Calmodulin is a ubiquitous Ca 2+ binding protein that modulates the in vitro activity of the skeletal muscle ryanodine receptor (RyR1). Residues 3614–3643 of RyR1 comprise the CaM binding domain and mutations within this region result in a loss of both high-affinity Ca 2+ -bound calmodulin (CaCaM) and Ca 2+ -free CaM (apoCaM) binding (L3624D) or only CaCaM binding (W3620A). To investigate the functional role of CaM binding to this region of RyR1 in intact skeletal muscle, we compared the ability of RyR1, L3624D, and W3620A to restore excitation–contraction (EC) coupling after expression in RyR1-deficient (dyspedic) myotubes. W3620A-expressing cells responded normally to 10 mM caffeine and 500 μM 4-chloro- m -cresol (4-cmc). Interestingly, L...
In the present study, we have identified calmodulin binding sequences in the skeletal muscle ryanod...
The calmodulin-binding properties of the rabbit skeletal muscle Ca2+ release channel (ryanodine rece...
AbstractThe L-type Ca2+ channels CaV1.1 (α1S) and CaV1.2 (α1C) share properties of targeting but dif...
Calmodulin is a ubiquitous Ca 2+ binding protein that modulates the in vitro activity of the skeleta...
Calmodulin (CaM) is a ubiquitous Ca2+-binding protein that regulates the ryanodine receptors (RyRs) ...
Calmodulin (CaM) inhibits the skeletal muscle ryanodine receptor-1 (RyR1) and cardiac muscle RyR2 at...
Fusion proteins and full-length mutants were generated to identify the Ca(2+)-free (apoCaM) and Ca(2...
Metabolically (35)S-labeled calmodulin (CaM) was used to determine the CaM binding properties of the...
The skeletal muscle (RyR1) and cardiac muscle (RyR2) ryanodine receptor calcium release channels con...
AbstractIn this investigation we use a “dyspedic” myogenic cell line, which does not express any rya...
AbstractThe ryanodine receptor/Ca2+ release channels from skeletal (RyR1) and cardiac (RyR2) muscle ...
AbstractA fragment of RyR1 (amino acids 4064–4210) is predicted to fold to at least one lobe of calm...
AbstractOf the three known ryanodine receptor (RyR) isoforms expressed in muscle, RyR1 and RyR2 have...
In the present study, we have identified calmodulin binding sequences in the skeletal muscle ryanodi...
Cardiac ryanodine receptor (RyR2) is a homotetramer of 560 kDa polypeptides regulated by calmodulin ...
In the present study, we have identified calmodulin binding sequences in the skeletal muscle ryanod...
The calmodulin-binding properties of the rabbit skeletal muscle Ca2+ release channel (ryanodine rece...
AbstractThe L-type Ca2+ channels CaV1.1 (α1S) and CaV1.2 (α1C) share properties of targeting but dif...
Calmodulin is a ubiquitous Ca 2+ binding protein that modulates the in vitro activity of the skeleta...
Calmodulin (CaM) is a ubiquitous Ca2+-binding protein that regulates the ryanodine receptors (RyRs) ...
Calmodulin (CaM) inhibits the skeletal muscle ryanodine receptor-1 (RyR1) and cardiac muscle RyR2 at...
Fusion proteins and full-length mutants were generated to identify the Ca(2+)-free (apoCaM) and Ca(2...
Metabolically (35)S-labeled calmodulin (CaM) was used to determine the CaM binding properties of the...
The skeletal muscle (RyR1) and cardiac muscle (RyR2) ryanodine receptor calcium release channels con...
AbstractIn this investigation we use a “dyspedic” myogenic cell line, which does not express any rya...
AbstractThe ryanodine receptor/Ca2+ release channels from skeletal (RyR1) and cardiac (RyR2) muscle ...
AbstractA fragment of RyR1 (amino acids 4064–4210) is predicted to fold to at least one lobe of calm...
AbstractOf the three known ryanodine receptor (RyR) isoforms expressed in muscle, RyR1 and RyR2 have...
In the present study, we have identified calmodulin binding sequences in the skeletal muscle ryanodi...
Cardiac ryanodine receptor (RyR2) is a homotetramer of 560 kDa polypeptides regulated by calmodulin ...
In the present study, we have identified calmodulin binding sequences in the skeletal muscle ryanod...
The calmodulin-binding properties of the rabbit skeletal muscle Ca2+ release channel (ryanodine rece...
AbstractThe L-type Ca2+ channels CaV1.1 (α1S) and CaV1.2 (α1C) share properties of targeting but dif...