Quantitative determination of Na+-K+-ATPase and other sarcolemmal components in muscle cells
- 1 January 1988
- journal article
- review article
- Published by American Physiological Society in American Journal of Physiology-Cell Physiology
- Vol. 254 (1) , C1-C7
- https://doi.org/10.1152/ajpcell.1988.254.1.c1
Abstract
A recurring problem in the characterization of plasma membrane enzymes in tissues and cells is whether the samples tested are representative for the entire population of enzyme molecules present in the starting material. Measurements of [3H]-ouabain binding, enzyme activity, and maximum transport capacity all indicate that the concentration of Na+-K+ pumps in mammalian skeletal muscle is high (300-800 pmol/g wet wt). Studies on Na+-K+-ATPase activity in isolated sarcolemma, however, generally give little or no information on total cellular enzyme concentration. Due to the low and variable enzyme recovery (0.2-8.9%), such subcellular preparations may, therefore, give misleading data on factors regulating Na+-K+-ATPase in heart and skeletal muscle cells. As the same isolation and purification procedures are used for the study of other sarcolemmal components (lipids, hormone receptors, enzymes, and other transport systems), this inadequate recovery has general implications for statements on regulatory changes in the sarcolemmal composition of muscle cells. On the other hand, complete quantification of Na+-K+-ATPase in muscle tissue can now be achieved using simple procedures and the entire material (intact muscle fibers, biopsies, and whole homogenates). Recent studies have shown that regulatory changes in the entire population of Na+-K+ pumps in muscle can be quantified in measurements of [3H]-ouabain binding, K+-activated 3-O-methylfluorescein phosphatase activity, as well as maximum ouabain suppressible Na+-K+ transport capacity.Keywords
This publication has 11 references indexed in Scilit:
- Quantification of the maximum capacity for active sodium‐potassium transport in rat skeletal muscle.The Journal of Physiology, 1987
- Ouabain binding and Na+ content in resistance vessels and skeletal muscles of spontaneously hypertensive rats and K+-depleted rats.Hypertension, 1985
- The Na+K+-pump, energy metabolism, and obesityBiochemical and Biophysical Research Communications, 1982
- DISTRIBUTION AND FUNCTION OF β‐ADRENOCEPTORS IN DIFFERENT CHAMBERS OF THE CANINE HEARTBritish Journal of Pharmacology, 1980
- Thyroid hormones and the energetics of active sodium‐potassium transport in mammalian skeletal muscles.The Journal of Physiology, 1979
- Isolation and chemical composition of sarcolemmal membranes from rabbit and frog skeletal muscleInternational Journal of Biochemistry, 1977
- Increase in the (Na+ + K+)-ATPase activity in heart muscle after chronic treatment with digitoxin or potassium deficient dietEuropean Journal of Pharmacology, 1976
- Thyroid thermogenesis. Relationships between Na+-dependent respiration and Na+ + K+-adenosine triphosphatase activity in rat skeletal muscle.Journal of Clinical Investigation, 1976
- Identification of cardiac beta-adrenergic receptors by (minus) [3H]alprenolol binding.Proceedings of the National Academy of Sciences, 1975
- Ouabain binding and Na+K+ transport in rat muscle cells and adipocytesBiochimica et Biophysica Acta (BBA) - Biomembranes, 1974