Silencing of the small GTPase DIRAS3 induces cellular senescence in human white adipose stromal/progenitor cells

Aging (Albany NY). 2017 Mar 17;9(3):860-879. doi: 10.18632/aging.101197.

Abstract

Inhibition of Akt-mTOR signaling protects from obesity and extends life span in animals. In the present study, we analyse the impact of the small GTPase, GTP-binding RAS-like 3 (DIRAS3), a recently identified weight-loss target gene, on cellular senescence in adipose stromal/progenitor cells (ASCs) derived from human subcutaneous white adipose tissue (sWAT). We demonstrate that DIRAS3 knock-down (KD) in ASCs induces activation of Akt-mTOR signaling and proliferation arrest. DIRAS3 KD ASCs lose the potential to form colonies and are negative for Ki-67. Moreover, silencing of DIRAS3 results in a premature senescence phenotype. This is characterized by senescence-associated β-galactosidase positive enlarged ASCs containing increased p16INK4A level and activated retinoblastoma protein. DIRAS3 KD ASCs form senescence-associated heterochromatic foci as shown by increased level of γ-H2A.X positive foci. Furthermore, these cells express a senescence-associated secretory phenotype characterized by increased interleukin-8 secretion. Human DIRAS3 KD ASCs develop also a senescence phenotype in sWAT of SCID mice. Finally, we show that DIRAS3 KD in ASCs stimulates both adipogenic differentiation and premature senescence. In conclusion, our data suggest that silencing of DIRAS3 in ASCs and subsequently hyper-activation of Akt-mTOR drives adipogenesis and premature senescence. Moreover, differentiating ASCs and/or mature adipocytes may acquire features of cellular senescence.

Keywords: DIRAS3; adipocyte; adipogenesis; adipose stem cell; adipose stromal/progenitor cell; aging; mTOR; obesity; senescence.

MeSH terms

  • Adipocytes / cytology*
  • Adipocytes / metabolism
  • Adipogenesis / genetics
  • Adipose Tissue, White / cytology*
  • Adipose Tissue, White / metabolism
  • Cell Proliferation / genetics
  • Cellular Senescence / genetics*
  • Cyclin-Dependent Kinase Inhibitor p16 / metabolism
  • Female
  • Gene Silencing
  • Humans
  • Proto-Oncogene Proteins c-akt / metabolism
  • Signal Transduction / genetics
  • Stem Cells / cytology*
  • Stem Cells / metabolism
  • TOR Serine-Threonine Kinases / metabolism
  • beta-Galactosidase / metabolism
  • rho GTP-Binding Proteins / genetics*
  • rho GTP-Binding Proteins / metabolism

Substances

  • Cyclin-Dependent Kinase Inhibitor p16
  • DIRAS3 protein, human
  • MTOR protein, human
  • Proto-Oncogene Proteins c-akt
  • TOR Serine-Threonine Kinases
  • beta-Galactosidase
  • rho GTP-Binding Proteins