Effects of electrical stimulation and insulin on Na+-K+-ATPase ([3H]ouabain binding) in rat skeletal muscle.

PubWeight™: 0.88‹?›

🔗 View Article (PMC 2342648)

Published in J Physiol on January 17, 2003

Authors

Michael J McKenna1, Hanne Gissel, Torben Clausen

Author Affiliations

1: Department of Physiology, University of Aarhus, DK-8000 Arhus C., Denmark. michael.mckenna@vu.edu.ca

Articles cited by this

Isozymes of the Na+/K+-ATPase. Biochim Biophys Acta (1989) 2.97

The effect of catecholamines on Na-K transport and membrane potential in rat soleus muscle. J Physiol (1977) 2.28

Dynamics and consequences of potassium shifts in skeletal muscle and heart during exercise. Physiol Rev (2000) 2.04

Water and ion shifts in skeletal muscle of humans with intense dynamic knee extension. Am J Physiol (1985) 1.91

Sodium-potassium-adenosinetriphosphatase-dependent sodium transport in the kidney: hormonal control. Physiol Rev (2001) 1.85

Regulation of active Na+-K+ transport in skeletal muscle. Physiol Rev (1986) 1.60

Potassium and sodium shifts during in vitro isometric muscle contraction, and the time course of the ion-gradient recovery. Pflugers Arch (1986) 1.54

Interstitial K(+) in human skeletal muscle during and after dynamic graded exercise determined by microdialysis. Am J Physiol Regul Integr Comp Physiol (2000) 1.46

Plasma potassium changes with high intensity exercise. J Physiol (1990) 1.42

Insulin induces translocation of the alpha 2 and beta 1 subunits of the Na+/K(+)-ATPase from intracellular compartments to the plasma membrane in mammalian skeletal muscle. J Biol Chem (1992) 1.37

Quantification of the maximum capacity for active sodium-potassium transport in rat skeletal muscle. J Physiol (1987) 1.30

K(+)-induced inhibition of contractile force in rat skeletal muscle: role of active Na(+)-K+ transport. Am J Physiol (1991) 1.17

Interstitial and arterial-venous [K+] in human calf muscle during dynamic exercise: effect of ischaemia and relation to muscle pain. J Physiol (2000) 1.17

Calcitonin gene-related peptide stimulates active Na(+)-K+ transport in rat soleus muscle. Am J Physiol (1993) 1.11

Sprint training enhances ionic regulation during intense exercise in men. J Physiol (1997) 1.09

Excitation- and beta(2)-agonist-induced activation of the Na(+)-K(+) pump in rat soleus muscle. J Physiol (2002) 1.06

Regulation of Na(+)-K+ pump activity in contracting rat muscle. J Physiol (1997) 1.06

Active Na-K transport and the rate of ouabain binding. The effect of insulin and other stimuli on skeletal muscle and adipocytes. J Physiol (1977) 1.06

Na,K-ATPase in skeletal muscle: two populations of beta-spectrin control localization in the sarcolemma but not partitioning between the sarcolemma and the transverse tubules. J Cell Sci (2001) 1.06

The effects of repetitive stimulation on the action potential and the twitch of rat muscle. Acta Physiol Scand (1974) 1.05

Insulin enhances sodium sensitivity of Na-K-ATPase in isolated rat proximal convoluted tubule. Am J Physiol (1994) 1.05

Combined effects of adrenaline and insulin on active electrogenic Na+-K+ transport in rat soleus muscle. Nature (1979) 1.04

Fatigue depresses maximal in vitro skeletal muscle Na(+)-K(+)-ATPase activity in untrained and trained individuals. J Appl Physiol (1985) (2002) 1.03

A simple and rapid method for the determination of the number of 3H-ouabain binding sites in biopsies of skeletal muscle. Biochem Biophys Res Commun (1983) 1.01

CELL WATER, SODIUM, AND POTASSIUM IN STIMULATED RED AND WHITE MAMMALIAN MUSCLES. Am J Physiol (1963) 1.00

Effects of fatiguing stimulation on intracellular Na+ and K+ in frog skeletal muscle. J Appl Physiol (1985) (1996) 1.00

Excitation-induced activation of the Na(+)-K+ pump in rat skeletal muscle. Am J Physiol (1994) 0.99

Clinical and therapeutic significance of the Na+,K+ pump*. Clin Sci (Lond) (1998) 0.97

Quantitative determination of Na+-K+-ATPase and other sarcolemmal components in muscle cells. Am J Physiol (1988) 0.95

Exercise-induced translocation of Na(+)-K(+) pump subunits to the plasma membrane in human skeletal muscle. Am J Physiol Regul Integr Comp Physiol (2000) 0.95

Effect of age, potassium depletion and denervation on specific displaceable [3H]ouabain binding in rat skeletal muscle in vivo. J Physiol (1982) 0.94

Excitation-induced Ca(2+) influx in rat soleus and EDL muscle: mechanisms and effects on cellular integrity. Am J Physiol Regul Integr Comp Physiol (2000) 0.92

Human neuromuscular fatigue is associated with altered Na+-K+-ATPase activity following isometric exercise. J Appl Physiol (1985) (2002) 0.92

Action of insulin on Na(+)-K(+)-ATPase and the Na(+)-K(+)-2Cl- cotransporter in 3T3-L1 adipocytes. Am J Physiol (1995) 0.86

Voltage-dependent stimulation of the Na(+)-K(+) pump by insulin in rabbit cardiac myocytes. Am J Physiol Cell Physiol (2000) 0.86

Reversibility of exercise-induced translocation of Na+-K+ pump subunits to the plasma membrane in rat skeletal muscle. Pflugers Arch (2001) 0.86

Insulin increases the Na(+)-K(+)-ATPase alpha 2-subunit in the surface of rat skeletal muscle: morphological evidence. Am J Physiol (1993) 0.85

Exercise increases the plasma membrane content of the Na+ -K+ pump and its mRNA in rat skeletal muscles. J Appl Physiol (1985) (1996) 0.84

Insulin-like growth factor I stimulates active Na(+)-K+ transport in rat soleus muscle. Am J Physiol (1995) 0.82

The alpha1 isoform of Na+,K+-ATPase in rat soleus and extensor digitorum longus. Acta Physiol Scand (2001) 0.81

Loss of potassium from muscle during moderate exercise in humans: a result of insufficient activation of the Na+-K+-pump? Acta Physiol Scand (1999) 0.81

Insulin stimulates the translocation of Na+/K(+)-dependent ATPase molecules from intracellular stores to the plasma membrane in frog skeletal muscle. Biochem J (1990) 0.81

Insulin increases the turnover rate of Na+-K+-ATPase in human fibroblasts. Am J Physiol Cell Physiol (2001) 0.81

Insulin-induced translocation of Na+-K+-ATPase subunits to the plasma membrane is muscle fiber type specific. Am J Physiol (1996) 0.80

Regulation of Na(+) pump expression by vascular smooth muscle cells. Am J Physiol Heart Circ Physiol (2001) 0.78

Na+ influx-induced decrease of (Na+ + K+)-ATPase activity in rat brain slices: role of Ca2+. Eur J Pharmacol (1991) 0.77

Articles by these authors

Reviewing should be shown in publication list. Nature (2003) 2.59

Erythropoietin over-expression protects against diet-induced obesity in mice through increased fat oxidation in muscles. PLoS One (2009) 1.44

Physiological effects of high- and low-voltage pulse combinations for gene electrotransfer in muscle. Hum Gene Ther (2008) 1.08

Excitation- and beta(2)-agonist-induced activation of the Na(+)-K(+) pump in rat soleus muscle. J Physiol (2002) 1.06

Direct therapeutic applications of calcium electroporation to effectively induce tumor necrosis. Cancer Res (2012) 1.00

Loss of force induced by high extracellular [K+] in rat muscle: effect of temperature, lactic acid and beta2-agonist. J Physiol (2003) 0.99

Gene expression profiles in skeletal muscle after gene electrotransfer. BMC Mol Biol (2007) 0.94

Effects of running distance and training on Ca2+ content and damage in human muscle. Med Sci Sports Exerc (2004) 0.94

Membrane leakage and increased content of Na+ -K+ pumps and Ca2+ in human muscle after a 100-km run. J Appl Physiol (1985) (2002) 0.88

Relationship between intracellular Na+ concentration and reduced Na+ affinity in Na+,K+-ATPase mutants causing neurological disease. J Biol Chem (2013) 0.85

The secretory response of parathyroid hormone to acute hypocalcemia in vivo is independent of parathyroid glandular sodium/potassium-ATPase activity. Kidney Int (2011) 0.84

Muscle phenotype in patients with myotonic dystrophy type 1. Muscle Nerve (2012) 0.84

Effects of lactic acid and catecholamines on contractility in fast-twitch muscles exposed to hyperkalemia. Am J Physiol Cell Physiol (2005) 0.84

Ca2+ uptake and cellular integrity in rat EDL muscle exposed to electrostimulation, electroporation, or A23187. Am J Physiol Regul Integr Comp Physiol (2003) 0.83

Effects of step exercise on muscle damage and muscle Ca2+ content in men and women. J Strength Cond Res (2008) 0.81

Causes of excitation-induced muscle cell damage in isometric contractions: mechanical stress or calcium overload? Am J Physiol Regul Integr Comp Physiol (2007) 0.80

Excitation-induced Ca2+ influx and muscle damage in the rat: loss of membrane integrity and impaired force recovery. J Physiol (2004) 0.80

Excitation-induced cell damage and beta2-adrenoceptor agonist stimulated force recovery in rat skeletal muscle. Am J Physiol Regul Integr Comp Physiol (2005) 0.79

Spatial distribution of transgenic protein after gene electrotransfer to porcine muscle. Hum Gene Ther Methods (2013) 0.79

A novel homologous model for gene therapy of dwarfism by non-viral transfer of the mouse growth hormone gene into immunocompetent dwarf mice. Curr Gene Ther (2014) 0.79

Calcium electrotransfer for termination of transgene expression in muscle. Hum Gene Ther (2011) 0.77

Regulatory role of translocation of Na+-K+ pumps in skeletal muscle: hypothesis or reality? Am J Physiol Endocrinol Metab (2008) 0.77

Effects of age and exercise training on Na+-K+ pumps in skeletal muscle. Am J Physiol Regul Integr Comp Physiol (2003) 0.77

Anoxia induces Ca2+ influx and loss of cell membrane integrity in rat extensor digitorum longus muscle. Exp Physiol (2005) 0.76

Magnesium supplementation and muscle function in patients with alcoholic liver disease: a randomized, placebo-controlled trial. Scand J Gastroenterol (2005) 0.76

Hyperthyroidism and cation pumps in human skeletal muscle. Am J Physiol Endocrinol Metab (2004) 0.75

Detection of electroporation-induced membrane permeabilization states in the brain using diffusion-weighted MRI. Acta Oncol (2015) 0.75

Calcium influx determines the muscular response to electrotransfer. Am J Physiol Regul Integr Comp Physiol (2011) 0.75