The sodium leak channel NALCN is poorly understood, but is reported as a Na+-permeable, nonselective cation leak channel which regulates resting membrane potential and electrical excitability. Previous work has indicated that NALCN currents can be stimulated by activation of several G protein coupled receptors, including the M3 muscarinic receptor. We undertook a study using voltage clamp electrophysiology to investigate NALCN currents. We compared currents elicited from untransfected control HEK239 cells in response to M3R agonists muscarine or Oxotremorine M to currents elicited from cells transfected with M3R only or the M3R plus NALCN and cDNA encoding accessory proteins UNC-80 and Src. Currents with similar properties were observed in ...
Certain neuron types fire spontaneously at high rates, an ability that is crucial for their function...
SummarySodium plays a key role in determining the basal excitability of the nervous systems through ...
AbstractAmiloride-sensitive Na+ channels belonging to the recently discovered NaC/DEG family of gene...
International audienceA previously uncharacterized putative ion channel, NALCN (sodium leak channel,...
International audienceCell excitability and its modulation by hormones and neurotransmitters involve...
The resting membrane potential (RMP) of a neuron is set by a complex balance between charged ions, i...
The resting membrane potential (RMP) of a neuron is set by a complex balance between charged ions, i...
Ion channels are crucial components of cellular excitability and are involved in many neurological d...
L'activité électrique des neurones dépend de la l’expression et de l'activité des canaux ioniques, d...
Ion channels are crucial components of cellular excitability and are involved in many neurological d...
<p>(A,B) Representative traces of steady state leak currents cells (A) expressing NALCN-EKEE or (B) ...
Pacemaker cells are involved in regulating numerous essential biological functions. These cells exhi...
NALCN is a member of the family of ion channels with four homologous, repeat domains that include vo...
<div><p>NALCN is a member of the family of ion channels with four homologous, repeat domains that in...
International audienceAnterior pituitary endocrine cells that release hormones such as growth hormon...
Certain neuron types fire spontaneously at high rates, an ability that is crucial for their function...
SummarySodium plays a key role in determining the basal excitability of the nervous systems through ...
AbstractAmiloride-sensitive Na+ channels belonging to the recently discovered NaC/DEG family of gene...
International audienceA previously uncharacterized putative ion channel, NALCN (sodium leak channel,...
International audienceCell excitability and its modulation by hormones and neurotransmitters involve...
The resting membrane potential (RMP) of a neuron is set by a complex balance between charged ions, i...
The resting membrane potential (RMP) of a neuron is set by a complex balance between charged ions, i...
Ion channels are crucial components of cellular excitability and are involved in many neurological d...
L'activité électrique des neurones dépend de la l’expression et de l'activité des canaux ioniques, d...
Ion channels are crucial components of cellular excitability and are involved in many neurological d...
<p>(A,B) Representative traces of steady state leak currents cells (A) expressing NALCN-EKEE or (B) ...
Pacemaker cells are involved in regulating numerous essential biological functions. These cells exhi...
NALCN is a member of the family of ion channels with four homologous, repeat domains that include vo...
<div><p>NALCN is a member of the family of ion channels with four homologous, repeat domains that in...
International audienceAnterior pituitary endocrine cells that release hormones such as growth hormon...
Certain neuron types fire spontaneously at high rates, an ability that is crucial for their function...
SummarySodium plays a key role in determining the basal excitability of the nervous systems through ...
AbstractAmiloride-sensitive Na+ channels belonging to the recently discovered NaC/DEG family of gene...