SummarySynaptic transmission involves a fast synchronous phase and a slower asynchronous phase of neurotransmitter release that are regulated by distinct Ca2+ sensors. Though the Ca2+ sensor for rapid exocytosis, synaptotagmin I, has been studied in depth, the sensor for asynchronous release remains unknown. In a screen for neuronal Ca2+ sensors that respond to changes in [Ca2+] with markedly slower kinetics than synaptotagmin I, we observed that Doc2—another Ca2+, SNARE, and lipid-binding protein—operates on timescales consistent with asynchronous release. Moreover, up- and downregulation of Doc2 expression levels in hippocampal neurons increased or decreased, respectively, the slow phase of synaptic transmission. Synchronous release, when...
We tested the long-standing hypothesis that synaptotagmin 1 is the Ca2 +_ sensor for fast neurosecre...
Following nerve stimulation, there are two distinct phases of Ca2+-dependent neurotransmitter releas...
SummarySynaptotagmin-1 and -2 are known Ca2+ sensors for fast synchronous neurotransmitter release, ...
Synaptic transmission involves a fast synchronous phase and a slower asynchronous phase of neurotran...
Synaptic vesicle fusion in brain synapses occurs in phases that are either tightly coupled to action...
Ca2+-triggered neurotransmitter release is characterized by two kinetically distinct components: a f...
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...
Copyright © 2020 the authors. Regulated secretion is controlled by Ca2+ sensors with different affin...
SummaryTwo families of Ca2+-binding proteins have been proposed as Ca2+ sensors for spontaneous rele...
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...
Presynaptic neurotransmitter release is strictly regulated by SNARE proteins, Ca2+ and a number of C...
Elevation of the intracellular calcium concentration ([Ca2+]i) to levels below 1 μm alters synaptic ...
Presynaptic neurotransmitter release is strictly regulated by SNARE proteins, Ca2+ and a number of C...
We tested the long-standing hypothesis that synaptotagmin 1 is the Ca2 +_ sensor for fast neurosecre...
Following nerve stimulation, there are two distinct phases of Ca2+-dependent neurotransmitter releas...
SummarySynaptotagmin-1 and -2 are known Ca2+ sensors for fast synchronous neurotransmitter release, ...
Synaptic transmission involves a fast synchronous phase and a slower asynchronous phase of neurotran...
Synaptic vesicle fusion in brain synapses occurs in phases that are either tightly coupled to action...
Ca2+-triggered neurotransmitter release is characterized by two kinetically distinct components: a f...
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...
Copyright © 2020 the authors. Regulated secretion is controlled by Ca2+ sensors with different affin...
SummaryTwo families of Ca2+-binding proteins have been proposed as Ca2+ sensors for spontaneous rele...
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...
Presynaptic neurotransmitter release is strictly regulated by SNARE proteins, Ca2+ and a number of C...
Elevation of the intracellular calcium concentration ([Ca2+]i) to levels below 1 μm alters synaptic ...
Presynaptic neurotransmitter release is strictly regulated by SNARE proteins, Ca2+ and a number of C...
We tested the long-standing hypothesis that synaptotagmin 1 is the Ca2 +_ sensor for fast neurosecre...
Following nerve stimulation, there are two distinct phases of Ca2+-dependent neurotransmitter releas...
SummarySynaptotagmin-1 and -2 are known Ca2+ sensors for fast synchronous neurotransmitter release, ...