Membrane fusion is a universal feature of eukaryotic protein trafficking and is mediated by the soluble N-ethylmaleimide sensitive factor attachment protein receptor (SNARE) family. SNARE proteins embedded in opposing membranes spontaneously assemble to drive membrane fusion and cargo exchange in vitro. Evolution has generated a diverse complement of SNARE regulatory proteins (SRPs) that ensure membrane fusion occurs at the right time and place in vivo. While a core set of SNAREs and SRPs are common to all eukaryotic cells, a specialized set of SRPs within neurons confer additional regulation to synaptic vesicle (SV) fusion. Neuronal communication is characterized by precise spatial and temporal control of SNARE dynamics within presynaptic ...
Both constitutive secretion and Ca(2+)-regulated exocytosis require the assembly of the soluble N-et...
Neurotransmitter release in synapses underlies major brain functions such as cognition, emotion, and...
Neuronal communication is mediated by Ca2+-triggered fusion of transmitter-filled synaptic vesicles ...
Membrane fusion is a universal feature of eukaryotic protein trafficking and is mediated by the solu...
Abstract Neurotransmitters are stored in small membrane-bound vesicles at synapses. Neurotransmitter...
Membrane fusion is a key process in all living organisms that contributes to a variety of biological...
Neurotransmitter release proceeds by Ca2+-triggered, SNARE-complex-dependent synaptic vesicle fusion...
SummarySynaptic vesicle fusion during neurotransmitter release is mediated by assembly of SNARE- and...
SummaryNeurotransmitter release proceeds by Ca2+-triggered, SNARE-complex-dependent synaptic vesicle...
The two universally required components of the intracellular membrane fusion machinery, SNARE and SM...
This article is part of a Special Issue entitled: SNARE proteins: a long journey of science in brain...
International audienceNeurotransmission is achieved by soluble NSF attachment protein receptor (SNAR...
Abstract Synaptic vesicles fuse with the plasma membrane in response to Ca2+ influx, thereby releasi...
SNAREs (soluble N-ethylmaleimide-sensitive factor attachment receptors) represent an evolutionarily ...
ann I 2; acc attach NAR s that are c18/Sec1; Phosphorylation; SNARE; Synaptophysin; Synaptotagmin; T...
Both constitutive secretion and Ca(2+)-regulated exocytosis require the assembly of the soluble N-et...
Neurotransmitter release in synapses underlies major brain functions such as cognition, emotion, and...
Neuronal communication is mediated by Ca2+-triggered fusion of transmitter-filled synaptic vesicles ...
Membrane fusion is a universal feature of eukaryotic protein trafficking and is mediated by the solu...
Abstract Neurotransmitters are stored in small membrane-bound vesicles at synapses. Neurotransmitter...
Membrane fusion is a key process in all living organisms that contributes to a variety of biological...
Neurotransmitter release proceeds by Ca2+-triggered, SNARE-complex-dependent synaptic vesicle fusion...
SummarySynaptic vesicle fusion during neurotransmitter release is mediated by assembly of SNARE- and...
SummaryNeurotransmitter release proceeds by Ca2+-triggered, SNARE-complex-dependent synaptic vesicle...
The two universally required components of the intracellular membrane fusion machinery, SNARE and SM...
This article is part of a Special Issue entitled: SNARE proteins: a long journey of science in brain...
International audienceNeurotransmission is achieved by soluble NSF attachment protein receptor (SNAR...
Abstract Synaptic vesicles fuse with the plasma membrane in response to Ca2+ influx, thereby releasi...
SNAREs (soluble N-ethylmaleimide-sensitive factor attachment receptors) represent an evolutionarily ...
ann I 2; acc attach NAR s that are c18/Sec1; Phosphorylation; SNARE; Synaptophysin; Synaptotagmin; T...
Both constitutive secretion and Ca(2+)-regulated exocytosis require the assembly of the soluble N-et...
Neurotransmitter release in synapses underlies major brain functions such as cognition, emotion, and...
Neuronal communication is mediated by Ca2+-triggered fusion of transmitter-filled synaptic vesicles ...