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Abrogating Munc18-1-SNARE complex interaction has limited impact on exocytosis in PC12 cells.


ABSTRACT: Neuronal communication relies on the fusion of neurotransmitter-containing vesicles with the plasma membrane. The soluble N-ethylmaleimide-sensitive fusion protein attachment protein receptor (SNARE) proteins initiate membrane fusion through the formation of the SNARE complex, a process tightly regulated by Sec1/Munc18-1 (SM) proteins. The emerging trend is that SM proteins promote SNARE-mediated membrane fusion by binding to a Syntaxin N-terminal motif. Here we report that mutations in the hydrophobic pocket of Munc18-1 (F115E and E132A), predicted to disrupt the N-terminal Sx1a interaction have a modest effect on binding to Sx1a in its free state, but abolish binding to the SNARE complex. Overexpression of the Munc18-1 mutant in PC12 cells lacking Munc18-1 rescues both neuroexocytosis and the plasma membrane localization of Syntaxin. However, total internal reflection fluorescence microscopy analysis reveals that expression of a Munc18-1 double mutant reduces the rate of vesicle fusion, an effect only detectable at the onset of stimulation. The Munc18-1 hydrophobic pocket is therefore critical for SNARE complex binding. However, mutations abrogating this interaction have a limited impact on Ca(2+)-dependent exocytosis in PC12 cells.

SUBMITTER: Malintan NT 

PROVIDER: S-EPMC2755887 | biostudies-literature | 2009 Aug

REPOSITORIES: biostudies-literature

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Abrogating Munc18-1-SNARE complex interaction has limited impact on exocytosis in PC12 cells.

Malintan Nancy T NT   Nguyen Tam H TH   Han Liping L   Latham Catherine F CF   Osborne Shona L SL   Wen Peter J PJ   Lim Siew Joo Tiffany SJ   Sugita Shuzo S   Collins Brett M BM   Meunier Frederic A FA  

The Journal of biological chemistry 20090529 32


Neuronal communication relies on the fusion of neurotransmitter-containing vesicles with the plasma membrane. The soluble N-ethylmaleimide-sensitive fusion protein attachment protein receptor (SNARE) proteins initiate membrane fusion through the formation of the SNARE complex, a process tightly regulated by Sec1/Munc18-1 (SM) proteins. The emerging trend is that SM proteins promote SNARE-mediated membrane fusion by binding to a Syntaxin N-terminal motif. Here we report that mutations in the hydr  ...[more]

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