SummaryUnravelling principles underlying neurotransmitter release are key to understand neural signaling. Here, we describe how surface mobility of voltage-dependent calcium channels (VDCCs) modulates release probabilities (Pr) of synaptic vesicles (SVs). Coupling distances of <10 to >100 nm have been reported for SVs and VDCCs in different synapses. Tracking individual VDCCs revealed that within hippocampal synapses, ∼60% of VDCCs are mobile while confined to presynaptic membrane compartments. Intracellular Ca2+ chelation decreased VDCC mobility. Increasing VDCC surface populations by co-expression of the α2δ1 subunit did not alter channel mobility but led to enlarged active zones (AZs) rather than higher channel densities. VDCCs thus scal...
Chemical synapses are heterogeneous junctions formed between neurons that are specialized for the co...
How vesicle calcium sensors interact with calcium channels at synapses affects neurotransmitter rele...
Calcium entry through presynaptic calcium channels controls the release of neurotransmitter. It is n...
Phasic transmitter release at synapses in the mammalian CNS is regulated by local [Ca+] transients, ...
Neuronal circuit output is dependent on the embedded synapses’ precise regulation of Ca2+ mediated r...
Calcium diffusion in the thin 100 nm layer located between the plasma membrane and docked vesicles i...
Calcium triggered neurotransmitter release is distinguished from other types of cellular exocytosis ...
Phasic transmitter release at synapses in the mammalian CNS is regulated by local [Ca2+] transients,...
Phasic transmitter release at synapses in the mammalian CNS is regulated by local [Ca2+] transients,...
Fast neurotransmitter release (NTR) is triggered when the presynaptic membrane is depolarized, open...
Fast neurotransmitter release (NTR) is triggered when the presynaptic membrane is depolarized, open...
Chemical synapses are heterogeneous junctions formed between neurons that are specialized for the co...
Chemical synapses are heterogeneous junctions formed between neurons that are specialized for the co...
How vesicle calcium sensors interact with calcium channels at synapses affects neurotransmitter rele...
AbstractMorphological and biochemical studies indicate association between voltage-gated Ca2+ channe...
Chemical synapses are heterogeneous junctions formed between neurons that are specialized for the co...
How vesicle calcium sensors interact with calcium channels at synapses affects neurotransmitter rele...
Calcium entry through presynaptic calcium channels controls the release of neurotransmitter. It is n...
Phasic transmitter release at synapses in the mammalian CNS is regulated by local [Ca+] transients, ...
Neuronal circuit output is dependent on the embedded synapses’ precise regulation of Ca2+ mediated r...
Calcium diffusion in the thin 100 nm layer located between the plasma membrane and docked vesicles i...
Calcium triggered neurotransmitter release is distinguished from other types of cellular exocytosis ...
Phasic transmitter release at synapses in the mammalian CNS is regulated by local [Ca2+] transients,...
Phasic transmitter release at synapses in the mammalian CNS is regulated by local [Ca2+] transients,...
Fast neurotransmitter release (NTR) is triggered when the presynaptic membrane is depolarized, open...
Fast neurotransmitter release (NTR) is triggered when the presynaptic membrane is depolarized, open...
Chemical synapses are heterogeneous junctions formed between neurons that are specialized for the co...
Chemical synapses are heterogeneous junctions formed between neurons that are specialized for the co...
How vesicle calcium sensors interact with calcium channels at synapses affects neurotransmitter rele...
AbstractMorphological and biochemical studies indicate association between voltage-gated Ca2+ channe...
Chemical synapses are heterogeneous junctions formed between neurons that are specialized for the co...
How vesicle calcium sensors interact with calcium channels at synapses affects neurotransmitter rele...
Calcium entry through presynaptic calcium channels controls the release of neurotransmitter. It is n...