SummarySodium plays a key role in determining the basal excitability of the nervous systems through the resting “leak” Na+ permeabilities, but the molecular identities of the TTX- and Cs+-resistant Na+ leak conductance are totally unknown. Here we show that this conductance is formed by the protein NALCN, a substantially uncharacterized member of the sodium/calcium channel family. Unlike any of the other 20 family members, NALCN forms a voltage-independent, nonselective cation channel. NALCN mutant mice have a severely disrupted respiratory rhythm and die within 24 hours of birth. Brain stem-spinal cord recordings reveal reduced neuronal firing. The TTX- and Cs+-resistant background Na+ leak current is absent in the mutant hippocampal neuro...
The Na+ channel isoform, Navl.9 (NaN/SNS2), is preferentially expressed in small neurones of the dor...
International audienceA previously uncharacterized putative ion channel, NALCN (sodium leak channel,...
SummaryIn contrast to its extensively studied intracellular roles, the molecular mechanisms by which...
SummarySodium plays a key role in determining the basal excitability of the nervous systems through ...
Extracellular K+, Na+, and Ca2+ ions all influence the resting membrane potential of the neuron. How...
The resting membrane potential (RMP) of a neuron is set by a complex balance between charged ions, i...
Pacemaker cells are involved in regulating numerous essential biological functions. These cells exhi...
The resting membrane potential (RMP) of a neuron is set by a complex balance between charged ions, i...
International audienceCell excitability and its modulation by hormones and neurotransmitters involve...
Ion channels are crucial components of cellular excitability and are involved in many neurological d...
Neuronal excitability is determined by complex interactions between a repertoire of ion conductance ...
L'activité électrique des neurones dépend de la l’expression et de l'activité des canaux ioniques, d...
Most electrophysiologists generally do not speak highly of leak currents. In reality, these conducta...
Ion channels are crucial components of cellular excitability and are involved in many neurological d...
<div><p>Na<sub>x</sub> is a sodium-concentration ([Na<sup>+</sup>])-sensitive Na channel with a gati...
The Na+ channel isoform, Navl.9 (NaN/SNS2), is preferentially expressed in small neurones of the dor...
International audienceA previously uncharacterized putative ion channel, NALCN (sodium leak channel,...
SummaryIn contrast to its extensively studied intracellular roles, the molecular mechanisms by which...
SummarySodium plays a key role in determining the basal excitability of the nervous systems through ...
Extracellular K+, Na+, and Ca2+ ions all influence the resting membrane potential of the neuron. How...
The resting membrane potential (RMP) of a neuron is set by a complex balance between charged ions, i...
Pacemaker cells are involved in regulating numerous essential biological functions. These cells exhi...
The resting membrane potential (RMP) of a neuron is set by a complex balance between charged ions, i...
International audienceCell excitability and its modulation by hormones and neurotransmitters involve...
Ion channels are crucial components of cellular excitability and are involved in many neurological d...
Neuronal excitability is determined by complex interactions between a repertoire of ion conductance ...
L'activité électrique des neurones dépend de la l’expression et de l'activité des canaux ioniques, d...
Most electrophysiologists generally do not speak highly of leak currents. In reality, these conducta...
Ion channels are crucial components of cellular excitability and are involved in many neurological d...
<div><p>Na<sub>x</sub> is a sodium-concentration ([Na<sup>+</sup>])-sensitive Na channel with a gati...
The Na+ channel isoform, Navl.9 (NaN/SNS2), is preferentially expressed in small neurones of the dor...
International audienceA previously uncharacterized putative ion channel, NALCN (sodium leak channel,...
SummaryIn contrast to its extensively studied intracellular roles, the molecular mechanisms by which...