AbstractThe active zone protein RIM1α is required both for maintaining normal probability of neurotransmitter release and for long-term presynaptic potentiation at brain synapses. We now demonstrate that RIM1α−/− mice exhibit normal coordination and anxiety-related behaviors but display severely impaired learning and memory. Mice with a synaptotagmin 1 mutation, which selectively lowers release probability, and mice with Rab3A deletion, which selectively abolishes presynaptic long-term potentiation, do not exhibit this abnormality. Our data suggest that a decrease in release probability or a loss of presynaptic LTP alone is not sufficient to cause major behavioral alterations, but the combination of presynaptic abnormalities in RIM1α−/− mic...
SummaryUltrafast neurotransmitter release requires tight colocalization of voltage-gated Ca2+ channe...
SummaryAt presynaptic active zones, neurotransmitter release is initiated by the opening of voltage-...
Presynaptic active zones (AZs) contain many molecules essential for neurotransmitter release and are...
AbstractThe active zone protein RIM1α interacts with multiple active zone and synaptic vesicle prote...
The presynaptic scaffold molecule RIM1α is important for regulating neurotransmitter release. In thi...
<p>Long-term plasticity, the long-lasting, activity-dependent change in synaptic efficacy, is a fund...
AbstractPresynaptic activation of protein kinase A (PKA) induces LTP in cerebellar parallel fiber sy...
The tight spatial coupling of synaptic vesicles and voltage-gated Ca(2+) channels (CaVs) ensures eff...
Stable function of networks requires that synapses adapt their strength to levels of neuronal activi...
a-RIMs (RIM1a and RIM2a) are multidomain active zone proteins of presynaptic terminals. a-RIMs bind ...
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 ...
International audienceThe molecular organization of presynaptic active zones is important for the ne...
Neurotransmitters are released by synaptic vesicle fusion at the active zone(1,2). The active zone o...
SummaryHere we define activities of RIM-binding protein (RBP) that are essential for baseline neurot...
SummaryUltrafast neurotransmitter release requires tight colocalization of voltage-gated Ca2+ channe...
SummaryAt presynaptic active zones, neurotransmitter release is initiated by the opening of voltage-...
Presynaptic active zones (AZs) contain many molecules essential for neurotransmitter release and are...
AbstractThe active zone protein RIM1α interacts with multiple active zone and synaptic vesicle prote...
The presynaptic scaffold molecule RIM1α is important for regulating neurotransmitter release. In thi...
<p>Long-term plasticity, the long-lasting, activity-dependent change in synaptic efficacy, is a fund...
AbstractPresynaptic activation of protein kinase A (PKA) induces LTP in cerebellar parallel fiber sy...
The tight spatial coupling of synaptic vesicles and voltage-gated Ca(2+) channels (CaVs) ensures eff...
Stable function of networks requires that synapses adapt their strength to levels of neuronal activi...
a-RIMs (RIM1a and RIM2a) are multidomain active zone proteins of presynaptic terminals. a-RIMs bind ...
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 ...
International audienceThe molecular organization of presynaptic active zones is important for the ne...
Neurotransmitters are released by synaptic vesicle fusion at the active zone(1,2). The active zone o...
SummaryHere we define activities of RIM-binding protein (RBP) that are essential for baseline neurot...
SummaryUltrafast neurotransmitter release requires tight colocalization of voltage-gated Ca2+ channe...
SummaryAt presynaptic active zones, neurotransmitter release is initiated by the opening of voltage-...
Presynaptic active zones (AZs) contain many molecules essential for neurotransmitter release and are...