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Author Spotlight: Semi-Automated Isolation of the Stromal Vascular Fraction from Murine White Adipose Tissue Using a Tissue Dissociator
Published on: May 19, 2023
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.
Abstract:
Obesity and related metabolic disorders constitute one of the most pressing heath concerns worldwide. Increased adiposity is linked to autophagy upregulation in adipose tissues. However, it is unknown how autophagy is upregulated and contributes to aberrant adiposity. Here we show a FoxO1-autophagy-FSP27 axis that regulates adipogenesis and lipid droplet (LD) growth in adipocytes. Adipocyte differentiation was associated with upregulation of autophagy and fat specific protein 27 (FSP27), a key regulator of adipocyte maturation and expansion by promoting LD formation and growth. However, FoxO1 specific inhibitor AS1842856 potently suppressed autophagy, FSP27 expression, and adipocyte differentiation. In terminally differentiated adipocytes, AS1842856 significantly reduced FSP27 level and LD size, which was recapitulated by autophagy inhibitors (bafilomycin-A1 and leupeptin, BL). Similarly, AS1842856 and BL dampened autophagy activity and FSP27 expression in explant cultures of white adipose tissue. To our knowledge, this is the first study addressing FoxO1 in the regulation of adipose autophagy, shedding light on the mechanism of increased autophagy and adiposity in obese individuals. Given that adipogenesis and adipocyte expansion contribute to aberrant adiposity, targeting the FoxO1-autophagy-FSP27 axis may lead to new anti-obesity options.
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.
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