SummaryA cation channel NCA/UNC-79/UNC-80 affects neuronal activity. We report here the identification of a conserved endoplasmic reticulum protein NLF-1 (NCA localization factor-1) that regulates neuronal excitability and locomotion through the NCA channel. In C. elegans, the loss of either NLF-1 or NCA leads to a reduced sodium leak current, and a hyperpolarized resting membrane potential in premotor interneurons. This results in a decreased premotor interneuron activity that reduces the initiation and sustainability of rhythmic locomotion. NLF-1 promotes axonal localization of all NCA reporters. Its mouse homolog mNLF-1 functionally substitutes for NLF-1 in C. elegans, interacts with the mammalian sodium leak channel NALCN in vitro, and ...
Voltage-gated sodium channels (Navs) are critical determinants of cellular excitability. These ion c...
Pacemaker cells are involved in regulating numerous essential biological functions. These cells exhi...
International audienceIn neurons, voltage-gated sodium (Nav) channels underlie the generation and pr...
Neuronal excitability is determined by complex interactions between a repertoire of ion conductance ...
Neuronal excitability is controlled by multiple ion channels at the plasma membrane of neurons. Rece...
International audienceCell excitability and its modulation by hormones and neurotransmitters involve...
Voltage-gated cation channels regulate neuronal excitability through selective ion flux. NALCN, a me...
Persistent neural activity, a sustained circuit output that outlasts the stimuli, underlies short-te...
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...
The resting membrane potential (RMP) of a neuron is set by a complex balance between charged ions, i...
Certain neuron types fire spontaneously at high rates, an ability that is crucial for their function...
Extracellular K+, Na+, and Ca2+ ions all influence the resting membrane potential of the neuron. How...
Ion channels are crucial components of cellular excitability and are involved in many neurological d...
SummarySodium plays a key role in determining the basal excitability of the nervous systems through ...
Voltage-gated sodium channels (Navs) are critical determinants of cellular excitability. These ion c...
Pacemaker cells are involved in regulating numerous essential biological functions. These cells exhi...
International audienceIn neurons, voltage-gated sodium (Nav) channels underlie the generation and pr...
Neuronal excitability is determined by complex interactions between a repertoire of ion conductance ...
Neuronal excitability is controlled by multiple ion channels at the plasma membrane of neurons. Rece...
International audienceCell excitability and its modulation by hormones and neurotransmitters involve...
Voltage-gated cation channels regulate neuronal excitability through selective ion flux. NALCN, a me...
Persistent neural activity, a sustained circuit output that outlasts the stimuli, underlies short-te...
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...
The resting membrane potential (RMP) of a neuron is set by a complex balance between charged ions, i...
Certain neuron types fire spontaneously at high rates, an ability that is crucial for their function...
Extracellular K+, Na+, and Ca2+ ions all influence the resting membrane potential of the neuron. How...
Ion channels are crucial components of cellular excitability and are involved in many neurological d...
SummarySodium plays a key role in determining the basal excitability of the nervous systems through ...
Voltage-gated sodium channels (Navs) are critical determinants of cellular excitability. These ion c...
Pacemaker cells are involved in regulating numerous essential biological functions. These cells exhi...
International audienceIn neurons, voltage-gated sodium (Nav) channels underlie the generation and pr...