| Literature DB >> 25716321 |
Xiaochu Lou1, Jaeil Shin1, Yoosoo Yang2, Jaewook Kim2, Yeon-Kyun Shin3.
Abstract
In neuroexocytosis, SNAREs and Munc18-1 may consist of the minimal membrane fusion machinery. Consistent with this notion, we observed, using single molecule fluorescence assays, that Munc18-1 stimulates SNARE zippering and SNARE-dependent lipid mixing in the absence of a major Ca(2+) sensor synaptotagmin-1 (Syt1), providing the structural basis for the conserved function of Sec1/Munc18 proteins in exocytosis. However, when full-length Syt1 is present, no enhancement of SNARE zippering and no acceleration of Ca(2+)-triggered content mixing by Munc18-1 are observed. Thus, our results show that Syt1 acts as an antagonist for Munc18-1 in SNARE zippering and fusion pore opening. Although the Sec1/Munc18 family may serve as part of the fusion machinery in other exocytotic pathways, Munc18-1 may have evolved to play a different role, such as regulating syntaxin-1a in neuroexocytosis.Entities:
Keywords: Exocytosis; Fusion Protein; Membrane Fusion; Neurotransmitter Release; Single Molecule Biophysics; Soluble NSF Attachment Protein Receptor (SNARE)
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Year: 2015 PMID: 25716321 PMCID: PMC4400360 DOI: 10.1074/jbc.M114.631341
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157