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PMID: 16498411 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Sequential N- to C-terminal SNARE complex assembly drives priming and fusion of secretory vesicles.

The EMBO journal ·Vol. 25 ·No. 5 ·2006-03-08 ·Pages 955-66

Sørensen JB, Wiederhold K, Müller EM, Milosevic I, Nagy G, de Groot BL, Grubmüller H, Fasshauer D

Abstract

During exocytosis a four-helical coiled coil is formed between the three SNARE proteins syntaxin, synaptobrevin and SNAP-25, bridging vesicle and plasma membrane. We have investigated the assembly pathway of this complex by interfering with the stability of the hydrophobic interaction layers holding the complex together. Mutations in the C-terminal end affected fusion triggering in vivo and led to two-step unfolding of the SNARE complex in vitro, indicating that the C-terminal end can assemble/disassemble independently. Free energy perturbation calculations showed that assembly of the C-terminal end could liberate substantial amounts of energy that may drive fusion. In contrast, similar N-terminal mutations were without effects on exocytosis, and mutations in the middle of the complex selectively interfered with upstream maturation steps (vesicle priming), but not with fusion triggering. We conclude that the SNARE complex forms in the N- to C-terminal direction, and that a partly assembled intermediate corresponds to the primed vesicle state.

MeSH Terms
Amino Acid Sequence Amino Acid Substitution Animals Binding Sites Cell Membrane/metabolism Chromaffin Cells/cytology,metabolism Circular Dichroism Electrophysiology Exocytosis Membrane Fusion Mice Mice, Knockout Molecular Sequence Data Mutation Qa-SNARE Proteins/metabolism R-SNARE Proteins/metabolism Secretory Vesicles/chemistry,metabolism Sequence Homology, Amino Acid Synaptosomal-Associated Protein 25/metabolism
Chemicals
Qa-SNARE Proteins R-SNARE Proteins Synaptosomal-Associated Protein 25
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Sørensen Jakob B
Department of Membrane Biophysics, Max-Planck-Institute for Biophysical Chemistry, Göttingen, Germany. jsoeren@gwdg.de
Wiederhold Katrin
Müller Emil M
Milosevic Ira
Nagy Gábor
de Groot Bert L
Grubmüller Helmut
Fasshauer Dirk
References (35)
35 references, click to expand
  1. v-SNAREs control exocytosis of vesicles from priming to fusion.
    EMBO J. 2005 Jun 15;24(12):2114-26 PMID: 15920476
  2. Tracking SNARE complex formation in live endocrine cells.
    Science. 2004 Nov 5;306(5698):1042-6 PMID: 15528447
  3. Alternative splicing of SNAP-25 regulates secretion through nonconservative substitutions in the SNARE domain.
    Mol Biol Cell. 2005 Dec;16(12):5675-85 PMID: 16195346
  4. Activity-dependent changes in partial VAMP complexes during neurotransmitter release.
    Nat Neurosci. 1999 Dec;2(12):1078-83 PMID: 10570484
  5. Inhibition of SNARE complex assembly differentially affects kinetic components of exocytosis.
    Cell. 1999 Dec 23;99(7):713-22 PMID: 10619425
  6. The C terminus of SNAP25 is essential for Ca(2+)-dependent binding of synaptotagmin to SNARE complexes.
    J Biol Chem. 2000 Mar 3;275(9):6328-36 PMID: 10692432
  7. Exocytotic mechanism studied by truncated and zero layer mutants of the C-terminus of SNAP-25.
    EMBO J. 2000 Mar 15;19(6):1279-89 PMID: 10716928
  8. Dissection of three Ca2+-dependent steps leading to secretion in chromaffin cells from mouse adrenal slices.
    Neuron. 2000 Nov;28(2):537-45 PMID: 11144362
  9. SNAREs are concentrated in cholesterol-dependent clusters that define docking and fusion sites for exocytosis.
    EMBO J. 2001 May 1;20(9):2202-13 PMID: 11331586
  10. Sequential SNARE assembly underlies priming and triggering of exocytosis.
    Neuron. 2001 Apr;30(1):161-70 PMID: 11343652
  11. Targeted mutations in the syntaxin H3 domain specifically disrupt SNARE complex function in synaptic transmission.
    J Neurosci. 2001 Dec 1;21(23):9142-50 PMID: 11717347
  12. Two distinct effects on neurotransmission in a temperature-sensitive SNAP-25 mutant.
    EMBO J. 2001 Dec 3;20(23):6761-71 PMID: 11726512
  13. SNARE assembly and disassembly exhibit a pronounced hysteresis.
    Nat Struct Biol. 2002 Feb;9(2):144-51 PMID: 11786917
  14. Vesicular restriction of synaptobrevin suggests a role for calcium in membrane fusion.
    Nature. 2002 Feb 7;415(6872):646-50 PMID: 11832947
  15. Regulation of membrane fusion by the membrane-proximal coil of the t-SNARE during zippering of SNAREpins.
    J Cell Biol. 2002 Sep 2;158(5):929-40 PMID: 12213837
  16. Regulation of neuronal SNARE assembly by the membrane.
    Nat Struct Biol. 2003 Jun;10(6):440-7 PMID: 12740606
  17. Differential control of the releasable vesicle pools by SNAP-25 splice variants and SNAP-23.
    Cell. 2003 Jul 11;114(1):75-86 PMID: 12859899
  18. Synaptotagmin I, a Ca2+ sensor for neurotransmitter release.
    Trends Neurosci. 2003 Aug;26(8):413-22 PMID: 12900172
  19. Tuning exocytosis for speed: fast and slow modes.
    Biochim Biophys Acta. 2003 Aug 18;1641(2-3):157-65 PMID: 12914956
  20. Evidence for SNARE zippering during Ca2+-triggered exocytosis in PC12 cells.
    Neuropharmacology. 2003 Nov;45(6):777-86 PMID: 14529716
  21. A transient N-terminal interaction of SNAP-25 and syntaxin nucleates SNARE assembly.
    J Biol Chem. 2004 Feb 27;279(9):7613-21 PMID: 14665625
  22. Transmembrane segments of syntaxin line the fusion pore of Ca2+-triggered exocytosis.
    Science. 2004 Apr 9;304(5668):289-92 PMID: 15016962
  23. Formation, stabilisation and fusion of the readily releasable pool of secretory vesicles.
    Pflugers Arch. 2004 Jul;448(4):347-62 PMID: 14997396
  24. Neurotransmitter release - four years of SNARE complexes.
    Curr Opin Neurobiol. 1997 Jun;7(3):310-5 PMID: 9232812
  25. Ca2+ or Sr2+ partially rescues synaptic transmission in hippocampal cultures treated with botulinum toxin A and C, but not tetanus toxin.
    J Neurosci. 1997 Oct 1;17(19):7190-202 PMID: 9295365
  26. Synaptic transmission deficits in Caenorhabditis elegans synaptobrevin mutants.
    J Neurosci. 1998 Jan 1;18(1):70-80 PMID: 9412487
  27. SNAREpins: minimal machinery for membrane fusion.
    Cell. 1998 Mar 20;92(6):759-72 PMID: 9529252
  28. The Caenorhabditis elegans unc-64 locus encodes a syntaxin that interacts genetically with synaptobrevin.
    Mol Biol Cell. 1998 Jun;9(6):1235-52 PMID: 9614171
  29. Modulation of an early step in the secretory machinery in hippocampal nerve terminals.
    Proc Natl Acad Sci U S A. 1998 Jun 9;95(12):7163-8 PMID: 9618556
  30. Crystal structure of a SNARE complex involved in synaptic exocytosis at 2.4 A resolution.
    Nature. 1998 Sep 24;395(6700):347-53 PMID: 9759724
  31. Folding intermediates of SNARE complex assembly.
    Nat Struct Biol. 1999 Feb;6(2):117-23 PMID: 10048921
  32. Multiple kinetic components of exocytosis distinguished by neurotoxin sensitivity.
    Nat Neurosci. 1998 Jul;1(3):192-200 PMID: 10195143
  33. SNARE complex formation is triggered by Ca2+ and drives membrane fusion.
    Cell. 1999 Apr 16;97(2):165-74 PMID: 10219238
  34. Syntaxin 1A interacts with multiple exocytic proteins to regulate neurotransmitter release in vivo.
    Neuron. 1999 Jul;23(3):593-605 PMID: 10433270
  35. Distinct kinetic changes in neurotransmitter release after SNARE protein cleavage.
    Science. 2005 Jul 15;309(5733):491-4 PMID: 16020741
Article Info
Journal
The EMBO journal
Abbr.
EMBO J
ISSN
0261-4189
Published
2006-03-08
Epub
2006-00-23
Pages
955-66
Language
English
Region
England
NLM ID
8208664
PMCID
PMC1409717
Subset
IM
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