Rab3 interacting molecules (RIMs) are evolutionarily conserved scaffolding proteins that are located at presynaptic active zones. In the mammalian nervous system, RIMs have two major activities that contribute to the fidelity of baseline synaptic transmission: they concentrate calcium channels at the active zone and facilitate synaptic vesicle docking/priming. Here we confirm that RIM has an evolutionarily conserved function at the Drosophila neuromuscular junction and then define a novel role for RIM during homeostatic synaptic plasticity. We show that loss of RIM disrupts baseline vesicle release, diminishes presynaptic calcium influx, and diminishes the size of the readily-releasable pool (RRP) of synaptic vesicles, consistent with known...
Presynaptic homeostatic plasticity (PHP) compensates for impaired postsynaptic neurotransmitter rece...
At presynaptic active zones, arrays of large conserved scaffold proteins mediate fast and temporally...
Presynaptic active zones (AZs) contain many molecules essential for neurotransmitter release and are...
Here we define activities of RIM-binding protein (RBP) that are essential for baseline neurotransmis...
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...
Fast neurotransmitter release is essential for neuron-neuron communication and is initiated by the o...
The molecular machinery mediating the fusion of synaptic vesicles (SVs) at presynaptic active zone (...
SummaryAt presynaptic active zones, neurotransmitter release is initiated by the opening of voltage-...
At presynaptic active zones, neurotransmitter release is initiated by the opening of voltage-gated C...
The presynaptic terminals of synaptic connections are composed of a complex network of interacting p...
Stable function of networks requires that synapses adapt their strength to levels of neuronal activi...
Presynaptic active zones (AZ) contain many molecules essential for neurotransmitter release and are ...
Neurotransmitters are released by synaptic vesicle fusion at the active zone(1,2). The active zone o...
AbstractThe active zone protein RIM1α interacts with multiple active zone and synaptic vesicle prote...
Presynaptic homeostatic plasticity (PHP) compensates for impaired postsynaptic neurotransmitter rece...
At presynaptic active zones, arrays of large conserved scaffold proteins mediate fast and temporally...
Presynaptic active zones (AZs) contain many molecules essential for neurotransmitter release and are...
Here we define activities of RIM-binding protein (RBP) that are essential for baseline neurotransmis...
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...
Fast neurotransmitter release is essential for neuron-neuron communication and is initiated by the o...
The molecular machinery mediating the fusion of synaptic vesicles (SVs) at presynaptic active zone (...
SummaryAt presynaptic active zones, neurotransmitter release is initiated by the opening of voltage-...
At presynaptic active zones, neurotransmitter release is initiated by the opening of voltage-gated C...
The presynaptic terminals of synaptic connections are composed of a complex network of interacting p...
Stable function of networks requires that synapses adapt their strength to levels of neuronal activi...
Presynaptic active zones (AZ) contain many molecules essential for neurotransmitter release and are ...
Neurotransmitters are released by synaptic vesicle fusion at the active zone(1,2). The active zone o...
AbstractThe active zone protein RIM1α interacts with multiple active zone and synaptic vesicle prote...
Presynaptic homeostatic plasticity (PHP) compensates for impaired postsynaptic neurotransmitter rece...
At presynaptic active zones, arrays of large conserved scaffold proteins mediate fast and temporally...
Presynaptic active zones (AZs) contain many molecules essential for neurotransmitter release and are...