Human Skeletal Muscle: Properties of the "Chemically Skinned" Fiber
- 21 March 1975
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 187 (4181), 1075-1076
- https://doi.org/10.1126/science.187.4181.1075
Abstract
A "skinning%" procedure is described for irreversibly disrupting the sarcolemmal membrane of human skeletal muscle and allowing calcium and other diffusible solutes (such as adenosine triphosphate) access to the myofilament space. Single skinned fibers give isometric tensions of about 1.5 kilograms per square centimeter when exposed to ionized calcium event after 1 to 2 weeks of storage at 5°C. For up to 5 days the preparation will sequester and, under appropriate conditions (anion substitution, caffeine addition, or magnesium withdrawal), release calciumn. The regulation of intracellular calcium distribution and the calcium-induced activation of the contractile proteins are discussed and related to the morphology of humnan fibers and to similar processes occurring on other muscle preparations.Keywords
This publication has 8 references indexed in Scilit:
- An electron microscopic study of myofilament calcium binding sites in native, EGTA-chelated and calcium reloaded glycerolated mammalian skeletal muscleCalcified Tissue International, 1974
- Calcium Binding and Tension Development in Detergent-Treated Muscle FibersThe Journal of general physiology, 1974
- Regulation of Tension in the Skinned Crayfish Muscle FiberThe Journal of general physiology, 1972
- Studies of Cardiac Muscle with a High Permeability to Calcium Produced by Treatment with Ethylenediaminetetraacetic AcidThe Journal of general physiology, 1971
- Regulation of Tension in the Skinned Crayfish Muscle FiberThe Journal of general physiology, 1971
- Calcium Induced Release of Calcium from the Sarcoplasmic Reticulum of Skinned Skeletal Muscle FibresNature, 1970
- Fine structure of fiber types in normal human muscleThe Anatomical Record, 1966
- Glycerinated Skeletal and Smooth Muscle: Calcium and Magnesium DependenceScience, 1965