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Study of In Vivo Glucose Metabolism in High-fat Diet-fed Mice Using Oral Glucose Tolerance Test OGTT and Insulin Tolerance Test ITT
Published on: January 7, 2018
Isoform-Specific Role of GSK-3 in High Fat Diet Induced Obesity and Glucose Intolerance
Manisha Gupte1, Sultan Tousif2, Jacob J Lemon1
1Department of Biology, Austin Peay State University, Clarksville, TN 37044, USA.
Abstract:
Obesity-associated metabolic disorders are rising to pandemic proportions; hence, there is an urgent need to identify underlying molecular mechanisms. Glycogen synthase kinase-3 (GSK-3) signaling is highly implicated in metabolic diseases. Furthermore, GSK-3 expression and activity are increased in Type 2 diabetes patients. However, the isoform-specific role of GSK-3 in obesity and glucose intolerance is unclear. Pharmacological GSK-3 inhibitors are not isoform-specific, and tissue-specific genetic models are of limited value to predict the clinical outcome of systemic inhibiion. To overcome these limitations, we created novel mouse models of ROSA26CreERT2-driven, tamoxifen-inducible conditional deletion of GSK-3 that allowed us to delete the gene globally in an isoform-specific and temporal manner. Isoform-specific GSK-3 KOs and littermate controls were subjected to a 16-week high-fat diet (HFD) protocol. On an HFD, GSK-3α KO mice had a significantly lower body weight and modest improvement in glucose tolerance compared to their littermate controls. In contrast, GSK-3β-deletion-mediated improved glucose tolerance was evident much earlier in the timeline and extended up to 12 weeks post-HFD. However, this protective effect weakened after chronic HFD (16 weeks) when GSK-3β KO mice had a significantly higher body weight compared to controls. Importantly, GSK-3β KO mice on a control diet maintained significant improvement in glucose tolerance even after 16 weeks. In summary, our novel mouse models allowed us to delineate the isoform-specific role of GSK-3 in obesity and glucose tolerance. From a translational perspective, our findings underscore the importance of maintaining a healthy weight in patients receiving lithium therapy, which is thought to work by GSK-3 inhibition mechanisms.
Insights
Novel mouse models reveal Glycogen synthase kinase-3 (GSK-3) alpha and beta isoforms have distinct roles in obesity and glucose intolerance. GSK-3α KO improved metabolic health, while GSK-3β KO showed transient benefits on high-fat diets.
Area of Science:
- Metabolic disorders
- Molecular mechanisms
- Diabetes research
Background:
- Obesity-associated metabolic disorders are a growing global health crisis.
- Glycogen synthase kinase-3 (GSK-3) signaling pathways are implicated in metabolic diseases, with elevated GSK-3 observed in Type 2 diabetes.
- The specific roles of GSK-3 isoforms in obesity and glucose intolerance remain unclear, hindering targeted therapeutic development.
Purpose of the Study:
- To elucidate the isoform-specific functions of GSK-3 in obesity and glucose intolerance.
- To develop novel inducible genetic models for studying GSK-3 isoform roles in vivo.
- To assess the impact of GSK-3α and GSK-3β deletion on metabolic parameters under high-fat diet conditions.
Main Methods:
- Creation of tamoxifen-inducible, conditional GSK-3 knockout mouse models (ROSA26CreERT2-driven).
- Administration of a 16-week high-fat diet (HFD) to GSK-3α KO, GSK-3β KO, and control mice.
- Monitoring of body weight, glucose tolerance, and metabolic parameters throughout the study.
Main Results:
- GSK-3α knockout mice exhibited significantly lower body weight and improved glucose tolerance on HFD.
- GSK-3β knockout mice showed early improvements in glucose tolerance on HFD, but this effect diminished with chronic HFD, accompanied by increased body weight.
- GSK-3β knockout mice maintained improved glucose tolerance on a control diet even after 16 weeks.
Conclusions:
- Novel inducible mouse models successfully delineated the distinct, isoform-specific roles of GSK-3α and GSK-3β in metabolic regulation.
- GSK-3α plays a protective role against HFD-induced metabolic dysfunction.
- Targeting GSK-3β may offer therapeutic benefits for glucose intolerance, but careful consideration of long-term effects on body weight, especially in conjunction with treatments like lithium, is warranted.
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