International audienceThe molecular organization of presynaptic active zones is important for the neurotransmitter release that is triggered by depolarization-induced Ca2+ influx. Here, we demonstrate a previously unknown interaction between two components of the presynaptic active zone, RIM1 and voltage-dependent Ca2+ channels (VDCCs), that controls neurotransmitter release in mammalian neurons. RIM1 associated with VDCC beta-subunits via its C terminus to markedly suppress voltage-dependent inactivation among different neuronal VDCCs. Consistently, in pheochromocytoma neuroendocrine PC12 cells, acetylcholine release was significantly potentiated by the full-length and C-terminal RIM1 constructs, but membrane docking of vesicles was enhanc...
Presynaptic active zones (AZ) contain many molecules essential for neurotransmitter release and are ...
The presynaptic terminals of synaptic connections are composed of a complex network of interacting p...
Rab3 interacting molecules (RIMs) are evolutionarily conserved scaffolding proteins that are located...
International audienceThe molecular organization of presynaptic active zones is important for the ne...
SummaryAt presynaptic active zones, neurotransmitter release is initiated by the opening of voltage-...
International audienceRegulation of presynaptic voltage-gated calcium channels is critical for depol...
At presynaptic active zones, neurotransmitter release is initiated by the opening of voltage-gated C...
SummaryAt a synapse, fast synchronous neurotransmitter release requires localization of Ca2+ channel...
Fast neurotransmitter release is essential for neuron-neuron communication and is initiated by the o...
SummaryUltrafast neurotransmitter release requires tight colocalization of voltage-gated Ca2+ channe...
Neurotransmitters are released by synaptic vesicle fusion at the active zone(1,2). The active zone o...
a-RIMs (RIM1a and RIM2a) are multidomain active zone proteins of presynaptic terminals. a-RIMs bind ...
Active zones are highly specialized sites for release of neurotransmitter in presynaptic nerve termi...
Coupling between voltage-gated Ca2+ influx and synaptic vesicle exocytosis is essential for rapid ev...
Rab3 interacting molecules (RIMs) are highly enriched in the active zones of presynaptic terminals. ...
Presynaptic active zones (AZ) contain many molecules essential for neurotransmitter release and are ...
The presynaptic terminals of synaptic connections are composed of a complex network of interacting p...
Rab3 interacting molecules (RIMs) are evolutionarily conserved scaffolding proteins that are located...
International audienceThe molecular organization of presynaptic active zones is important for the ne...
SummaryAt presynaptic active zones, neurotransmitter release is initiated by the opening of voltage-...
International audienceRegulation of presynaptic voltage-gated calcium channels is critical for depol...
At presynaptic active zones, neurotransmitter release is initiated by the opening of voltage-gated C...
SummaryAt a synapse, fast synchronous neurotransmitter release requires localization of Ca2+ channel...
Fast neurotransmitter release is essential for neuron-neuron communication and is initiated by the o...
SummaryUltrafast neurotransmitter release requires tight colocalization of voltage-gated Ca2+ channe...
Neurotransmitters are released by synaptic vesicle fusion at the active zone(1,2). The active zone o...
a-RIMs (RIM1a and RIM2a) are multidomain active zone proteins of presynaptic terminals. a-RIMs bind ...
Active zones are highly specialized sites for release of neurotransmitter in presynaptic nerve termi...
Coupling between voltage-gated Ca2+ influx and synaptic vesicle exocytosis is essential for rapid ev...
Rab3 interacting molecules (RIMs) are highly enriched in the active zones of presynaptic terminals. ...
Presynaptic active zones (AZ) contain many molecules essential for neurotransmitter release and are ...
The presynaptic terminals of synaptic connections are composed of a complex network of interacting p...
Rab3 interacting molecules (RIMs) are evolutionarily conserved scaffolding proteins that are located...