SummaryThe Ca2+-free form of calmodulin (apoCaM) often appears inert, modulating target molecules only upon conversion to its Ca2+-bound form. This schema has appeared to govern voltage-gated Ca2+ channels, where apoCaM has been considered a dormant Ca2+ sensor, associated with channels but awaiting the binding of Ca2+ ions before inhibiting channel opening to provide vital feedback inhibition. Using single-molecule measurements of channels and chemical dimerization to elevate apoCaM, we find that apoCaM binding on its own markedly upregulates opening, rivaling the strongest forms of modulation. Upon Ca2+ binding to this CaM, inhibition may simply reverse the initial upregulation. As RNA-edited and -spliced channel variants show different a...
AbstractL-type Ca2+ channels possess a Ca2+-dependent inactivation (CDI) mechanism, affording feedba...
Tight regulation of calcium entry through the L-type calcium channel CaV1.2 ensures optimal excitati...
Intracellular calcium is essential for many physiological processes, from neuronal signaling and exo...
SummaryThe Ca2+-free form of calmodulin (apoCaM) often appears inert, modulating target molecules on...
AbstractThe cardiac L-type voltage-dependent calcium channel is responsible for initiating excitatio...
SummaryCaV1.3 ion channels are dominant Ca2+ portals into pacemaking neurons, residing at the epicen...
SummaryVoltage-gated Na and Ca2+ channels comprise distinct ion channel superfamilies, yet the carbo...
AbstractIn neurons, binding of calmodulin (CaM) or calcium-binding protein 1 (CaBP1) to the CaV1 (L-...
AbstractCa2+-dependent inactivation (CDI) of L-type voltage-gated Ca2+ channels limits Ca2+ entry in...
AbstractSmall conductance Ca2+-activated K+ channels (SK channels) are composed of the pore-forming ...
Ca2+ channels and calmodulin are two prominent signaling hubs1 that synergistically impact functions...
The voltage-gated Ca2+ and Na channels represent two major ion-channel superfamilies with distinct b...
CaV1.3 ion channels are dominant Ca2+ portals into pacemaking neurons, residing at the epicenter of ...
AbstractWhile many ion channels are modulated by phosphorylation, there is growing evidence that the...
Calmodulin (CaM) is a ubiquitous calcium-binding protein responsible for the binding and activation ...
AbstractL-type Ca2+ channels possess a Ca2+-dependent inactivation (CDI) mechanism, affording feedba...
Tight regulation of calcium entry through the L-type calcium channel CaV1.2 ensures optimal excitati...
Intracellular calcium is essential for many physiological processes, from neuronal signaling and exo...
SummaryThe Ca2+-free form of calmodulin (apoCaM) often appears inert, modulating target molecules on...
AbstractThe cardiac L-type voltage-dependent calcium channel is responsible for initiating excitatio...
SummaryCaV1.3 ion channels are dominant Ca2+ portals into pacemaking neurons, residing at the epicen...
SummaryVoltage-gated Na and Ca2+ channels comprise distinct ion channel superfamilies, yet the carbo...
AbstractIn neurons, binding of calmodulin (CaM) or calcium-binding protein 1 (CaBP1) to the CaV1 (L-...
AbstractCa2+-dependent inactivation (CDI) of L-type voltage-gated Ca2+ channels limits Ca2+ entry in...
AbstractSmall conductance Ca2+-activated K+ channels (SK channels) are composed of the pore-forming ...
Ca2+ channels and calmodulin are two prominent signaling hubs1 that synergistically impact functions...
The voltage-gated Ca2+ and Na channels represent two major ion-channel superfamilies with distinct b...
CaV1.3 ion channels are dominant Ca2+ portals into pacemaking neurons, residing at the epicenter of ...
AbstractWhile many ion channels are modulated by phosphorylation, there is growing evidence that the...
Calmodulin (CaM) is a ubiquitous calcium-binding protein responsible for the binding and activation ...
AbstractL-type Ca2+ channels possess a Ca2+-dependent inactivation (CDI) mechanism, affording feedba...
Tight regulation of calcium entry through the L-type calcium channel CaV1.2 ensures optimal excitati...
Intracellular calcium is essential for many physiological processes, from neuronal signaling and exo...