Abstract
Dihydropyridine receptors (DHPRs), which are voltage-gated Ca2+ channels, and ryanodine receptors (RyRs), which are intracellular Ca2+ release channels, are expressed in diverse cell types, including skeletal and cardiac muscle. In skeletal muscle, there appears to be reciprocal signaling between the skeletal isoforms of both the DHPR and the RyR (RyR-1), such that Ca2+ release activity of RyR-1 is controlled by the DHPR and Ca2+ channel activity of the DHPR is controlled by RyR-1. Dyspedic skeletal muscle cells, which do not express RyR-1, lack excitation-contraction coupling and have an approximately 30-fold reduction in L-type Ca2+ current density. Here we have examined the ability of the predominant cardiac and brain RyR isoform, RyR-2, to substitute for RyR-1 in interacting with the skeletal DHPR. When RyR-2 is expressed in dyspedic muscle cells, it gives rise to spontaneous intracellular Ca2+ oscillations and supports Ca2+ entry-induced Ca2+ release. However, unlike RyR-1, the expressed RyR-2 does not increase the Ca2+ channel activity of the DHPR, nor is the gating of RyR-2 controlled by the skeletal DHPR. Thus, the ability to participate in skeletal-type reciprocal signaling appears to be a unique feature of RyR-1.
MeSH Terms
Animals
Brain
Caffeine/pharmacology
Calcium/metabolism
Calcium Channels/genetics,metabolism,physiology
Calcium Channels, L-Type
Cells, Cultured
Gap Junctions/ultrastructure
Ion Channel Gating/physiology
Mice
Muscle Contraction/physiology
Muscle Fibers, Skeletal/physiology
Muscle Proteins/genetics,metabolism,physiology
Muscle, Skeletal/metabolism
Myocardium/metabolism
Patch-Clamp Techniques
Rabbits
Ryanodine/pharmacology
Ryanodine Receptor Calcium Release Channel
Signal Transduction
Chemicals
Calcium Channels
Calcium Channels, L-Type
Muscle Proteins
Ryanodine Receptor Calcium Release Channel
Ryanodine
Caffeine
Calcium
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Nakai J
Department of Information Physiology, National Institute of Physiological Science, Myodaiji-cho, Okazaki, Japan.
Ogura T
Protasi F
Franzini-Armstrong C
Allen P D
Beam K G
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