Literature DB >> 2848455

Activation of the Ca2+ release channel of skeletal muscle sarcoplasmic reticulum by caffeine and related compounds.

E Rousseau1, J Ladine, Q Y Liu, G Meissner.   

Abstract

The caffeine-sensitive Ca2+ release pathway in skeletal muscle was identified and characterized by studying the release of 45Ca2+ from heavy sarcoplasmic reticulum (SR) vesicles and by incorporating the vesicles or the purified Ca2+ release channel protein complex into planar lipid bilayers. First-order rate constants for 45Ca2+ efflux of 1 s-1 were obtained in the presence of 1-10 microM free Ca2+ or 2 X 10(-9) M free Ca2+ plus 20 mM caffeine. Caffeine- and Ca2+-induced 45Ca2+ release were potentiated by ATP and Mg.ATP, and were both inhibited by Mg2+. Dimethylxanthines were similarly (3,9-dimethylxanthine) or more (1,7-, 1,3-, and 3,7-dimethylxanthine) effective than caffeine in increasing the 45Ca2+ efflux rate. 1,9-Dimethylxanthine and 1,3-dimethyluracil (which lacks the imidazole ring) did not appreciably stimulate 45Ca2+ efflux. Recordings of calcium ion currents through single channels showed that the Ca2+- and ATP-gated SR Ca2+ release channel is activated by addition of caffeine to the cis (cytoplasmic) and not the trans (lumenal) side of the channel in the bilayer. The single channel measurements further revealed that caffeine activated Ca2+ release by increasing the number and duration of open channel events without a change of unit conductance (107 pS in 50 mM Ca2+ trans). These results suggest that caffeine exerts its Ca2+ releasing effects in muscle by activating the high-conductance, ligand-gated Ca2+ release channel of sarcoplasmic reticulum.

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Year:  1988        PMID: 2848455     DOI: 10.1016/0003-9861(88)90010-0

Source DB:  PubMed          Journal:  Arch Biochem Biophys        ISSN: 0003-9861            Impact factor:   4.013


  134 in total

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Review 2.  Caffeine and excitation-contraction coupling in skeletal muscle: a stimulating story.

Authors:  A Herrmann-Frank; H C Lüttgau; D G Stephenson
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Review 4.  Ion conduction and discrimination in the sarcoplasmic reticulum ryanodine receptor/calcium-release channel.

Authors:  A J Williams
Journal:  J Muscle Res Cell Motil       Date:  1992-02       Impact factor: 2.698

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6.  Effects of caffeine on calcium release from the sarcoplasmic reticulum in frog skeletal muscle fibres.

Authors:  M G Klein; B J Simon; M F Schneider
Journal:  J Physiol       Date:  1990-06       Impact factor: 5.182

7.  Depolarization-induced Ca2+ entry preferentially evokes release of large quanta in the developing Xenopus neuromuscular junction.

Authors:  Xiao-Ping Sun; Bo-Ming Chen; Olav Sand; Yoshi Kidokoro; Alan D Grinnell
Journal:  J Neurophysiol       Date:  2010-09-15       Impact factor: 2.714

8.  The effect of the phenylalkylamine D888 (devapamil) on force and Ca2+ current in isolated frog skeletal muscle fibres.

Authors:  R Erdmann; H C Lüttgau
Journal:  J Physiol       Date:  1989-06       Impact factor: 5.182

9.  Properties of Ca(2+) release induced by clofibric acid from the sarcoplasmic reticulum of mouse skeletal muscle fibres.

Authors:  T Ikemoto; M Endo
Journal:  Br J Pharmacol       Date:  2001-10       Impact factor: 8.739

10.  4,6-Dibromo-3-hydroxycarbazole (an analogue of caffeine-like Ca2+ releaser), a novel type of inhibitor of Ca(2+)-induced Ca2+ release in skeletal muscle sarcoplasmic reticulum.

Authors:  Y Takahashi; K Furukawa; D Kozutsumi; M Ishibashi; J Kobayashi; Y Ohizumi
Journal:  Br J Pharmacol       Date:  1995-03       Impact factor: 8.739

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