AbstractThe cardiac muscle isoform of the ryanodine receptor/Ca2+ release channel (RYR) has been proposed to be an important target of cyclic ADP-ribose (cADPR) action in mammalian cells. However, we now demonstrate that neither cADPR (0.1–5 μM), nor the related metabolites, β-NAD+ (0.1–30 mM) and ADP-ribose (0.1–5 μM), affected cardiac RYR activity as determined by [3H]ryanodine binding to cardiac sarcoplasmic reticulum (SR) vesicles. Similarly, cADPR (1 μM) failed to activate single cardiac RYR channels in planar lipid bilayers. Skeletal muscle SR [3H]ryanodine binding was also unaffected by cADPR (up to 30 μM). These results argue against a direct role for the well-characterized RYRs of cardiac or skeletal muscle in mediating cADPR-activ...
Phosphorylation of the skeletal muscle (RyR1) and cardiac muscle (RyR2) ryanodine receptors has been...
clarify whether activity of the ryanodine receptor type 2 (RyR2) is reduced in the sarcoplasmic reti...
Phosphorylation of the skeletal muscle (RyR1) and cardiac muscle (RyR2) ryanodine receptors has been...
AbstractThe cardiac muscle isoform of the ryanodine receptor/Ca2+ release channel (RYR) has been pro...
AbstractThe Ca2+-mobilizing metabolite cyclic ADP-ribose (cADPR) has been shown to release Ca2+ from...
AbstractBackground Cyclic ADP-ribose (cADPR) has been shown to act as a potent cytosolic mediator in...
AbstractThe ryanodine receptor/Ca2+ release channels from skeletal (RyR1) and cardiac (RyR2) muscle ...
Ca2+ release via ryanodine receptors (RyRs) is vital in cell signalling and regulates diverse activi...
Ca2+ release via ryanodine receptors (RyRs) is vital in cell signalling and regulates diverse activi...
Ca2+ release via ryanodine receptors (RyRs) is vital in cell signalling and regulates diverse activi...
Two isoforms of the sarcoplasmic reticulum Ca2+ release channel (ryanodine receptor or RYR) are expr...
The action of cyclic-ADP-ribose was studied on calcium release from sarcoplasmic reticulum of skelet...
The action of cyclic-ADP-ribose was studied on calcium release from sarcoplasmic reticulum of skelet...
The action of cyclic-ADP-ribose was studied on calcium release from sarcoplasmic reticulum of skelet...
AbstractSix chimeras of the skeletal muscle (RyR1) and cardiac muscle (RyR2) Ca2+ release channels (...
Phosphorylation of the skeletal muscle (RyR1) and cardiac muscle (RyR2) ryanodine receptors has been...
clarify whether activity of the ryanodine receptor type 2 (RyR2) is reduced in the sarcoplasmic reti...
Phosphorylation of the skeletal muscle (RyR1) and cardiac muscle (RyR2) ryanodine receptors has been...
AbstractThe cardiac muscle isoform of the ryanodine receptor/Ca2+ release channel (RYR) has been pro...
AbstractThe Ca2+-mobilizing metabolite cyclic ADP-ribose (cADPR) has been shown to release Ca2+ from...
AbstractBackground Cyclic ADP-ribose (cADPR) has been shown to act as a potent cytosolic mediator in...
AbstractThe ryanodine receptor/Ca2+ release channels from skeletal (RyR1) and cardiac (RyR2) muscle ...
Ca2+ release via ryanodine receptors (RyRs) is vital in cell signalling and regulates diverse activi...
Ca2+ release via ryanodine receptors (RyRs) is vital in cell signalling and regulates diverse activi...
Ca2+ release via ryanodine receptors (RyRs) is vital in cell signalling and regulates diverse activi...
Two isoforms of the sarcoplasmic reticulum Ca2+ release channel (ryanodine receptor or RYR) are expr...
The action of cyclic-ADP-ribose was studied on calcium release from sarcoplasmic reticulum of skelet...
The action of cyclic-ADP-ribose was studied on calcium release from sarcoplasmic reticulum of skelet...
The action of cyclic-ADP-ribose was studied on calcium release from sarcoplasmic reticulum of skelet...
AbstractSix chimeras of the skeletal muscle (RyR1) and cardiac muscle (RyR2) Ca2+ release channels (...
Phosphorylation of the skeletal muscle (RyR1) and cardiac muscle (RyR2) ryanodine receptors has been...
clarify whether activity of the ryanodine receptor type 2 (RyR2) is reduced in the sarcoplasmic reti...
Phosphorylation of the skeletal muscle (RyR1) and cardiac muscle (RyR2) ryanodine receptors has been...