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Measurement of Insulin- and Contraction-Stimulated Glucose Uptake in Isolated and Incubated Mature Skeletal Muscle from Mice
Published on: May 16, 2021
Regulation of GLUT4 expression in denervated skeletal muscle
Ellis B Jensen1, Donghai Zheng, Robert A Russell
1Department of Biology, Viterbo University, La Crosse, Wisconsin, USA.
Abstract:
Denervation by sciatic nerve resection causes decreased muscle glucose transporter 4 (GLUT4) expression, but little is known about the signaling events that cause this decrease. Experiments were designed to test the hypothesis that decreased GLUT4 expression in denervated muscle occurs because of decreased calcium/CaMK activity, which would then lead to decreased activation of the transcription factors myocyte enhancer factor 2 (MEF2) and GLUT4 enhancer factor (GEF), which are required for normal GLUT4 expression. GLUT4 mRNA was elevated in mice expressing constitutively active CaMK isoform IV (CaMKIV) and decreased by denervation. Denervation decreased GEF binding to the promoter and the content of GEF in the nucleus, but there was no change in either MEF2 binding or MEF2 protein content. Expression of a MEF2-dependent reporter gene did not change in denervated skeletal muscle. To determine the domains of the GLUT4 promoter that respond to denervation, transgenic mice expressing the chloramphenicol acetyl transferase (CAT) reporter gene driven by different lengths of the human GLUT4 promoter were denervated. Using several different promoter/reporter gene constructs, we found that all areas of the GLUT4 promoter were truncated or missing, except for the MEF2 binding domain and the basal promoter. All of the GLUT4 promoter/CAT reporter constructs evaluated responded normally to denervation. Our data lead us to conclude that decreased CaMK activity is not the reason for decreased GLUT4 content in denervated muscle and that negative control of GLUT4 expression is not mediated through the MEF2 or GEF-binding domains. These findings indicate that withdrawal of a GEF- or MEF2-dependent signal is not likely a major determinant of the denervation effect on GLUT4 expression. Thus, the response to denervation may be mediated by other elements present in the basal promoter of the GLUT4 gene.
Insights
Sciatic nerve resection reduces muscle glucose transporter 4 (GLUT4) expression. This study found that decreased calcium/CaMK activity is not responsible for reduced GLUT4 levels following denervation.
Area of Science:
- Molecular Biology
- Physiology
- Genetics
Background:
- Denervation of skeletal muscle leads to reduced expression of glucose transporter 4 (GLUT4), a key protein for glucose uptake.
- The precise molecular mechanisms underlying this downregulation remain largely unknown.
Purpose of the Study:
- To investigate the hypothesis that reduced GLUT4 expression after denervation is caused by decreased calcium/calmodulin-dependent protein kinase (CaMK) activity.
- To determine if this decrease in CaMK activity affects the transcription factors myocyte enhancer factor 2 (MEF2) and GLUT4 enhancer factor (GEF).
Main Methods:
- Utilized transgenic mice expressing constitutively active CaMK isoform IV (CaMKIV) and denervation models.
- Assessed GLUT4 mRNA levels, GEF and MEF2 binding to the GLUT4 promoter, and nuclear content of these transcription factors.
- Employed chloramphenicol acetyl transferase (CAT) reporter gene constructs driven by various lengths of the human GLUT4 promoter in denervated transgenic mice.
Main Results:
- Denervation decreased GEF promoter binding and nuclear GEF content, but MEF2 binding and protein levels remained unchanged.
- MEF2-dependent reporter gene expression was not altered by denervation.
- All tested GLUT4 promoter/CAT reporter constructs responded normally to denervation, irrespective of promoter length, suggesting other regulatory elements are involved.
Conclusions:
- Decreased CaMK activity is not the cause of reduced GLUT4 content in denervated muscle.
- The downregulation of GLUT4 expression following denervation is not mediated by the MEF2 or GEF binding domains of the promoter.
- Alternative regulatory elements within the basal promoter of the GLUT4 gene likely mediate the denervation response.

