TBC1D4-S711 Controls Skeletal Muscle Insulin Sensitization After Exercise and Contraction

Author:

Kjøbsted Rasmus1ORCID,Kristensen Jonas M.1,Eskesen Nicolas O.1,Kido Kohei1,Fjorder Klara1,Damgaard Ditte F.1,Larsen Jeppe K.12ORCID,Andersen Nicoline R.1,Birk Jesper B.1,Gudiksen Anders3,Treebak Jonas T.2,Schjerling Peter45,Pilegaard Henriette3,Wojtaszewski Jørgen F.P.1ORCID

Affiliation:

1. 1August Krogh Section for Molecular Physiology, Department of Nutrition, Exercise and Sports, Faculty of Science, University of Copenhagen, Copenhagen, Denmark

2. 2Novo Nordisk Foundation Center for Basic Metabolic Research, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark

3. 3Department of Biology, Section for Cell Biology and Physiology, University of Copenhagen, Copenhagen, Denmark

4. 4Institute of Sports Medicine Copenhagen, Department of Orthopedic Surgery, Copenhagen University Hospital Bispebjerg and Frederiksberg, Copenhagen, Denmark

5. 5Center for Healthy Aging, Department of Clinical Medicine, University of Copenhagen, Copenhagen, Denmark

Abstract

The ability of insulin to stimulate glucose uptake in skeletal muscle is important for whole-body glycemic control. Insulin-stimulated skeletal muscle glucose uptake is improved in the period after a single bout of exercise, and accumulating evidence suggests that phosphorylation of TBC1D4 by the protein kinase AMPK is the primary mechanism responsible for this phenomenon. To investigate this, we generated a TBC1D4 knock-in mouse model with a serine-to-alanine point mutation at residue 711 that is phosphorylated in response to both insulin and AMPK activation. Female TBC1D4-S711A mice exhibited normal growth and eating behavior as well as intact whole-body glycemic control on chow and high-fat diets. Moreover, muscle contraction increased glucose uptake, glycogen utilization, and AMPK activity similarly in wild-type and TBC1D4-S711A mice. In contrast, improvements in whole-body and muscle insulin sensitivity after exercise and contractions were only evident in wild-type mice and occurred concomitantly with enhanced phosphorylation of TBC1D4-S711. These results provide genetic evidence to support that TBC1D4-S711 serves as a major point of convergence for AMPK- and insulin-induced signaling that mediates the insulin-sensitizing effect of exercise and contractions on skeletal muscle glucose uptake.

Funder

Novo Nordisk Fonden

Det Frie Forskningsråd

Danish Diabetes Academy

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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