Insulin resistance differentially affects the PI 3-kinase– and MAP kinase–mediated signaling in human muscle
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Open Access
- 1 February 2000
- journal article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 105 (3), 311-320
- https://doi.org/10.1172/jci7535
Abstract
The broad nature of insulin resistant glucose metabolism in skeletal muscle of patients with type 2 diabetes suggests a defect in the proximal part of the insulin signaling network. We sought to identify the pathways compromised in insulin resistance and to test the effect of moderate exercise on whole-body and cellular insulin action. We conducted euglycemic clamps and muscle biopsies on type 2 diabetic patients, obese nondiabetics and lean controls, with and without a single bout of exercise. Insulin stimulation of the phosphatidylinositol 3-kinase (PI 3-kinase) pathway, as measured by phosphorylation of the insulin receptor and IRS-1 and by IRS protein association with p85 and with PI 3-kinase, was dramatically reduced in obese nondiabetics and virtually absent in type 2 diabetic patients. Insulin stimulation of the MAP kinase pathway was normal in obese and diabetic subjects. Insulin stimulation of glucose-disposal correlated with association of p85 with IRS-1. Exercise 24 hours before the euglycemic clamp increased phosphorylation of insulin receptor and IRS-1 in obese and diabetic subjects but did not increase glucose uptake or PI 3-kinase association with IRS-1 upon insulin stimulation. Thus, insulin resistance differentially affects the PI 3-kinase and MAP kinase signaling pathways, and insulin-stimulated IRS-1–association with PI 3-kinase defines a key step in insulin resistance.This publication has 54 references indexed in Scilit:
- Evidence against protein kinase B as a mediator of contraction‐induced glucose transport and GLUT4 translocation in rat skeletal muscleFEBS Letters, 1998
- Exercise stimulates the mitogen-activated protein kinase pathway in human skeletal muscle.Journal of Clinical Investigation, 1997
- 4PS/Insulin Receptor Substrate (IRS)-2 Is the Alternative Substrate of the Insulin Receptor in IRS-1-deficient MicePublished by Elsevier ,1995
- Mitogen-activated Protein Kinase Kinase Inhibition Does Not Block the Stimulation of Glucose Utilization by InsulinJournal of Biological Chemistry, 1995
- Excessive insulin receptor serine phosphorylation in cultured fibroblasts and in skeletal muscle. A potential mechanism for insulin resistance in the polycystic ovary syndrome.Journal of Clinical Investigation, 1995
- Insulin receptor phosphorylation, insulin receptor substrate-1 phosphorylation, and phosphatidylinositol 3-kinase activity are decreased in intact skeletal muscle strips from obese subjects.Journal of Clinical Investigation, 1995
- Insulin-Stimulated GLUT4 Translocation Is Relevant to the Phosphorylation of IRS-1 and the Activity of PI3 KinaseBiochemical and Biophysical Research Communications, 1993
- 31P nuclear magnetic resonance measurements of muscle glucose-6-phosphate. Evidence for reduced insulin-dependent muscle glucose transport or phosphorylation activity in non-insulin-dependent diabetes mellitus.Journal of Clinical Investigation, 1992
- Effects of insulin infusion on human skeletal muscle pyruvate dehydrogenase, phosphofructokinase, and glycogen synthase. Evidence for their role in oxidative and nonoxidative glucose metabolism.Journal of Clinical Investigation, 1987
- Correlation between muscle glycogen synthase activity and in vivo insulin action in man.Journal of Clinical Investigation, 1984