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Munc18-1 mutations that strongly impair SNARE-complex binding support normal synaptic transmission.


ABSTRACT: 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.

SUBMITTER: Meijer M 

PROVIDER: S-EPMC3343470 | biostudies-literature | 2012 May

REPOSITORIES: biostudies-literature

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Munc18-1 mutations that strongly impair SNARE-complex binding support normal synaptic transmission.

Meijer Marieke M   Burkhardt Pawel P   de Wit Heidi H   Toonen Ruud F RF   Fasshauer Dirk D   Verhage Matthijs M  

The EMBO journal 20120323 9


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  ...[more]

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