Presynaptic neurotransmitter release is strictly regulated by SNARE proteins, Ca2+ and a number of Ca2+ sensors including synaptotagmins (Syts) and Double C2 domain proteins (Doc2s). More than seventy years after the original description of spontaneous release, the mechanism that regulates this process is still poorly understood. Syt-1, Syt7 and Doc2 proteins contribute predominantly, but not exclusively, to synchronous, asynchronous and spontaneous phases of release. The proteins share a conserved tandem C2 domain architecture, but are functionally diverse in their subcellular location, Ca2+-binding properties and protein interactions. In absence of Syt-1, Doc2a and -b, neurons still exhibit spontaneous vesicle fusion which remains Ca2+-se...
Communication between neurons involves presynaptic neurotransmitter release which can be evoked by a...
Following nerve stimulation, there are two distinct phases of Ca2+-dependent neurotransmitter releas...
The majority of cell-to-cell communication relies on the stimulated release of neurotransmitter. Two...
Presynaptic neurotransmitter release is strictly regulated by SNARE proteins, Ca2+ and a number of C...
Copyright © 2020 the authors. Regulated secretion is controlled by Ca2+ sensors with different affin...
Regulated secretion is controlled by Ca 2+ sensors with different affinities and subcellular distrib...
Synaptic vesicle fusion in brain synapses occurs in phases that are either tightly coupled to action...
Synaptic vesicle fusion in brain synapses occurs in phases that are either tightly coupled to action...
Synaptic vesicle fusion in brain synapses occurs in phases that are either tightly coupled to action...
SummaryTwo families of Ca2+-binding proteins have been proposed as Ca2+ sensors for spontaneous rele...
SummaryCa2+-evoked transmitter release shows a high dynamic range over spontaneous release. We inves...
Synaptic transmission involves a fast synchronous phase and a slower asynchronous phase of neurotran...
SummarySynaptic transmission involves a fast synchronous phase and a slower asynchronous phase of ne...
Spontaneous ‘mini ’ release occurs at all synapses, but its nature remains enigmatic. Here, we show ...
SummaryCa2+-evoked transmitter release shows a high dynamic range over spontaneous release. We inves...
Communication between neurons involves presynaptic neurotransmitter release which can be evoked by a...
Following nerve stimulation, there are two distinct phases of Ca2+-dependent neurotransmitter releas...
The majority of cell-to-cell communication relies on the stimulated release of neurotransmitter. Two...
Presynaptic neurotransmitter release is strictly regulated by SNARE proteins, Ca2+ and a number of C...
Copyright © 2020 the authors. Regulated secretion is controlled by Ca2+ sensors with different affin...
Regulated secretion is controlled by Ca 2+ sensors with different affinities and subcellular distrib...
Synaptic vesicle fusion in brain synapses occurs in phases that are either tightly coupled to action...
Synaptic vesicle fusion in brain synapses occurs in phases that are either tightly coupled to action...
Synaptic vesicle fusion in brain synapses occurs in phases that are either tightly coupled to action...
SummaryTwo families of Ca2+-binding proteins have been proposed as Ca2+ sensors for spontaneous rele...
SummaryCa2+-evoked transmitter release shows a high dynamic range over spontaneous release. We inves...
Synaptic transmission involves a fast synchronous phase and a slower asynchronous phase of neurotran...
SummarySynaptic transmission involves a fast synchronous phase and a slower asynchronous phase of ne...
Spontaneous ‘mini ’ release occurs at all synapses, but its nature remains enigmatic. Here, we show ...
SummaryCa2+-evoked transmitter release shows a high dynamic range over spontaneous release. We inves...
Communication between neurons involves presynaptic neurotransmitter release which can be evoked by a...
Following nerve stimulation, there are two distinct phases of Ca2+-dependent neurotransmitter releas...
The majority of cell-to-cell communication relies on the stimulated release of neurotransmitter. Two...