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Fat Preference: A Novel Model of Eating Behavior in Rats
Published on: June 27, 2014
Deletion of G-protein-coupled receptor 55 promotes obesity by reducing physical activity
A Meadows1,2, J H Lee1, C-S Wu1
1USDA/ARS Children's Nutrition Research Center, Department of Pediatrics, Baylor College of Medicine, Houston, TX, USA.
Background/Objectives:
Cannabinoid receptor 1 (CB1) is the best-characterized cannabinoid receptor, and CB1 antagonists are used in clinical trials to treat obesity. Because of the wide range of CB1 functions, the side effects of CB1 antagonists pose serious concerns. G-protein-coupled receptor 55 (GPR55) is an atypical cannabinoid receptor, and its pharmacology and functions are distinct from CB1. GPR55 regulates neuropathic pain, gut, bone, immune functions and motor coordination. GPR55 is expressed in various brain regions and peripheral tissues. However, the roles of GPR55 in energy and glucose homeostasis are unknown. Here we have investigated the roles of GPR55 in energy balance and insulin sensitivity using GPR55-null mice (GPR55(-/-)).
Methods:
Body composition of the mice was measured by EchoMRI. Food intake, feeding behavior, energy expenditure and physical activity of GPR55(-/-) mice were determined by indirect calorimetry. Muscle function was assessed by forced treadmill running test. Insulin sensitivity was evaluated by glucose and insulin tolerance tests. Adipose inflammation was assessed by flow cytometry analysis of adipose tissue macrophages. The expression of inflammatory markers in adipose tissues and orexigenic/anorexigenic peptides in the hypothalamus was also analyzed by real-time PCR.
Results:
GPR55(-/-) mice had normal total energy intake and feeding pattern (i.e., no changes in meal size, meal number or feeding frequency). Intriguingly, whereas adult GPR55(-/-) mice only showed a modest increase in overall body weight, they exhibited significantly increased fat mass and insulin resistance. The spontaneous locomotor activity of GPR55(-/-) mice was dramatically decreased, whereas resting metabolic rate and non-shivering thermogenesis were unchanged. Moreover, GPR55(-/-) mice exhibited significantly decreased voluntary physical activity, showing reduced running distance on the running wheels, whereas muscle function appeared to be normal.
Conclusions:
GPR55 has an important role in energy homeostasis. GPR55 ablation increases adiposity and insulin resistance by selectively decreasing physical activity, but not by altering feeding behavior as CB1.
Insights
The G-protein-coupled receptor 55 (GPR55) plays a key role in energy balance. GPR55 deficiency increases fat mass and insulin resistance by reducing physical activity, unlike CB1 antagonists.
Area of Science:
- Metabolic research
- Endocrinology
- Neuroscience
Background:
- Cannabinoid receptor 1 (CB1) antagonists show promise for obesity but have side effects.
- G-protein-coupled receptor 55 (GPR55) is an atypical cannabinoid receptor with distinct functions.
- The role of GPR55 in energy and glucose homeostasis remains unknown.
Purpose of the Study:
- Investigate the role of GPR55 in energy balance.
- Determine the effect of GPR55 on insulin sensitivity.
- Utilize GPR55-null mice (GPR55(-/-)) for the study.
Main Methods:
- Assessed body composition, food intake, and energy expenditure using indirect calorimetry and EchoMRI.
- Evaluated insulin sensitivity via glucose and insulin tolerance tests.
- Analyzed physical activity, muscle function, and adipose tissue inflammation.
Main Results:
- GPR55(-/-) mice showed normal feeding patterns but increased fat mass and insulin resistance.
- Spontaneous and voluntary physical activity were significantly decreased in GPR55(-/-) mice.
- Resting metabolic rate and non-shivering thermogenesis remained unchanged.
Conclusions:
- GPR55 plays a significant role in regulating energy homeostasis.
- GPR55 ablation leads to increased adiposity and insulin resistance.
- Reduced physical activity, not altered feeding, mediates these effects in GPR55(-/-) mice.
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