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Syntaxin opening by the MUN domain underlies the function of Munc13 in synaptic-vesicle priming.


ABSTRACT: UNC-13-Munc13s have a central function in synaptic-vesicle priming through their MUN domains. However, it is unclear whether this function arises from the ability of the MUN domain to mediate the transition from the Munc18-1-closed syntaxin-1 complex to the SNARE complex in vitro. The crystal structure of the rat Munc13-1 MUN domain now reveals an elongated, arch-shaped architecture formed by ?-helical bundles, with a highly conserved hydrophobic pocket in the middle. Mutation of two residues (NF) in this pocket abolishes the stimulation caused by the Munc13-1 MUN domain on SNARE-complex assembly and on SNARE-dependent proteoliposome fusion in vitro. Moreover, the same mutation in UNC-13 abrogates synaptic-vesicle priming in Caenorhabditis elegans neuromuscular junctions. These results support the notion that orchestration of syntaxin-1 opening and SNARE-complex assembly underlies the central role of UNC-13-Munc13s in synaptic-vesicle priming.

SUBMITTER: Yang X 

PROVIDER: S-EPMC4809529 | biostudies-literature | 2015 Jul

REPOSITORIES: biostudies-literature

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Syntaxin opening by the MUN domain underlies the function of Munc13 in synaptic-vesicle priming.

Yang Xiaoyu X   Wang Shen S   Sheng Yi Y   Zhang Mingshu M   Zou Wenjuan W   Wu Lijie L   Kang Lijun L   Rizo Josep J   Zhang Rongguang R   Xu Tao T   Ma Cong C  

Nature structural & molecular biology 20150601 7


UNC-13-Munc13s have a central function in synaptic-vesicle priming through their MUN domains. However, it is unclear whether this function arises from the ability of the MUN domain to mediate the transition from the Munc18-1-closed syntaxin-1 complex to the SNARE complex in vitro. The crystal structure of the rat Munc13-1 MUN domain now reveals an elongated, arch-shaped architecture formed by α-helical bundles, with a highly conserved hydrophobic pocket in the middle. Mutation of two residues (N  ...[more]

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