Electrical Stimuli Release ATP to Increase GLUT4 Translocation and Glucose Uptake via PI3Kγ-Akt-AS160 in Skeletal Muscle Cells

Author:

Osorio-Fuentealba Cesar1,Contreras-Ferrat Ariel E.1,Altamirano Francisco1,Espinosa Alejandra12,Li Qing34,Niu Wenyan4,Lavandero Sergio156,Klip Amira3,Jaimovich Enrique1

Affiliation:

1. Center for Molecular Studies of the Cell, Biomedical Sciences Institute, Universidad de Chile, Santiago, Chile

2. School of Medical Technology, Faculty of Medicine, Universidad de Chile, Santiago, Chile

3. Cell Biology Program, The Hospital for Sick Children, Toronto, Ontario, Canada

4. Department of Immunology, Tianjin Medical University, Tianjin, China

5. Faculty of Pharmaceutical and Chemical Sciences, Universidad de Chile, Santiago, Chile

6. Department of Internal Medicine (Cardiology), University of Texas Southwestern Medical Center, Dallas, Texas

Abstract

Skeletal muscle glucose uptake in response to exercise is preserved in insulin-resistant conditions, but the signals involved are debated. ATP is released from skeletal muscle by contractile activity and can autocrinely signal through purinergic receptors, and we hypothesized it may influence glucose uptake. Electrical stimulation, ATP, and insulin each increased fluorescent 2-NBD-Glucose (2-NBDG) uptake in primary myotubes, but only electrical stimulation and ATP-dependent 2-NBDG uptake were inhibited by adenosine-phosphate phosphatase and by purinergic receptor blockade (suramin). Electrical stimulation transiently elevated extracellular ATP and caused Akt phosphorylation that was additive to insulin and inhibited by suramin. Exogenous ATP transiently activated Akt and, inhibiting phosphatidylinositol 3-kinase (PI3K) or Akt as well as dominant-negative Akt mutant, reduced ATP-dependent 2-NBDG uptake and Akt phosphorylation. ATP-dependent 2-NBDG uptake was also inhibited by the G protein βγ subunit-interacting peptide βark-ct and by the phosphatidylinositol 3-kinase-γ (PI3Kγ) inhibitor AS605240. ATP caused translocation of GLUT4myc-eGFP to the cell surface, mechanistically mediated by increased exocytosis involving AS160/Rab8A reduced by dominant-negative Akt or PI3Kγ kinase-dead mutants, and potentiated by myristoylated PI3Kγ. ATP stimulated 2-NBDG uptake in normal and insulin-resistant adult muscle fibers, resembling the reported effect of exercise. Hence, the ATP-induced pathway may be tapped to bypass insulin resistance.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

Reference50 articles.

1. Exercise in the management of non-insulin-dependent diabetes mellitus;Wallberg-Henriksson;Sports Med,1998

2. Exercise: it’s the real thing!;Hawley;Nutr Rev,2009

3. Skeletal muscle glucose uptake during exercise: how is it regulated?;Rose;Physiology (Bethesda),2005

4. Exercise-induced increase in muscle insulin sensitivity;Holloszy;J Appl Physiol,2005

5. Effect of insulin and contraction up on glucose transport in skeletal muscle;Pereira;Prog Biophys Mol Biol,2004

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