In the past four decades numerous findings have indicated that gap junction channel gating is mediated by intracellular calcium concentrations ([Ca2+i]) in the high nanomolar range via calmodulin (CaM). We have proposed a CaM-based gating model based on evidence for a direct CaM role in gating. This model is based on the following: CaM inhibitors and the inhibition of CaM expression to prevent chemical gating. A CaM mutant with higher Ca2+ sensitivity greatly increases gating sensitivity. CaM co-localizes with connexins. Connexins have high-affinity CaM-binding sites. Connexin mutants paired to wild type connexins have a higher gating sensitivity, which is eliminated by the inhibition of CaM expression. Repeated trans-junctional voltage (Vj...
AbstractCalcium entry via voltage-gated calcium channels can be regulated by calcium- and voltage-de...
Several Ca(2+)-permeable channels, including the non-selective cation channel TRPV4, are subject to ...
Ca2+ channels and calmodulin are two prominent signaling hubs1 that synergistically impact functions...
AbstractIntracellular Ca2+ activated calmodulin (CaM) inhibits gap junction channels in the low nano...
AbstractBoth Ca2+ and H+ play a role in chemical gating of gap junction channels, but, with the poss...
Ca2+/calmodulin (Ca2+/CaM) interaction with connexins (Cx) is well-established; however, the mechani...
AbstractBoth Ca2+ and H+ play a role in chemical gating of gap junction channels, but, with the poss...
Calcium and calmodulin are implicated in mediating the Ca2+-dependent regulation of gap junctions th...
Calcium and calmodulin are implicated in mediating the Ca2+-dependent regulation of gap junctions th...
The regulation of the cell-to-cell pathway formed by gap junctions seems to involve the interaction ...
Most cells exchange ions and small metabolites via gap junction channels. These channels are made of...
Intracellular calcium is essential for many physiological processes, from neuronal signaling and exo...
Modulation of the fast electrical transmission between neurons could lead to changes that affect lea...
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...
Several Ca(2+)-permeable channels, including the non-selective cation channel TRPV4, are subject to ...
Ca2+ channels and calmodulin are two prominent signaling hubs1 that synergistically impact functions...
AbstractIntracellular Ca2+ activated calmodulin (CaM) inhibits gap junction channels in the low nano...
AbstractBoth Ca2+ and H+ play a role in chemical gating of gap junction channels, but, with the poss...
Ca2+/calmodulin (Ca2+/CaM) interaction with connexins (Cx) is well-established; however, the mechani...
AbstractBoth Ca2+ and H+ play a role in chemical gating of gap junction channels, but, with the poss...
Calcium and calmodulin are implicated in mediating the Ca2+-dependent regulation of gap junctions th...
Calcium and calmodulin are implicated in mediating the Ca2+-dependent regulation of gap junctions th...
The regulation of the cell-to-cell pathway formed by gap junctions seems to involve the interaction ...
Most cells exchange ions and small metabolites via gap junction channels. These channels are made of...
Intracellular calcium is essential for many physiological processes, from neuronal signaling and exo...
Modulation of the fast electrical transmission between neurons could lead to changes that affect lea...
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...
Several Ca(2+)-permeable channels, including the non-selective cation channel TRPV4, are subject to ...
Ca2+ channels and calmodulin are two prominent signaling hubs1 that synergistically impact functions...