FoxO1 antagonist suppresses autophagy and lipid droplet growth in adipocytes

Longhua Liu1, Louise D Zheng1, Peng Zou1

  • 1a Department of Human Nutrition, Foods, and Exercise , Fralin Life Science Institute, College of Agriculture and Life Science, Virginia Tech , Blacksburg , VA , USA.

Insights

This study reveals the FoxO1-autophagy-FSP27 pathway controlling fat cell growth and lipid droplet expansion. Targeting this axis may offer new strategies for obesity treatment.

Area of Science:

  • Metabolic disorders
  • Cellular biology
  • Obesity research

Background:

  • Obesity is a global health crisis linked to increased adipose tissue autophagy.
  • The precise mechanisms driving autophagy upregulation in obesity remain unclear.

Purpose of the Study:

  • To elucidate the role of the FoxO1-autophagy-FSP27 axis in adipogenesis and lipid droplet regulation.
  • To investigate the contribution of this pathway to aberrant adiposity.

Main Methods:

  • Utilized a specific FoxO1 inhibitor (AS1842856) and autophagy inhibitors (bafilomycin-A1, leupeptin).
  • Examined adipocyte differentiation, FSP27 expression, and lipid droplet size in vitro and in white adipose tissue explants.

Main Results:

  • FoxO1 inhibition suppressed autophagy, FSP27 expression, and adipocyte differentiation.
  • Inhibition of FoxO1 or autophagy reduced FSP27 levels and lipid droplet size in adipocytes and adipose tissue.
  • This study identifies FoxO1 as a regulator of adipose autophagy.

Conclusions:

  • The FoxO1-autophagy-FSP27 axis is a key regulator of adipogenesis and lipid droplet expansion.
  • Targeting this pathway presents a potential therapeutic strategy for managing obesity and related metabolic disorders.