Neurons fire by releasing neurotransmitters via fusion of synaptic vesicles with the plasma membrane. Fusion can be evoked by an incoming signal from a preceding neuron or can occur spontaneously. Synaptic vesicle fusion requires the formation of trans complexes between SNAREs as well as Ca(2+) ions. Wang et al. (2014. J. Cell Biol. http://dx.doi.org/jcb.201312109) now find that the Ca(2+)-binding protein Calmodulin promotes spontaneous release and SNARE complex formation via its interaction with the V0 sector of the V-ATPase
Neurotransmission is central to neuronal communication, through which information is processed, stor...
Calcium-evoked release of neurotransmitters from synaptic vesicles (SVs) is catalysed by SNARE prote...
SummaryNeurotransmitter release proceeds by Ca2+-triggered, SNARE-complex-dependent synaptic vesicle...
SummaryAcidification of synaptic vesicles by the vacuolar proton ATPase is essential for loading wit...
Evoked release of synaptic vesicles occurs after an action poten-tial (or series of action potential...
International audienceJ. Neurochem. (2011) 10.1111/j.1471-4159.2011.07234.x ABSTRACT: SNARE (soluble...
SummaryThe V0 complex forms the proteolipid pore of an ATPase that acidifies vesicles. In addition, ...
The relationship between transmitter release evoked by action potentials and spontaneous release has...
Calcium-dependent exocytosis of synaptic vesicles mediates the release of neurotransmitters. Importa...
During an action potential, Ca2+ entering a presynaptic terminal triggers synaptic vesicle exocytosi...
International audienceAcidification of synaptic vesicles by the vacuolar proton ATPase is essential ...
SummarySNARE-complex assembly mediates synaptic vesicle fusion during neurotransmitter release and r...
SummaryBackgroundIn neurons, release of neurotransmitter occurs through the fusion of synaptic vesic...
SummarySynaptic vesicles belong to two distinct pools, a recycling pool responsible for the evoked r...
The V(0) complex forms the proteolipid pore of an ATPase that acidifies vesicles. In addition, an in...
Neurotransmission is central to neuronal communication, through which information is processed, stor...
Calcium-evoked release of neurotransmitters from synaptic vesicles (SVs) is catalysed by SNARE prote...
SummaryNeurotransmitter release proceeds by Ca2+-triggered, SNARE-complex-dependent synaptic vesicle...
SummaryAcidification of synaptic vesicles by the vacuolar proton ATPase is essential for loading wit...
Evoked release of synaptic vesicles occurs after an action poten-tial (or series of action potential...
International audienceJ. Neurochem. (2011) 10.1111/j.1471-4159.2011.07234.x ABSTRACT: SNARE (soluble...
SummaryThe V0 complex forms the proteolipid pore of an ATPase that acidifies vesicles. In addition, ...
The relationship between transmitter release evoked by action potentials and spontaneous release has...
Calcium-dependent exocytosis of synaptic vesicles mediates the release of neurotransmitters. Importa...
During an action potential, Ca2+ entering a presynaptic terminal triggers synaptic vesicle exocytosi...
International audienceAcidification of synaptic vesicles by the vacuolar proton ATPase is essential ...
SummarySNARE-complex assembly mediates synaptic vesicle fusion during neurotransmitter release and r...
SummaryBackgroundIn neurons, release of neurotransmitter occurs through the fusion of synaptic vesic...
SummarySynaptic vesicles belong to two distinct pools, a recycling pool responsible for the evoked r...
The V(0) complex forms the proteolipid pore of an ATPase that acidifies vesicles. In addition, an in...
Neurotransmission is central to neuronal communication, through which information is processed, stor...
Calcium-evoked release of neurotransmitters from synaptic vesicles (SVs) is catalysed by SNARE prote...
SummaryNeurotransmitter release proceeds by Ca2+-triggered, SNARE-complex-dependent synaptic vesicle...