AbstractThe space between the t-tubule invagination and the sarcoplasmic reticulum (SR) membrane, the dyad, in ventricular myocytes has been predicted to experience very high [Ca2+] for short periods of time during a Ca2+ transient. The dyadic space accommodates many protein kinases responsible for the regulation of Ca2+ handling proteins of the cell. We show in vitro that cAMP-dependent protein kinase (PKA) is inhibited by high [Ca2+] through a shift in the ratio of CaATP/MgATP toward CaATP. We further generate a three-dimensional mathematical model of Ca2+ and ATP diffusion within dyad. We use this model to predict the extent to which PKA would be inhibited by an increased CaATP/MgATP ratio during a Ca2+ transient in the dyad in vivo. Our...
The ryanodine-sensitive calcium channels are pivotal to signal transduction and cell function in man...
AbstractTrigger Ca2+ is considered to be the Ca2+ current through the L-type Ca2+ channel (LTCC) tha...
AbstractCa2+ signaling in cells is largely governed by Ca2+ diffusion and Ca2+ binding to mobile and...
AbstractIn cardiac ventricular myocytes, events crucial to excitation-contraction coupling take plac...
AbstractWe have constructed a three-dimensional reaction-diffusion model of the mammalian cardiac ca...
AbstractIn cardiac ventricular myocytes, calcium (Ca) release occurs at distinct structures (dyads) ...
Nonmuscle cells have almost ubiquitously evolved a mechanism to detect and prevent Ca(2+) store depl...
AbstractThe dyadic organization of ventricular myocytes ensures synchronized activation of sarcoplas...
The [Beta]-adrenergic pathway in cardiac myocytes activates protein kinase A (PKA) to phosphoregulat...
ABSTRACT In cardiac ventricular myocytes, events crucial to excitation-contraction coupling take pla...
AbstractFast Ca2+ release kinetics were measured in cardiac sarcoplasmic reticulum vesicles actively...
The “Fight or Flight” response is elicited by extrinsic stress and is necessary in many species for ...
Ca2+-induced delayed afterdepolarizations (DADs) are depolarizations that occur after full repolariz...
Steady-state activation of cardiac β-adrenergic receptors leads to an intracellular compartmentation...
Ca signaling in cells is largely governed by Ca diffusion and Ca binding to mobile and stat...
The ryanodine-sensitive calcium channels are pivotal to signal transduction and cell function in man...
AbstractTrigger Ca2+ is considered to be the Ca2+ current through the L-type Ca2+ channel (LTCC) tha...
AbstractCa2+ signaling in cells is largely governed by Ca2+ diffusion and Ca2+ binding to mobile and...
AbstractIn cardiac ventricular myocytes, events crucial to excitation-contraction coupling take plac...
AbstractWe have constructed a three-dimensional reaction-diffusion model of the mammalian cardiac ca...
AbstractIn cardiac ventricular myocytes, calcium (Ca) release occurs at distinct structures (dyads) ...
Nonmuscle cells have almost ubiquitously evolved a mechanism to detect and prevent Ca(2+) store depl...
AbstractThe dyadic organization of ventricular myocytes ensures synchronized activation of sarcoplas...
The [Beta]-adrenergic pathway in cardiac myocytes activates protein kinase A (PKA) to phosphoregulat...
ABSTRACT In cardiac ventricular myocytes, events crucial to excitation-contraction coupling take pla...
AbstractFast Ca2+ release kinetics were measured in cardiac sarcoplasmic reticulum vesicles actively...
The “Fight or Flight” response is elicited by extrinsic stress and is necessary in many species for ...
Ca2+-induced delayed afterdepolarizations (DADs) are depolarizations that occur after full repolariz...
Steady-state activation of cardiac β-adrenergic receptors leads to an intracellular compartmentation...
Ca signaling in cells is largely governed by Ca diffusion and Ca binding to mobile and stat...
The ryanodine-sensitive calcium channels are pivotal to signal transduction and cell function in man...
AbstractTrigger Ca2+ is considered to be the Ca2+ current through the L-type Ca2+ channel (LTCC) tha...
AbstractCa2+ signaling in cells is largely governed by Ca2+ diffusion and Ca2+ binding to mobile and...