Bridging the myoplasmic gap II: more recent advances in skeletal muscle excitation-contraction coupling

The Journal of Experimental Biology
R A Bannister

Abstract

In skeletal muscle, excitation-contraction (EC) coupling relies on the transmission of an intermolecular signal from the voltage-sensing regions of the L-type Ca(2+) channel (Ca(V)1.1) in the plasma membrane to the channel pore of the type 1 ryanodine receptor (RyR1) nearly 10 nm away in the membrane of the sarcoplasmic reticulum (SR). Even though the roles of Ca(V)1.1 and RyR1 as voltage sensor and SR Ca(2+) release channel, respectively, have been established for nearly 25 years, the mechanism underlying communication between these two channels remains undefined. In the course of this article, I will review current viewpoints on this topic with particular emphasis on recent studies.

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Citations

Jan 1, 2014·The International Journal of Biochemistry & Cell Biology·Robyn T RebbeckAngela F Dulhunty
Oct 4, 2016·Clinical and Experimental Pharmacology & Physiology·Angela F DulhuntyNicole A Beard
Mar 25, 2017·International Journal of Obesity : Journal of the International Association for the Study of Obesity·F SeebacherR S James
Nov 11, 2017·The Journal of General Physiology·Gerhard Meissner
Oct 29, 2017·Proceedings of the National Academy of Sciences of the United States of America·Siobhan M Wong King YuenFilip Van Petegem
Sep 14, 2017·Anesthesiology·Sheila RiaziPhilip M Hopkins
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Jul 5, 2018·The Journal of General Physiology·Werner Melzer
Jun 2, 2017·The Journal of Physiology·Valeriy LukyanenkoRobert J Bloch
Dec 23, 2016·Proceedings of the National Academy of Sciences of the United States of America·Jeremy W LinsleyJohn Y Kuwada
Jan 13, 2018·The Journal of Biological Chemistry·Donald BeqollariRoger A Bannister
Jun 25, 2021·Journal of Applied Physiology·Mohsin Haseeb, Paul D Thompson
Jul 15, 2021·Cell Calcium·Daniel R MirandaRoger A Bannister
Sep 22, 2021·The Journal of General Physiology·Nicoletta SavalliRiccardo Olcese
Dec 10, 2019·Biochemical and Biophysical Research Communications·D BeqollariR A Bannister

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