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Updated: Jun 6, 2026

Isolation and Differentiation of Primary Myoblasts from Mouse Skeletal Muscle Explants
Published on: October 15, 2019
Expression and regulation of corticotropin-releasing factor receptor type 2β in developing and mature mouse skeletal
Yael Kuperman1, Orna Issler, Joan Vaughan
1Department of Neurobiology, Weizmann Institute of Science, Rehovot, Israel.
Abstract:
Corticotropin-releasing factor receptor type 2 (CRFR2) is highly expressed in skeletal muscle (SM) tissue where it is suggested to inhibit interactions between insulin signaling pathway components affecting whole-body glucose homeostasis. However, little is known about factors regulating SM CRFR2 expression. Here, we demonstrate the exclusive expression of CRFR2, and not CRFR1, in mature SM tissue using RT-PCR and ribonuclease protection assays and report a differential expression of CRF receptors during C2C12 myogenic differentiation. Whereas C2C12 myoblasts exclusively express CRFR1, the C2C12 myotubes solely express CRFR2. Using cAMP luciferase assays and calcium mobilization measurements, we further demonstrate the functionality of these differentially expressed receptors. Using luciferase reporter assays we show a differential activation of CRFR promoters during myogenic differentiation. Transfections with different fragments of the 5'-flanking region of the mCRFR2β gene fused to a luciferase reporter gene show a promoter-dependent expression of the reporter gene and reveal the importance of the myocyte enhancer factor 2 consensus sequence located at the 3'-proximal region of CRFR2β promoter. Furthermore, we demonstrate that CRFR2 gene transcription in the mature mouse is stimulated by both high-fat diet and chronic variable stress conditions. Performing a whole-genome expression microarray analysis of SM tissues obtained from CRFR2-null mice or wild-type littermates revealed a robust reduction in retinol-binding protein 4 expression levels, an adipokine whose serum levels are elevated in insulin-resistant states. In correlation with the SM CRFR2β levels, the SM retinol-binding protein 4 levels were also elevated in mice subjected to high-fat diet and chronic variable stress conditions. The current findings further position the SM CRFR2 pathways as a relevant physiological system that may affect the known reciprocal relationship between psychological and physiological challenges and the metabolic syndrome.
Insights
Corticotropin-releasing factor receptor type 2 (CRFR2) is exclusively found in mature skeletal muscle and is regulated by diet and stress. CRFR2 influences retinol-binding protein 4, impacting glucose homeostasis and metabolic syndrome.
Area of Science:
- Endocrinology
- Molecular Biology
- Physiology
Background:
- Corticotropin-releasing factor receptor type 2 (CRFR2) is highly expressed in skeletal muscle (SM), potentially inhibiting insulin signaling and affecting glucose homeostasis.
- Factors regulating SM CRFR2 expression remain largely unknown.
Purpose of the Study:
- To investigate the expression and regulation of CRFR2 in skeletal muscle during differentiation and under physiological challenges.
- To elucidate the role of CRFR2 in regulating gene expression related to glucose homeostasis and metabolic syndrome.
Main Methods:
- RT-PCR and ribonuclease protection assays to determine CRFR1 and CRFR2 expression in SM and C2C12 cells.
- cAMP luciferase assays and calcium mobilization measurements to assess receptor functionality.
- Luciferase reporter assays to analyze CRFR promoter activity and identify regulatory elements.
- Whole-genome expression microarray analysis in CRFR2-null and wild-type mice.
Main Results:
- Mature SM exclusively expresses CRFR2, while C2C12 myoblasts express CRFR1, with myotubes expressing CRFR2.
- CRFR2 promoter activity is regulated during myogenic differentiation, with a MEF2 consensus sequence being important.
- High-fat diet and chronic variable stress stimulate CRFR2 gene transcription in mature mouse SM.
- CRFR2 deficiency leads to reduced retinol-binding protein 4 (RBP4) expression in SM.
- SM CRFR2 and RBP4 levels are elevated under high-fat diet and chronic variable stress conditions.
Conclusions:
- Skeletal muscle CRFR2 expression is differentially regulated during differentiation and influenced by diet and stress.
- CRFR2 signaling in skeletal muscle impacts RBP4 expression, a factor implicated in insulin resistance and metabolic syndrome.
- SM CRFR2 pathways represent a significant physiological system linking psychological and physiological stressors to metabolic dysfunction.
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