Fibroblast growth factor-21 potentiates glucose transport in skeletal muscle fibers

Author:

Rosales-Soto G12,Diaz-Vegas A1,Casas M1,Contreras-Ferrat A3,Jaimovich E1

Affiliation:

1. 1Physiology and Biophysics Program and Center for Studies on Exercise, Metabolism, and Cancer, ICBM, Facultad de Medicina, Universidad de Chile, Santiago, Chile

2. 2Facultad de Ciencias de la Educación, Universidad San Sebastián, Santiago, Chile

3. 3Advanced Center for Chronic Diseases, Faculty of Chemical and Pharmaceutical Sciences, Universidad de Chile, Santiago, Chile

Abstract

Fibroblast growth factor 21 (FGF21) is a pleiotropic peptide hormone that is considered a myokine playing a role in a variety of endocrine functions, including regulation of glucose transport and lipid metabolism. Although FGF21 has been associated with glucose metabolism in skeletal muscle cells, its cellular mechanism in adult skeletal muscle fibers glucose uptake is poorly understood. In the present study, we found that FGF21 induced a dose−response effect, increasing glucose uptake in skeletal muscle fibers from the flexor digitorum brevis muscle of mice, evaluated using the fluorescent glucose analog 2-NBDG (300 µM) in single living fibers. This effect was prevented by the use of either cytochalasin B (5 µM) or indinavir (100 µM), both antagonists of GLUT4 activity. The use of PI3K inhibitors such as LY294002 (50 µM) completely prevented the FGF21-dependent glucose uptake. In fibers electroporated with the construct encoding GLUT4myc-eGFP chimera and stimulated with FGF21 (100 ng/mL), a strong sarcolemmal GLUT4 label was detected. This effect promoted by FGF21 was demonstrated to be dependent on atypical PKC-ζ, by using selective PKC inhibitors. FGF21 at low concentrations potentiated the effect of insulin on glucose uptake but at high concentrations, completely inhibited the uptake in the presence of insulin. These results suggest that FGF21 regulates glucose uptake by a mechanism mediated by GLUT4 and dependent on atypical PKC-ζ in skeletal muscle.

Publisher

Bioscientifica

Subject

Endocrinology,Molecular Biology

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