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Regulated secretion: SNARE density, vesicle fusion and calcium dependence
Author(s) -
Jens R. Coorssen,
Paul S. Blank,
Fernando Albertorio,
Ludmila Bezrukov,
Irina Kolosova,
Xiongfong Chen,
Peter S. Backlund,
Joshua Zimmerberg
Publication year - 2003
Publication title -
journal of cell science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.384
H-Index - 278
eISSN - 1477-9137
pISSN - 0021-9533
DOI - 10.1242/jcs.00374
Subject(s) - biology , microbiology and biotechnology , lipid bilayer fusion , vesicle , vesicle fusion , syntaxin , snap25 , fusion , fusion protein , synaptotagmin 1 , snare complex , exocytosis , synaptobrevin , secretion , biophysics , biochemistry , synaptic vesicle , membrane , recombinant dna , linguistics , philosophy , gene
SNAREs such as VAMP, SNAP-25 and syntaxin are essential for intracellular trafficking, but what are their exact molecular roles and how are their interactions with other proteins manifest? Capitalizing on the differential sensitivity of SNAREs to exogenous proteases, we quantified the selective removal of identified SNAREs from native secretory vesicles without loss of fusion competence. Using previously established fusion assays and a high sensitivity immunoblotting protocol, we analyzed the relationship between these SNARE proteins and Ca2+-triggered membrane fusion. Neither the extent of fusion nor the number of intermembrane fusion complexes per vesicle were correlated with the measured density of identified egg cortical vesicle (CV) SNAREs. Without syntaxin, CVs remained fusion competent. Surprisingly, for one (but not another) protease the Ca2+ dependence of fusion was correlated with CV SNARE density, suggesting a native protein complex that associates with SNAREs, the architecture of which ensures high Ca2+ sensitivity. As SNAREs may function during CV docking in vivo, and as further proteolysis after SNARE removal eventually ablates fusion, we hypothesize that the triggered steps of regulated fusion (Ca2+ sensitivity and the catalysis and execution of fusion) require additional proteins that function downstream of SNAREs.

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