Interaction of SM (Sec1/Munc18) proteins with their cognate syntaxins represents an important regulatory mechanism of SNARE (soluble N-ethylmaleimide-sensitive fusion protein-attachment protein receptor)-mediated membrane fusion. Understanding the conserved mechanisms by which SM proteins function in this process has proved challenging, largely due to an apparent lack of conservation of binding mechanisms between different SM-syntaxin pairs. In the present study, we have identified a hitherto uncharacterized mode of binding between syntaxin 4 and Munc18c that is independent of the binding mode shown previously to utilize the N-terminal peptide of syntaxin 4. Our data demonstrate that syntaxin 4 and Munc18c interact via two distinct modes of...
The efficient delivery of cellular cargo relies on the fusion of cargo-carrying vesicles with the co...
Sec1/Munc18 (SM) family proteins are essential for every vesicle fusion pathway. The best-characteri...
Sec1/ Munc18 (SM) proteins are indispensible regulators of intracellular membrane fusion. In gener...
The membrane fusion necessary for vesicle trafficking is driven by the assembly of heterologous SNAR...
The membrane fusion necessary for vesicle trafficking is driven by the assembly of heterologous SNAR...
The membrane fusion necessary for vesicle trafficking is driven by the assembly of heterologous SNAR...
The membrane fusion necessary for vesicle trafficking is driven by the assembly of heterologous SNAR...
Sec1/Munc-18 (SM) proteins are essential for intracellular membrane fusion reactions. Most of them b...
Sec1/Munc-18 (SM) proteins are essential for intracellular membrane fusion reactions. Most of them b...
The success and efficiency of fusion of transport vesicles to target membranes depend upon sets of p...
Sec1/Munc-18 (SM) proteins are essential for intracellular membrane fusion reactions. Most of them b...
Intracellular membrane fusion steps in eukaryotes require the syntaxin family of SNARE (soluble <i>N...
Intracellular membrane fusion steps in eukaryotes require the syntaxin family of SNARE (soluble N-et...
The efficient delivery of cellular cargo relies on the fusion of cargo-carrying vesicles with the co...
The efficient delivery of cellular cargo relies on the fusion of cargo-carrying vesicles with the co...
The efficient delivery of cellular cargo relies on the fusion of cargo-carrying vesicles with the co...
Sec1/Munc18 (SM) family proteins are essential for every vesicle fusion pathway. The best-characteri...
Sec1/ Munc18 (SM) proteins are indispensible regulators of intracellular membrane fusion. In gener...
The membrane fusion necessary for vesicle trafficking is driven by the assembly of heterologous SNAR...
The membrane fusion necessary for vesicle trafficking is driven by the assembly of heterologous SNAR...
The membrane fusion necessary for vesicle trafficking is driven by the assembly of heterologous SNAR...
The membrane fusion necessary for vesicle trafficking is driven by the assembly of heterologous SNAR...
Sec1/Munc-18 (SM) proteins are essential for intracellular membrane fusion reactions. Most of them b...
Sec1/Munc-18 (SM) proteins are essential for intracellular membrane fusion reactions. Most of them b...
The success and efficiency of fusion of transport vesicles to target membranes depend upon sets of p...
Sec1/Munc-18 (SM) proteins are essential for intracellular membrane fusion reactions. Most of them b...
Intracellular membrane fusion steps in eukaryotes require the syntaxin family of SNARE (soluble <i>N...
Intracellular membrane fusion steps in eukaryotes require the syntaxin family of SNARE (soluble N-et...
The efficient delivery of cellular cargo relies on the fusion of cargo-carrying vesicles with the co...
The efficient delivery of cellular cargo relies on the fusion of cargo-carrying vesicles with the co...
The efficient delivery of cellular cargo relies on the fusion of cargo-carrying vesicles with the co...
Sec1/Munc18 (SM) family proteins are essential for every vesicle fusion pathway. The best-characteri...
Sec1/ Munc18 (SM) proteins are indispensible regulators of intracellular membrane fusion. In gener...