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Updated: Nov 22, 2025

Measuring the Rate of Lipolysis in Ex Vivo Murine Adipose Tissue and Primary Preadipocytes Differentiated In Vitro
Published on: March 17, 2023
Adipocyte-specific GPRC6A ablation promotes diet-induced obesity by inhibiting lipolysis
Satoru Mukai1, Akiko Mizokami2, Takahito Otani3
1OBT Research Center, Faculty of Dental Science, Kyushu University, Fukuoka, Japan; Department of Health and Nutrition care, Faculty of Allied Health Sciences, University of East Asia, Shimonoseki, Japan.
Abstract:
The G protein-coupled receptor GPRC6A regulates various physiological processes in response to its interaction with multiple ligands, such as extracellular basic amino acids, divalent cations, testosterone, and the uncarboxylated form of osteocalcin (GluOC). Global ablation of GPRC6A increases the susceptibility of mice to diet-induced obesity and related metabolic disorders. However, given that GPRC6A is expressed in many tissues and responds to a variety of hormonal and nutritional signals, the cellular and molecular mechanisms underlying the development of metabolic disorders in conventional knockout mice have remained unclear. On the basis of our previous observation that long-term oral administration of GluOC markedly reduced adipocyte size and improved glucose tolerance in WT mice, we examined whether GPRC6A signaling in adipose tissue might be responsible for prevention of metabolic disorders. We thus generated adipocyte-specific GPRC6A knockout mice, and we found that these animals manifested increased adipose tissue weight, adipocyte hypertrophy, and adipose tissue inflammation when fed a high-fat and high-sucrose diet compared with control mice. These effects were associated with reduced lipolytic activity because of downregulation of lipolytic enzymes such as adipose triglyceride lipase and hormone-sensitive lipase in adipose tissue of the conditional knockout mice. Given that, among GPR6CA ligands tested, GluOC and ornithine increased the expression of adipose triglyceride lipase in cultured 3T3-L1 adipocytes in a manner dependent on GPRC6A, our results suggest that the constitutive activation of GPRC6A signaling in adipocytes by GluOC or ornithine plays a key role in adipose lipid handling and the prevention of obesity and related metabolic disorders.
Insights
The G protein-coupled receptor GPRC6A in fat cells prevents obesity. Its activation by GluOC or ornithine maintains healthy lipid metabolism and prevents metabolic disorders.
Area of Science:
- Metabolic research
- Endocrinology
- Adipose tissue biology
Background:
- G protein-coupled receptor GPRC6A (GPRC6A) is implicated in metabolic regulation.
- Global GPRC6A deficiency exacerbates diet-induced obesity and metabolic dysfunction.
- The specific role of GPRC6A in adipose tissue remains unclear.
Purpose of the Study:
- To investigate the role of adipocyte-specific GPRC6A signaling in preventing metabolic disorders.
- To determine if GPRC6A activation in fat cells influences lipid metabolism and obesity.
Main Methods:
- Generation of adipocyte-specific GPRC6A knockout mice.
- High-fat and high-sucrose diet feeding studies.
- Analysis of adipose tissue weight, adipocyte size, inflammation, and lipolytic enzyme expression.
- In vitro studies using 3T3-L1 adipocytes treated with GPRC6A ligands.
Main Results:
- Adipocyte-specific GPRC6A knockout mice exhibited increased adipose tissue weight, adipocyte hypertrophy, and inflammation on a high-calorie diet.
- Lipolytic activity was reduced in knockout mice due to downregulation of adipose triglyceride lipase and hormone-sensitive lipase.
- The GPRC6A ligands, uncarboxylated osteocalcin (GluOC) and ornithine, increased adipose triglyceride lipase expression in cultured adipocytes.
Conclusions:
- Adipocyte GPRC6A signaling is crucial for regulating adipose lipid handling and preventing obesity.
- Activation of GPRC6A by GluOC or ornithine plays a key role in maintaining metabolic health.
- Targeting GPRC6A in adipose tissue may offer therapeutic strategies for obesity and related metabolic disorders.
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