Information processing in our brains depends on the exact timing of calcium (Ca2+)-activated exocytosis of synaptic vesicles (SVs) from unique release sites embedded within the presynaptic active zones (AZs). While AZ scaffolding proteins obviously provide an efficient environment for release site function, the molecular design creating such release sites had remained unknown for a long time. Recent advances in visualizing the ultrastructure and topology of presynaptic protein architectures have started to elucidate how scaffold proteins establish “nanodomains” that connect voltage-gated Ca2+ channels (VGCCs) physically and functionally with release-ready SVs. Scaffold proteins here seem to operate as “molecular rulers or spacers,” regulati...
Neuronal circuit output is dependent on the embedded synapses’ precise regulation of Ca2+ mediated r...
Action potential (AP) induces presynaptic membrane depolarization and subsequent opening of Ca2+ cha...
Calcium ion influx through voltage-gated calcium channels (Cav) triggers synaptic vesicle (SV) fusio...
Information processing in our brains depends on the exact timing of calcium (Ca2+)-activated exocyto...
High-throughput electron microscopy has started to reveal synaptic connectivity maps of single circu...
Neuronal communication across synapses relies on neurotransmitter release from presynaptic active zo...
Neural information processing depends on precisely timed, Ca2+-activated synaptic vesicle exocytosis...
Chemical synapses are heterogeneous junctions formed between neurons that are specialized for the co...
At presynaptic active zones, arrays of large conserved scaffold proteins mediate fast and temporally...
Ca2+ concentrations drop rapidly over a distance of a few tens of nanometers from an open voltage-ga...
Calcium-evoked release of neurotransmitters from synaptic vesicles (SVs) is catalysed by SNARE prote...
Calcium-dependent exocytosis of synaptic vesicles mediates the release of neurotransmitters. Importa...
The so-called active zones at pre-synaptic terminals are the ultimate filtering devices, which coupl...
During an action potential, Ca2+ entering a presynaptic terminal triggers synaptic vesicle exocytosi...
Brain function relies on fast and precisely timed synaptic vesicle (SV) release at active zones (AZs...
Neuronal circuit output is dependent on the embedded synapses’ precise regulation of Ca2+ mediated r...
Action potential (AP) induces presynaptic membrane depolarization and subsequent opening of Ca2+ cha...
Calcium ion influx through voltage-gated calcium channels (Cav) triggers synaptic vesicle (SV) fusio...
Information processing in our brains depends on the exact timing of calcium (Ca2+)-activated exocyto...
High-throughput electron microscopy has started to reveal synaptic connectivity maps of single circu...
Neuronal communication across synapses relies on neurotransmitter release from presynaptic active zo...
Neural information processing depends on precisely timed, Ca2+-activated synaptic vesicle exocytosis...
Chemical synapses are heterogeneous junctions formed between neurons that are specialized for the co...
At presynaptic active zones, arrays of large conserved scaffold proteins mediate fast and temporally...
Ca2+ concentrations drop rapidly over a distance of a few tens of nanometers from an open voltage-ga...
Calcium-evoked release of neurotransmitters from synaptic vesicles (SVs) is catalysed by SNARE prote...
Calcium-dependent exocytosis of synaptic vesicles mediates the release of neurotransmitters. Importa...
The so-called active zones at pre-synaptic terminals are the ultimate filtering devices, which coupl...
During an action potential, Ca2+ entering a presynaptic terminal triggers synaptic vesicle exocytosi...
Brain function relies on fast and precisely timed synaptic vesicle (SV) release at active zones (AZs...
Neuronal circuit output is dependent on the embedded synapses’ precise regulation of Ca2+ mediated r...
Action potential (AP) induces presynaptic membrane depolarization and subsequent opening of Ca2+ cha...
Calcium ion influx through voltage-gated calcium channels (Cav) triggers synaptic vesicle (SV) fusio...