Synaptic transmission depends critically on the Sec1p/Munc18 protein Munc18-1, but it is unclear whether Munc18-1 primarily operates as a integral part of the fusion machinery or has a more upstream role in fusion complex assembly. Here, we show that point mutations in Munc18-1 that interfere with binding to the free Syntaxin1a N-terminus and strongly impair binding to assembled SNARE complexes all support normal docking, priming and fusion of synaptic vesicles, and normal synaptic plasticity in munc18-1 null mutant neurons. These data support a prevailing role of Munc18-1 before/during SNARE-complex assembly, while its continued association to assembled SNARE complexes is dispensable for synaptic transmission. © 2012 European Molecular Bio...
Sec1/Munc18 (SM) family proteins are essential for every vesicle fusion pathway. The best-characteri...
The membrane fusion necessary for vesicle trafficking is driven by the assembly of heterologous SNAR...
Munc18-1, a protein of the Sec1/Munc18-1 (SM) protein family, is interacting with high affinity with...
Synaptic transmission depends critically on the Sec1p/Munc18 protein Munc18-1, but it is unclear whe...
Synaptic transmission depends critically on the Sec1p/Munc18 protein Munc18-1, but it is unclear whe...
Synaptic transmission depends critically on the Sec1p/Munc18 protein Munc18-1, but it is unclear whe...
Exocytosis of secretory or synaptic vesicles is executed by a mechanism including the SNARE (soluble...
Exocytosis of secretory or synaptic vesicles is executed by amechanism including the SNARE (solubleN...
The fusion of neurotransmitter-filled synaptic vesicles with the plasma membrane requires two classe...
In neurons, soluble N-ethylmaleimide-sensitive factor attachment receptor (SNARE) proteins drive the...
Munc18-1 and Syntaxin1 are essential proteins for SNARE-mediated neurotransmission. Munc18-1 partici...
Munc 18-1 and syntaxin-1A control SNARE-dependent neuroexocytosis and are organized in nanodomains o...
The membrane fusion necessary for vesicle trafficking is driven by the assembly of heterologous SNAR...
Tyrosine kinases are important regulators of synaptic strength. Here, we describe a key component of...
Neuronal communication relies on the fusion of neurotransmitter-containing vesicles with the plasma ...
Sec1/Munc18 (SM) family proteins are essential for every vesicle fusion pathway. The best-characteri...
The membrane fusion necessary for vesicle trafficking is driven by the assembly of heterologous SNAR...
Munc18-1, a protein of the Sec1/Munc18-1 (SM) protein family, is interacting with high affinity with...
Synaptic transmission depends critically on the Sec1p/Munc18 protein Munc18-1, but it is unclear whe...
Synaptic transmission depends critically on the Sec1p/Munc18 protein Munc18-1, but it is unclear whe...
Synaptic transmission depends critically on the Sec1p/Munc18 protein Munc18-1, but it is unclear whe...
Exocytosis of secretory or synaptic vesicles is executed by a mechanism including the SNARE (soluble...
Exocytosis of secretory or synaptic vesicles is executed by amechanism including the SNARE (solubleN...
The fusion of neurotransmitter-filled synaptic vesicles with the plasma membrane requires two classe...
In neurons, soluble N-ethylmaleimide-sensitive factor attachment receptor (SNARE) proteins drive the...
Munc18-1 and Syntaxin1 are essential proteins for SNARE-mediated neurotransmission. Munc18-1 partici...
Munc 18-1 and syntaxin-1A control SNARE-dependent neuroexocytosis and are organized in nanodomains o...
The membrane fusion necessary for vesicle trafficking is driven by the assembly of heterologous SNAR...
Tyrosine kinases are important regulators of synaptic strength. Here, we describe a key component of...
Neuronal communication relies on the fusion of neurotransmitter-containing vesicles with the plasma ...
Sec1/Munc18 (SM) family proteins are essential for every vesicle fusion pathway. The best-characteri...
The membrane fusion necessary for vesicle trafficking is driven by the assembly of heterologous SNAR...
Munc18-1, a protein of the Sec1/Munc18-1 (SM) protein family, is interacting with high affinity with...