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Tumor progression locus 2 (Tpl2) deficiency does not protect against obesity-induced metabolic disease
Graeme I Lancaster1, Greg M Kowalski, Emma Estevez
1Cellular and Molecular Metabolism Laboratory, BakerIDI Heart and Diabetes Institute, Melbourne, Australia. graeme.lancaster@bakeridi.edu.au
Abstract:
Obesity is associated with a state of chronic low grade inflammation that plays an important role in the development of insulin resistance. Tumor progression locus 2 (Tpl2) is a serine/threonine mitogen activated protein kinase kinase kinase (MAP3K) involved in regulating responses to specific inflammatory stimuli. Here we have used mice lacking Tpl2 to examine its role in obesity-associated insulin resistance. Wild type (wt) and tpl2(-/-) mice accumulated comparable amounts of fat and lean mass when fed either a standard chow diet or two different high fat (HF) diets containing either 42% or 59% of energy content derived from fat. No differences in glucose tolerance were observed between wt and tpl2(-/-) mice on any of these diets. Insulin tolerance was similar on both standard chow and 42% HF diets, but was slightly impaired in tpl2(-/-) mice fed the 59% HFD. While gene expression markers of macrophage recruitment and inflammation were increased in the white adipose tissue of HF fed mice compared with standard chow fed mice, no differences were observed between wt and tpl2(-/-) mice. Finally, a HF diet did not increase Tpl2 expression nor did it activate Extracellular Signal-Regulated Kinase 1/2 (ERK1/2), the MAPK downstream of Tpl2. These findings argue that Tpl2 does not play a non-redundant role in obesity-associated metabolic dysfunction.
Insights
Tumor progression locus 2 (Tpl2) does not significantly impact obesity-related insulin resistance. Studies in Tpl2-deficient mice show no major metabolic dysfunction, suggesting Tpl2 is not essential for these conditions.
Area of Science:
- Metabolic disease research
- Inflammation and immunity
- Molecular biology
Background:
- Obesity is linked to chronic inflammation, contributing to insulin resistance.
- Tumor progression locus 2 (Tpl2) is a kinase involved in inflammatory responses.
Purpose of the Study:
- To investigate the role of Tpl2 in obesity-associated insulin resistance using Tpl2-deficient mice.
- To determine if Tpl2 deficiency affects metabolic parameters under high-fat diet conditions.
Main Methods:
- Comparison of wild-type and Tpl2-deficient mice fed standard or high-fat diets.
- Assessment of body composition, glucose tolerance, and insulin tolerance.
- Analysis of inflammatory gene expression in white adipose tissue.
- Measurement of Tpl2 and ERK1/2 activation.
Main Results:
- Tpl2 deficiency did not alter fat/lean mass accumulation on high-fat diets.
- No significant differences in glucose tolerance were observed between genotypes.
- Slight insulin tolerance impairment in Tpl2-deficient mice on a 59% high-fat diet.
- High-fat diet increased inflammatory markers but not Tpl2 expression or ERK1/2 activation.
Conclusions:
- Tpl2 does not play a critical, non-redundant role in obesity-associated metabolic dysfunction.
- The findings suggest Tpl2 is not a primary driver of insulin resistance in diet-induced obesity.
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