The activity of the voltage-gated Na+ channel is subjected to modulation through covalent modifications. It has been previously shown that brain Na+ currents are reduced following the activation of the protein kinase A (PKA) pathway, but the effect of the phosphorylation on the gating mechanism of the channel has not been demonstrated so far. In this study, we analyze the whole-cell Na+ current recorded in the absence or presence of forskolin, which stimulates the PKA pathway. A minimal molecular model of the gating mechanism of the Na+ channel is defined to fit the experimental data: it consists of three closed states, one open state, and two inactivated states. We experimentally demonstrate that the kinetics of inactivation from the close...
Regulation of voltage-gated sodium channels is crucial to firing patterns that constitute the output...
AbstractThe mechanism of modulation of sodium channel α-subunits (Type IIA) by a protein kinase C (P...
AbstractThis study presents what is, to our knowledge, a novel technique by means of which the ratio...
AbstractThe activity of the voltage-gated Na+ channel is subjected to modulation through covalent mo...
Voltage-gated sodium channels respond to excitatory inputs in nerve cells, generating spikes of depo...
AbstractVoltage-gated Na+ channels are major targets of G protein-coupled receptor (GPCR)-initiated ...
There is considerable evidence suggesting that intracellular second messengers can modulate the acti...
AbstractNa channels inactivate quickly after opening, and the very highly positively charged cytopla...
1. The rat brain type IIA Na+ channel alpha-subunit was stably expressed in Chinese hamster ovary (C...
SummaryNeurotransmitters modulate sodium channel availability through activation of G protein-couple...
In response to depolarization of the membrane poten-tial, Shaker K+ channels undergo a series of vol...
GABA, the major inhibitory neurotransmitter in the mammalian brain, binds to GABAA receptors, which ...
Thesis (Ph. D.)--University of Hawaii at Manoa, 1993.Microfiche.vii 70 leaves, bound ill. 29 cmSodiu...
Regulation of voltage-gated sodium channels is crucial to firing patterns that constitute the output...
AbstractVoltage-gated Na+ channels play a fundamental role in the excitability of nerve and muscle c...
Regulation of voltage-gated sodium channels is crucial to firing patterns that constitute the output...
AbstractThe mechanism of modulation of sodium channel α-subunits (Type IIA) by a protein kinase C (P...
AbstractThis study presents what is, to our knowledge, a novel technique by means of which the ratio...
AbstractThe activity of the voltage-gated Na+ channel is subjected to modulation through covalent mo...
Voltage-gated sodium channels respond to excitatory inputs in nerve cells, generating spikes of depo...
AbstractVoltage-gated Na+ channels are major targets of G protein-coupled receptor (GPCR)-initiated ...
There is considerable evidence suggesting that intracellular second messengers can modulate the acti...
AbstractNa channels inactivate quickly after opening, and the very highly positively charged cytopla...
1. The rat brain type IIA Na+ channel alpha-subunit was stably expressed in Chinese hamster ovary (C...
SummaryNeurotransmitters modulate sodium channel availability through activation of G protein-couple...
In response to depolarization of the membrane poten-tial, Shaker K+ channels undergo a series of vol...
GABA, the major inhibitory neurotransmitter in the mammalian brain, binds to GABAA receptors, which ...
Thesis (Ph. D.)--University of Hawaii at Manoa, 1993.Microfiche.vii 70 leaves, bound ill. 29 cmSodiu...
Regulation of voltage-gated sodium channels is crucial to firing patterns that constitute the output...
AbstractVoltage-gated Na+ channels play a fundamental role in the excitability of nerve and muscle c...
Regulation of voltage-gated sodium channels is crucial to firing patterns that constitute the output...
AbstractThe mechanism of modulation of sodium channel α-subunits (Type IIA) by a protein kinase C (P...
AbstractThis study presents what is, to our knowledge, a novel technique by means of which the ratio...