Skeletal Muscle TRIB3 Mediates Glucose Toxicity in Diabetes and High- Fat Diet–Induced Insulin Resistance

Author:

Zhang Wei1,Wu Mengrui2,Kim Teayoun3,Jariwala Ravi H.1,Garvey W. John1,Luo Nanlan1,Kang Minsung1,Ma Elizabeth1,Tian Ling1,Steverson Dennis1,Yang Qinglin1,Fu Yuchang1,Garvey W. Timothy14

Affiliation:

1. Department of Nutrition Sciences, University of Alabama at Birmingham, Birmingham, AL

2. Department of Molecular & Cellular Pathology, University of Alabama at Birmingham, Birmingham, AL

3. Department of Medicine-Endocrinology, Diabetes & Metabolism, University of Alabama at Birmingham, Birmingham, AL

4. Birmingham Veterans Affairs Medical Center, Birmingham, AL

Abstract

In the current study, we used muscle-specific TRIB3 overexpressing (MOE) and knockout (MKO) mice to determine whether TRIB3 mediates glucose-induced insulin resistance in diabetes and whether alterations in TRIB3 expression as a function of nutrient availability have a regulatory role in metabolism. In streptozotocin diabetic mice, TRIB3 MOE exacerbated, whereas MKO prevented, glucose-induced insulin resistance and impaired glucose oxidation and defects in insulin signal transduction compared with wild-type (WT) mice, indicating that glucose-induced insulin resistance was dependent on TRIB3. In response to a high-fat diet, TRIB3 MOE mice exhibited greater weight gain and worse insulin resistance in vivo compared with WT mice, coupled with decreased AKT phosphorylation, increased inflammation and oxidative stress, and upregulation of lipid metabolic genes coupled with downregulation of glucose metabolic genes in skeletal muscle. These effects were prevented in the TRIB3 MKO mice relative to WT mice. In conclusion, TRIB3 has a pathophysiological role in diabetes and a physiological role in metabolism. Glucose-induced insulin resistance and insulin resistance due to diet-induced obesity both depend on muscle TRIB3. Under physiological conditions, muscle TRIB3 also influences energy expenditure and substrate metabolism, indicating that the decrease and increase in muscle TRIB3 under fasting and nutrient excess, respectively, are critical for metabolic homeostasis.

Funder

National Institutes of Health

Department of Veterans Affairs

American Diabetes Association

National Institute of Diabetes and Digestive and Kidney Diseases

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

Reference45 articles.

1. The effect of insulin treatment on insulin secretion and insulin action in type II diabetes mellitus;Garvey;Diabetes,1985

2. Glucose toxicity;Rossetti;Diabetes Care,1990

3. Hyperglycaemia as an inducer as well as a consequence of impaired islet cell function and insulin resistance: implications for the management of diabetes;Unger;Diabetologia,1985

4. Restoration of insulin responsiveness in skeletal muscle of morbidly obese patients after weight loss. Effect on muscle glucose transport and glucose transporter GLUT4;Friedman;J Clin Invest,1992

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