AbstractIn synaptic transmission, vesicles are proposed to dock at presynaptic active zones by the association of synaptobrevin (v-SNARE) with syntaxin (t-SNARE). We test this hypothesis in Drosophila strains lacking neural synaptobrevin (n-synaptobrevin) or syntaxin. We showed previously that loss of either protein completely blocks synaptic transmission. Here, we attempt to establish the level of this blockade. Ultrastructurally, vesicles are still targeted to the presynaptic membrane and dock normally at specialized release sites. These vesicles are mature and functional since spontaneous vesicle fusion persists in the absence of n-synaptobrevin and since vesicle fusion is triggered by hyperosmotic saline in the absence of syntaxin. We c...
Secretory vesicles dock at the plasma membrane before they undergo fusion. Molecular docking mechani...
AbstractSNARE complexes form between the synaptic vesicle protein synaptobrevin and the plasma membr...
SummarySynaptic vesicle docking, priming, and fusion at active zones are orchestrated by a complex m...
AbstractIn synaptic transmission, vesicles are proposed to dock at presynaptic active zones by the a...
Both constitutive secretion and Ca2+-regulated exocytosis require the assembly of the soluble N-ethy...
AbstractCloning and characterization of the Drosophila syntaxin-1A gene, syx-1A, reveal that it is p...
AbstractBiochemical studies suggest that syntaxin 1A participates in multiple protein–protein intera...
AbstractThe neuronal SNARE complex is formed via the interaction of synaptobrevin with syntaxin and ...
Journal ArticleSynaptic vesicles dock to the plasma membrane at synapses to facilitate rapid exocyto...
Both constitutive secretion and Ca(2+)-regulated exocytosis require the assembly of the soluble N-et...
Synaptic vesicles dock to the plasma membrane at synapses to facilitate rapid exocytosis. Docking wa...
SummaryPriming of synaptic vesicles (SVs) is essential for synaptic transmission. UNC-13 proteins ar...
Secretory vesicles dock at the plasma membrane before they undergo fusion. Molecular docking mechani...
Syntaxin 1 and synaptosome-associated protein of 25 kD (SNAP-25) are neuronal plasmalemma proteins t...
Synaptic vesicles undergo sequential steps in preparation for neurotransmitter release. Individual S...
Secretory vesicles dock at the plasma membrane before they undergo fusion. Molecular docking mechani...
AbstractSNARE complexes form between the synaptic vesicle protein synaptobrevin and the plasma membr...
SummarySynaptic vesicle docking, priming, and fusion at active zones are orchestrated by a complex m...
AbstractIn synaptic transmission, vesicles are proposed to dock at presynaptic active zones by the a...
Both constitutive secretion and Ca2+-regulated exocytosis require the assembly of the soluble N-ethy...
AbstractCloning and characterization of the Drosophila syntaxin-1A gene, syx-1A, reveal that it is p...
AbstractBiochemical studies suggest that syntaxin 1A participates in multiple protein–protein intera...
AbstractThe neuronal SNARE complex is formed via the interaction of synaptobrevin with syntaxin and ...
Journal ArticleSynaptic vesicles dock to the plasma membrane at synapses to facilitate rapid exocyto...
Both constitutive secretion and Ca(2+)-regulated exocytosis require the assembly of the soluble N-et...
Synaptic vesicles dock to the plasma membrane at synapses to facilitate rapid exocytosis. Docking wa...
SummaryPriming of synaptic vesicles (SVs) is essential for synaptic transmission. UNC-13 proteins ar...
Secretory vesicles dock at the plasma membrane before they undergo fusion. Molecular docking mechani...
Syntaxin 1 and synaptosome-associated protein of 25 kD (SNAP-25) are neuronal plasmalemma proteins t...
Synaptic vesicles undergo sequential steps in preparation for neurotransmitter release. Individual S...
Secretory vesicles dock at the plasma membrane before they undergo fusion. Molecular docking mechani...
AbstractSNARE complexes form between the synaptic vesicle protein synaptobrevin and the plasma membr...
SummarySynaptic vesicle docking, priming, and fusion at active zones are orchestrated by a complex m...