Exercise-Induced Increase in Glucose Transporters in Plasma Membranes of Rat Skeletal Muscle*
- 1 January 1989
- journal article
- research article
- Published by The Endocrine Society in Endocrinology
- Vol. 124 (1), 449-454
- https://doi.org/10.1210/endo-124-1-449
Abstract
A previously developed technique for the isolation of plasma and intracellular membrane fractions from rat skeletal muscle was used to investigate transporter migration after insulin treatment or a bout of exercise (45 min of treadmill). Glucose-inhibitable cytochalasin-B binding was used to estimate the number of glucose transporters. Insulin and exercise caused increases in glucose uptake into the hindlimb muscles of 5- and 3-fold, respectively. Each stimulus also caused a 2-fold increase in the number of glucose transporters in plasma membranes prepared from hindlimb muscles. The insulin-induced increase in plasma membrane transporters was accompanied by a concomitant decrease in transporters from the intracellular pool. In contrast to insulin, there was no concomitant decrease in the number of cytochalasin-B-binding sites in the intracellular membrane fraction from exercised muscles. The ability of both insulin and exercise to increase the number of transporters in the plasma membrane is in accordance with recruitment of transporters as one cause of increased transport activity. However, the inability of exercise to decrease the number of transporters in the insulin-sensitive intracellular pool suggests the existence of either a second recruitable transporter pool or masked glucose transporters in the plasma membrane that are unmasked by the muscle contractile activity.This publication has 22 references indexed in Scilit:
- Identification of the d-glucose-inhibitable cytochalasin B binding site as the glucose transporter in rat diaphragm plasma and microsomal membranesBiochimica et Biophysica Acta (BBA) - Biomembranes, 1983
- The glucose transport system of muscle plasma membranes: Characterization by means of [3H]cytochalasin B bindingArchives of Biochemistry and Biophysics, 1983
- Evidence that translocation of the glucose transport activity is the major mechanism of insulin action on glucose transport in fat cells.Journal of Biological Chemistry, 1982
- Potential mechanism of insulin action on glucose transport in the isolated rat diaphragm. Apparent translocation of intracellular transport units to the plasma membrane.Journal of Biological Chemistry, 1981
- Insulin-stimulated translocation of glucose transport systems in the isolated rat adipose cell. Time course, reversal, insulin concentration dependency, and relationship to glucose transport activity.Journal of Biological Chemistry, 1981
- Potential mechanism of insulin action on glucose transport in the isolated rat adipose cell. Apparent translocation of intracellular transport systems to the plasma membrane.Journal of Biological Chemistry, 1980
- Evidence that insulin causes translocation of glucose transport activity to the plasma membrane from an intracellular storage site.Proceedings of the National Academy of Sciences, 1980
- Inhibition of glucose uptake and glycogenolysis by availability of oleate in well-oxygenated perfused skeletal muscleBiochemical Journal, 1977
- Subcellular Localization and Properties of 5'-Nucleotidase in the Rat LiverJournal of Biological Chemistry, 1967
- STUDIES OF TISSUE PERMEABILITY .X. CHANGES IN PERMEABILIGY TO 3-METHYLGLUCOSE ASSOCIATED WITH CONTRACTION OF ISOLATED FROG MUSCLE1965