AbstractCa2+-dependent inactivation (CDI) of L-type voltage-gated Ca2+ channels limits Ca2+ entry into neurons, thereby regulating numerous cellular events. Here we present the isolation and purification of the Ca2+-sensor complex, consisting of calmodulin (CaM) and part of the channel's pore-forming α1C subunit, and demonstrate the Ca2+-dependent conformational shift that underlies inactivation. Dominant-negative CaM mutants that prevent CDI block the sensor's Ca2+-dependent conformational change. We show how Ile1654 in the CaM binding IQ motif of α1C forms the link between the Ca2+ sensor and the downstream inactivation machinery, using the α1C EF hand motif as a signal transducer to activate the putative pore-occluder, the α1C I-II intra...
L-type voltage-gated Ca2+ channels (CaV1.2 and CaV1.3, called CaV) interact with the Ca2+ sensor pro...
SummaryCalcium influx drives two opposing voltage-activated calcium channel (CaV) self-modulatory pr...
Kv7.2 (KCNQ2) is the principal molecular component of the slow voltage gated M-channel, which strong...
AbstractL-type Ca2+ channels possess a Ca2+-dependent inactivation (CDI) mechanism, affording feedba...
SummaryCa2+-dependent inactivation (CDI) and facilitation (CDF) of the CaV1.2 Ca2+ channel require c...
AbstractThe cardiac L-type voltage-dependent calcium channel is responsible for initiating excitatio...
AbstractL-type (α1C) calcium channels inactivate rapidly in response to localized elevation of intra...
AbstractL-type (α1C) calcium channels inactivate rapidly in response to localized elevation of intra...
AbstractElevated intracellular Ca2+ triggers inactivation of L-type calcium channels, providing nega...
Calmodulin (CaM) is a ubiquitous calcium-binding protein responsible for the binding and activation ...
The L-type Ca2+ channel CaV1.2 controls gene expression, cardiac contraction, and neuronal activity....
The L-type Ca2+ channel CaV1.2 controls gene expression, cardiac contraction, and neuronal activity....
AbstractCalcium entry via voltage-gated calcium channels can be regulated by calcium- and voltage-de...
AbstractCa2+-induced inactivation of L-type Ca2+ is differentially mediated by two C-terminal motifs...
L-type voltage-gated Ca2+ channels (CaV1.2 and CaV1.3, called CaV) interact with the Ca2+ sensor pro...
L-type voltage-gated Ca2+ channels (CaV1.2 and CaV1.3, called CaV) interact with the Ca2+ sensor pro...
SummaryCalcium influx drives two opposing voltage-activated calcium channel (CaV) self-modulatory pr...
Kv7.2 (KCNQ2) is the principal molecular component of the slow voltage gated M-channel, which strong...
AbstractL-type Ca2+ channels possess a Ca2+-dependent inactivation (CDI) mechanism, affording feedba...
SummaryCa2+-dependent inactivation (CDI) and facilitation (CDF) of the CaV1.2 Ca2+ channel require c...
AbstractThe cardiac L-type voltage-dependent calcium channel is responsible for initiating excitatio...
AbstractL-type (α1C) calcium channels inactivate rapidly in response to localized elevation of intra...
AbstractL-type (α1C) calcium channels inactivate rapidly in response to localized elevation of intra...
AbstractElevated intracellular Ca2+ triggers inactivation of L-type calcium channels, providing nega...
Calmodulin (CaM) is a ubiquitous calcium-binding protein responsible for the binding and activation ...
The L-type Ca2+ channel CaV1.2 controls gene expression, cardiac contraction, and neuronal activity....
The L-type Ca2+ channel CaV1.2 controls gene expression, cardiac contraction, and neuronal activity....
AbstractCalcium entry via voltage-gated calcium channels can be regulated by calcium- and voltage-de...
AbstractCa2+-induced inactivation of L-type Ca2+ is differentially mediated by two C-terminal motifs...
L-type voltage-gated Ca2+ channels (CaV1.2 and CaV1.3, called CaV) interact with the Ca2+ sensor pro...
L-type voltage-gated Ca2+ channels (CaV1.2 and CaV1.3, called CaV) interact with the Ca2+ sensor pro...
SummaryCalcium influx drives two opposing voltage-activated calcium channel (CaV) self-modulatory pr...
Kv7.2 (KCNQ2) is the principal molecular component of the slow voltage gated M-channel, which strong...