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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
MOB1 deletion in murine mature adipocytes ameliorates obesity and diabetes
Miki Nishio1, Keiko Yamaguchi1, Junji Otani1
1Division of Molecular and Cellular Biology, Kobe University Graduate School of Medicine, Kobe, Hyogo 650-0017, Japan.
Abstract:
There is currently a global epidemic of obesity and obesity-related diseases such as type 2 diabetes due to decreased physical activity, excessive food intake, and/or genetic predisposition. The Hippo-YAP1 pathway has attracted attention as a potential therapeutic target because YAP1/TAZ activation in murine immature adipocytes in vitro suppresses their differentiation by inhibiting PPARγ activity. However, the role of YAP1 activation in mature adipocytes in vivo remains unclear. MOB1, whose expression is increased in obesity, is the hub of the Hippo core molecule complex and negatively regulates YAP1/TAZ activation. Therefore, we generated aMob1DKO mutant mice, which feature deficiency of Mob1a/b specifically in mature adipocytes. Compared to controls, aMob1DKO mice subjected to a high-fat diet showed beneficial changes consistent with resistance to diet-induced obesity. The mutants exhibited increases in basal lipolysis, "beiging," and energy expenditure, as well as suppression of ROS production and inflammation in white adipose tissue. Insulin sensitivity and glucose tolerance were improved, and ectopic fat accumulation was reduced. Most of these changes were dependent on the YAP1 activation observed in mature white adipose tissue of aMob1DKO mice. FGF21, which improves lipid metabolism, was upregulated directly via YAP1 activation, and many of the phenotypes seen in aMob1DKO mice were also dependent on FGF21. Thus, the aMob1DKO mouse is an interesting model for the study of the metabolic effects of diet-induced obesity and protection against diabetes. Our work suggests that a YAP1-FGF21 axis exists in adipocytes that may be a potential therapeutic target for obesity.
Insights
Deleting MOB1 in mature fat cells protects against obesity and diabetes. This highlights a YAP1-FGF21 pathway in fat cells as a potential therapeutic target for metabolic diseases.
Area of Science:
- Metabolic diseases
- Obesity research
- Adipocyte biology
Background:
- Obesity and type 2 diabetes are global health crises linked to lifestyle and genetics.
- The Hippo-YAP1 pathway is implicated in adipocyte differentiation, but its role in mature adipocytes in vivo is unknown.
- MOB1 negatively regulates YAP1/TAZ, and its expression increases with obesity.
Purpose of the Study:
- To investigate the role of YAP1 activation in mature adipocytes in vivo.
- To explore the therapeutic potential of targeting the Hippo-YAP1 pathway in obesity.
Main Methods:
- Generation of adipose-specific MOB1 double knockout (aMob1DKO) mice.
- High-fat diet feeding studies in aMob1DKO and control mice.
- Assessment of metabolic parameters, adipose tissue characteristics, and molecular pathways.
Main Results:
- aMob1DKO mice exhibited resistance to diet-induced obesity.
- Increased basal lipolysis, "beiging," and energy expenditure were observed.
- Improved insulin sensitivity, glucose tolerance, and reduced ectopic fat accumulation occurred, linked to YAP1 activation and FGF21 upregulation.
Conclusions:
- YAP1 activation in mature adipocytes confers protection against diet-induced obesity and related metabolic dysfunction.
- A novel YAP1-FGF21 axis in adipocytes is identified as a potential therapeutic target for obesity and diabetes.

