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Published on: November 16, 2011
Increased insulin sensitivity and obesity resistance in mice lacking the protein tyrosine phosphatase-1B gene
M Elchebly1, P Payette, E Michaliszyn
1Department of Biochemistry, McGill University, 3655 Drummond Street, Montreal, Quebec, Canada, H3G 1Y6.
Abstract:
Protein tyrosine phosphatase-1B (PTP-1B) has been implicated in the negative regulation of insulin signaling. Disruption of the mouse homolog of the gene encoding PTP-1B yielded healthy mice that, in the fed state, had blood glucose concentrations that were slightly lower and concentrations of circulating insulin that were one-half those of their PTP-1B+/+ littermates. The enhanced insulin sensitivity of the PTP-1B-/- mice was also evident in glucose and insulin tolerance tests. The PTP-1B-/- mice showed increased phosphorylation of the insulin receptor in liver and muscle tissue after insulin injection in comparison to PTP-1B+/+ mice. On a high-fat diet, the PTP-1B-/- and PTP-1B+/- mice were resistant to weight gain and remained insulin sensitive, whereas the PTP-1B+/+ mice rapidly gained weight and became insulin resistant. These results demonstrate that PTP-1B has a major role in modulating both insulin sensitivity and fuel metabolism, thereby establishing it as a potential therapeutic target in the treatment of type 2 diabetes and obesity.
Insights
Removing Protein tyrosine phosphatase-1B (PTP-1B) improves insulin sensitivity and glucose metabolism in mice. PTP-1B deficiency also prevents diet-induced obesity and insulin resistance.
Area of Science:
- Biochemistry
- Metabolic Research
Background:
- Protein tyrosine phosphatase-1B (PTP-1B) negatively regulates insulin signaling.
- Investigating PTP-1B's role is crucial for understanding metabolic disorders.
Discussion:
- PTP-1B knockout mice exhibit lower blood glucose and insulin levels in the fed state.
- These mice show enhanced insulin sensitivity, evidenced by improved glucose and insulin tolerance tests.
- Increased insulin receptor phosphorylation in liver and muscle tissues was observed post-insulin injection.
Key Insights:
- PTP-1B deficiency confers resistance to diet-induced obesity and insulin resistance.
- Mice lacking PTP-1B maintain insulin sensitivity even on a high-fat diet.
- PTP-1B plays a significant role in modulating insulin sensitivity and fuel metabolism.
Outlook:
- PTP-1B is a potential therapeutic target for type 2 diabetes.
- Targeting PTP-1B may offer a novel strategy for obesity treatment.
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