Regulation of voltage-gated sodium channels is crucial to firing patterns that constitute the output of medium spiny neurons (MSN), projecting neurons of the striatum. This modulation is thus critical for the final integration of information processed within the striatum. It has been shown that the adenylate cyclase pathway reduces sodium currents in MSN through channel phosphorylation by cAMP-dependent protein kinase. However, it is unknown whether a phospholipase C (PLC)-mediated signaling cascade could also modulate voltage-gated sodium channels within MSN. Using the whole-cell patch clamp technique, we investigated the effects of activation of two key components in PLC-mediated signaling cascades: protein kinase C (PKC) and inositol-1,4...
AbstractThe activity of the voltage-gated Na+ channel is subjected to modulation through covalent mo...
We examined the effects of neurotensin (NTS) on the excitability of type II neurons in the rat dorso...
Protein kinase C has recently been shown to modulate the slow recovery from inactivation of Na+ chan...
Regulation of voltage-gated sodium channels is crucial to firing patterns that constitute the output...
AbstractAdenosine evoked whole-cell potassium currents and enhanced intracellular free Ca2+ concentr...
SummaryNeurotransmitters modulate sodium channel availability through activation of G protein-couple...
AbstractThe M current regulates neuronal excitability, with its amplitude resulting from high open p...
We investigated the interference of protein-kinase C (PKC)-dependent Na(+) channel phosphorylation o...
We investigated the interference of protein-kinase C (PKC)-dependent Na(+) channel phosphorylation o...
AbstractResurgent sodium currents likely play a role in modulating neuronal excitability. Here we st...
AbstractVoltage-gated Na+ channels are major targets of G protein-coupled receptor (GPCR)-initiated ...
GABA, the major inhibitory neurotransmitter in the mammalian brain, binds to GABAA receptors, which ...
AbstractIn rat neostriatal neurons, D1 dopamine receptors regulate the activity of cyclic AMP-depend...
Intracellular recordings were obtained from myenteric AH neurons of guinea pig ileum in vitro. Slow ...
Voltage-gated sodium channels respond to excitatory inputs in nerve cells, generating spikes of depo...
AbstractThe activity of the voltage-gated Na+ channel is subjected to modulation through covalent mo...
We examined the effects of neurotensin (NTS) on the excitability of type II neurons in the rat dorso...
Protein kinase C has recently been shown to modulate the slow recovery from inactivation of Na+ chan...
Regulation of voltage-gated sodium channels is crucial to firing patterns that constitute the output...
AbstractAdenosine evoked whole-cell potassium currents and enhanced intracellular free Ca2+ concentr...
SummaryNeurotransmitters modulate sodium channel availability through activation of G protein-couple...
AbstractThe M current regulates neuronal excitability, with its amplitude resulting from high open p...
We investigated the interference of protein-kinase C (PKC)-dependent Na(+) channel phosphorylation o...
We investigated the interference of protein-kinase C (PKC)-dependent Na(+) channel phosphorylation o...
AbstractResurgent sodium currents likely play a role in modulating neuronal excitability. Here we st...
AbstractVoltage-gated Na+ channels are major targets of G protein-coupled receptor (GPCR)-initiated ...
GABA, the major inhibitory neurotransmitter in the mammalian brain, binds to GABAA receptors, which ...
AbstractIn rat neostriatal neurons, D1 dopamine receptors regulate the activity of cyclic AMP-depend...
Intracellular recordings were obtained from myenteric AH neurons of guinea pig ileum in vitro. Slow ...
Voltage-gated sodium channels respond to excitatory inputs in nerve cells, generating spikes of depo...
AbstractThe activity of the voltage-gated Na+ channel is subjected to modulation through covalent mo...
We examined the effects of neurotensin (NTS) on the excitability of type II neurons in the rat dorso...
Protein kinase C has recently been shown to modulate the slow recovery from inactivation of Na+ chan...