death worldwide. Sirtuin family members have been largely studied in the context of aging and aging-associated diseases. Sirtuin 2 (SIRT2) is a cytoplasmic protein in the family of sirtuins that are NAD+-dependent class III histone deacetylases. In this work, we studied the role of SIRT2 in regulating nuclear factor of activated T-cells (NFAT) transcription factor and the development of cardiac hypertrophy. Confocal microscopy analysis indicated that SIRT2 is localized in the cytoplasm of cardiomyocytes and SIRT2 levels are reduced during pathological hypertrophy of the heart. SIRT2-deficient mice develop spontaneous pathological cardiac hypertrophy, remodeling, fibrosis, and dysfunction in an age-dependent manner. Moreover, young SIRT2-deficient mice develop exacerbated agonist-induced hypertrophy. In contrast, SIRT2 overexpression attenuated agonist-induced cardiac hypertrophy in cardiomyocytes in a cell-autonomous manner. Mechanistically, SIRT2 binds to and deacetylates NFATc2 transcription factor. SIRT2 deficiency stabilizes NFATc2 and enhances nuclear localization of NFATc2, resulting in increased transcription activity. Our results suggest that inhibition of NFAT rescues the cardiac dysfunction in SIRT2-deficient mice. Thus, our study establishes SIRT2 as a novel endogenous negative regulator of NFAT transcription factor.

Keywords: NFAT transcription factor; SIRT2; cardiac hypertrophy; cardiomyocyte; heart failure; lysine acetylation; sirtuin.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Acetylation
  • Animals
  • Cardiomegaly / metabolism*
  • Gene Expression Regulation / genetics
  • Group III Histone Deacetylases / metabolism
  • Heart Failure / metabolism
  • Homeostasis
  • Mice
  • Mice, Knockout
  • Myocytes, Cardiac / metabolism
  • Myocytes, Cardiac / physiology
  • NFATC Transcription Factors / metabolism*
  • Sirtuin 2 / metabolism*
  • Sirtuin 2 / physiology

Substances

  • NFATC Transcription Factors
  • Group III Histone Deacetylases
  • Sirt2 protein, mouse
  • Sirtuin 2