Voltage-gated Ca2+ channels (VGCCs) mediate Ca2+ influx to trigger neurotransmitter release at specialized presynaptic sites termed active zones (AZs). The abundance of VGCCs at AZs regulates neurotransmitter release probability (Pr), a key presynaptic determinant of synaptic strength. Although biosynthesis, delivery, and recycling cooperate to establish AZ VGCC abundance, experimentally isolating these distinct regulatory processes has been difficult. Here, we describe how the AZ levels of cacophony (Cac), the sole VGCC-mediating synaptic transmission in Drosophila, are determined. We also analyzed the relationship between Cac, the conserved VGCC regulatory subunit α2δ, and the core AZ scaffold protein Bruchpilot (BRP) in establishing a fu...
SummaryPresynaptic resting Ca2+ influences synaptic vesicle (SV) release probability. Here, we repor...
Presynaptic homeostatic plasticity (PHP) compensates for impaired postsynaptic neurotransmitter rece...
Synaptic transmission requires the localization of presynaptic release machinery to active zones. Me...
Voltage-gated Ca²⁺ channels (VGCCs) mediate Ca²⁺ influx to trigger neurotransmitter release at speci...
Synaptic vesicle (SV) release, recycling, and plastic changes of release probability co-occur side b...
Neuronal circuit output is dependent on the embedded synapses’ precise regulation of Ca2+ mediated r...
SummarySynaptic transmission requires the localization of presynaptic release machinery to active zo...
SummaryGiven the complexity of the nervous system and its capacity for change, it is remarkable that...
Neurons communicate through neurotransmitter release at specialized synaptic regions known as active...
Neurons communicate by fusing synaptic vesicles (SV) packed with neuronal transmitters with the pres...
Given the complexity of the nervous system and its capacity for change, it is remarkable that robust...
The molecular organization of presynaptic active zones during calcium influx–triggered neurotransmit...
Information processing in our brains depends on the exact timing of calcium (Ca2+)-activated exocyto...
During development of the calyx of Held synapse, presynaptic action potentials (APs) become substant...
In this study we established a transgenic Ca2+ imaging technique in Drosophila that enabled us to ta...
SummaryPresynaptic resting Ca2+ influences synaptic vesicle (SV) release probability. Here, we repor...
Presynaptic homeostatic plasticity (PHP) compensates for impaired postsynaptic neurotransmitter rece...
Synaptic transmission requires the localization of presynaptic release machinery to active zones. Me...
Voltage-gated Ca²⁺ channels (VGCCs) mediate Ca²⁺ influx to trigger neurotransmitter release at speci...
Synaptic vesicle (SV) release, recycling, and plastic changes of release probability co-occur side b...
Neuronal circuit output is dependent on the embedded synapses’ precise regulation of Ca2+ mediated r...
SummarySynaptic transmission requires the localization of presynaptic release machinery to active zo...
SummaryGiven the complexity of the nervous system and its capacity for change, it is remarkable that...
Neurons communicate through neurotransmitter release at specialized synaptic regions known as active...
Neurons communicate by fusing synaptic vesicles (SV) packed with neuronal transmitters with the pres...
Given the complexity of the nervous system and its capacity for change, it is remarkable that robust...
The molecular organization of presynaptic active zones during calcium influx–triggered neurotransmit...
Information processing in our brains depends on the exact timing of calcium (Ca2+)-activated exocyto...
During development of the calyx of Held synapse, presynaptic action potentials (APs) become substant...
In this study we established a transgenic Ca2+ imaging technique in Drosophila that enabled us to ta...
SummaryPresynaptic resting Ca2+ influences synaptic vesicle (SV) release probability. Here, we repor...
Presynaptic homeostatic plasticity (PHP) compensates for impaired postsynaptic neurotransmitter rece...
Synaptic transmission requires the localization of presynaptic release machinery to active zones. Me...