Stable function of networks requires that synapses adapt their strength to levels of neuronal activity, and failure to do so results in cognitive disorders. How such homeostatic regulation may be implemented in mammalian synapses remains poorly understood. Here we show that the phosphorylation status of several positions of the active-zone (AZ) protein RIM1 are relevant for synaptic glutamate release. Position RIMS1045 is necessary and sufficient for expression of silencing-induced homeostatic plasticity and is kept phosphorylated by serine arginine protein kinase 2 (SRPK2). SRPK2-induced upscaling of synaptic release leads to additional RIM1 nanoclusters and docked vesicles at the AZ and is not observed in the absence of RIM1 and occluded ...
SummaryAt presynaptic active zones, neurotransmitter release is initiated by the opening of voltage-...
Neuronal communication across synapses relies on neurotransmitter release from presynaptic active zo...
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...
SummaryHere we define activities of RIM-binding protein (RBP) that are essential for baseline neurot...
Rab3 interacting molecules (RIMs) are evolutionarily conserved scaffolding proteins that are located...
Presynaptic homeostatic plasticity (PHP) compensates for impaired postsynaptic neurotransmitter rece...
Presynaptic homeostatic plasticity (PHP) compensates for impaired postsynaptic neurotransmitter rece...
Here we define activities of RIM-binding protein (RBP) that are essential for baseline neurotransmis...
Fast neurotransmitter release is essential for neuron-neuron communication and is initiated by the o...
AbstractThe active zone protein RIM1α interacts with multiple active zone and synaptic vesicle prote...
SummaryUltrafast neurotransmitter release requires tight colocalization of voltage-gated Ca2+ channe...
<p>Long-term plasticity, the long-lasting, activity-dependent change in synaptic efficacy, is a fund...
Presynaptic homeostatic plasticity (PHP) compensates for impaired postsynaptic neurotransmitter rece...
All synapses require fusion-competent vesicles and coordinated Ca(2+)-secretion coupling for neurotr...
SummaryAt presynaptic active zones, neurotransmitter release is initiated by the opening of voltage-...
Neuronal communication across synapses relies on neurotransmitter release from presynaptic active zo...
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...
SummaryHere we define activities of RIM-binding protein (RBP) that are essential for baseline neurot...
Rab3 interacting molecules (RIMs) are evolutionarily conserved scaffolding proteins that are located...
Presynaptic homeostatic plasticity (PHP) compensates for impaired postsynaptic neurotransmitter rece...
Presynaptic homeostatic plasticity (PHP) compensates for impaired postsynaptic neurotransmitter rece...
Here we define activities of RIM-binding protein (RBP) that are essential for baseline neurotransmis...
Fast neurotransmitter release is essential for neuron-neuron communication and is initiated by the o...
AbstractThe active zone protein RIM1α interacts with multiple active zone and synaptic vesicle prote...
SummaryUltrafast neurotransmitter release requires tight colocalization of voltage-gated Ca2+ channe...
<p>Long-term plasticity, the long-lasting, activity-dependent change in synaptic efficacy, is a fund...
Presynaptic homeostatic plasticity (PHP) compensates for impaired postsynaptic neurotransmitter rece...
All synapses require fusion-competent vesicles and coordinated Ca(2+)-secretion coupling for neurotr...
SummaryAt presynaptic active zones, neurotransmitter release is initiated by the opening of voltage-...
Neuronal communication across synapses relies on neurotransmitter release from presynaptic active zo...
The tight spatial coupling of synaptic vesicles and voltage-gated Ca(2+) channels (CaVs) ensures eff...