Mechanism of calcium release from skeletal sarcoplasmic reticulum |
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Authors: | Hiroshi Miyamoto Efraim Racker |
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Affiliation: | (1) Section of Biochemistry, Molecular and Cell Biology, Cornell University, 14853 Ithaca, New York;(2) Present address: Faculty of Engineering Science, Osaka University, Toyonaka, Osaka, Japan |
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Abstract: | Summary Ca2+-induced Ca2+ release at the terminal cisternae of skeletal sarcoplasmic reticulum was demonstrated using heavy sarcoplasmic reticulum vesicles. Ca2+ release was observed at 10 m Ca2+ in the presence of 1.25mm free Mg2+ and was sensitive to low concentrations of ruthenium red and was partially inhibited by valinomycin. These results suggest that the Ca2+-induced Ca2+ release is electrogenic and that an inside negative membrane potential created by the Ca2+ flux opens a second channel that releases Ca2+. Results in support of this formulation were obtained by applying a Cl– gradient or K+ gradient to sarcoplasmic reticulum vesicles to initiate Ca2+ release. Based on experiments the following hypothesis for the excitation-contraction coupling of skeletal muscle was formulated. On excitation, small amounts of Ca2+ enter from the transverse tubule and interact with a Ca2+ receptor at the terminal cisternae and cause Ca2+ release (Ca2+-induced Ca2+ release). This Ca2+ flux generates an inside negative membrane potential which opens voltage-gated Ca2+ channels (membrane potential-dependent Ca2+ release) in amounts sufficient for contraction. |
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Keywords: | sarcoplasmic reticulum Ca2+ release excitation-contraction coupling muscular contraction valinomycin ruthenium red |
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