Home LiteratureArticle Details
PMID: 8988241 Published · ppublish English Journal Article Review

Molecular machinery mediating vesicle budding, docking and fusion.

Experientia ·Vol. 52 ·No. 12 ·1996-12-15 ·Pages 1021-5

Söllner TH, Rothman JE

Abstract

A general machinery buds and fuses transport vesicles which connect intracellular compartments with each other and allow communication with the extracellular environment. Cytoplasmic coat proteins deform membranes to bud vesicles and interact directly or indirectly with cargo molecules. Compartment-specific SNAREs (SNAP receptors) on vesicles and target membranes dock vesicles and provide a scaffolding for the general fusion machinery to initiate lipid bilayer fusion.

MeSH Terms
Capsid/metabolism Coated Vesicles/metabolism Eukaryotic Cells/metabolism Lipid Bilayers/metabolism Membrane Fusion/physiology Membrane Proteins/metabolism Models, Biological SNARE Proteins Synaptic Vesicles/metabolism Vesicular Transport Proteins
Chemicals
Lipid Bilayers Membrane Proteins SNARE Proteins Vesicular Transport Proteins
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Söllner T H
Cellular Biochemistry and Biophysics Program, Memorial Sloan-Kettering Cancer Center, New York, New York 10021, USA.
Rothman J E
References (69)
69 references, click to expand
  1. Dissection of a single round of vesicular transport: sequential intermediates for intercisternal movement in the Golgi stack.
    Cell. 1989 Feb 10;56(3):357-68 PMID: 2536591
  2. Yeast Snc proteins complex with Sec9. Functional interactions between putative SNARE proteins.
    J Biol Chem. 1994 Sep 23;269(38):23391-4 PMID: 8089101
  3. ADP-ribosylation factor is a subunit of the coat of Golgi-derived COP-coated vesicles: a novel role for a GTP-binding protein.
    Cell. 1991 Oct 18;67(2):239-53 PMID: 1680566
  4. Phosphoinositides as regulators in membrane traffic.
    Science. 1996 Mar 15;271(5255):1533-9 PMID: 8599109
  5. Synaptotagmin I: a major Ca2+ sensor for transmitter release at a central synapse.
    Cell. 1994 Nov 18;79(4):717-27 PMID: 7954835
  6. Coatomer interaction with di-lysine endoplasmic reticulum retention motifs.
    Science. 1994 Mar 18;263(5153):1629-31 PMID: 8128252
  7. Short cytoplasmic sequences serve as retention signals for transmembrane proteins in the endoplasmic reticulum.
    Cell. 1989 Aug 25;58(4):707-18 PMID: 2527615
  8. Movement of organelles along filaments dissociated from the axoplasm of the squid giant axon.
    Cell. 1985 Feb;40(2):449-54 PMID: 2578324
  9. The absence of Emp24p, a component of ER-derived COPII-coated vesicles, causes a defect in transport of selected proteins to the Golgi.
    EMBO J. 1995 Apr 3;14 (7):1329-39 PMID: 7729411
  10. Targeted expression of tetanus toxin light chain in Drosophila specifically eliminates synaptic transmission and causes behavioral defects.
    Neuron. 1995 Feb;14(2):341-51 PMID: 7857643
  11. Binding of an N-ethylmaleimide-sensitive fusion protein to Golgi membranes requires both a soluble protein(s) and an integral membrane receptor.
    J Cell Biol. 1989 May;108(5):1589-96 PMID: 2541136
  12. SNAP receptors implicated in vesicle targeting and fusion.
    Nature. 1993 Mar 25;362(6418):318-24 PMID: 8455717
  13. Homologs of the synaptobrevin/VAMP family of synaptic vesicle proteins function on the late secretory pathway in S. cerevisiae.
    Cell. 1993 Sep 10;74(5):855-61 PMID: 8374953
  14. Syntaxin: a synaptic protein implicated in docking of synaptic vesicles at presynaptic active zones.
    Science. 1992 Jul 10;257(5067):255-9 PMID: 1321498
  15. The ARF1 GTPase-activating protein: zinc finger motif and Golgi complex localization.
    Science. 1995 Dec 22;270(5244):1999-2002 PMID: 8533093
  16. BET1, BOS1, and SEC22 are members of a group of interacting yeast genes required for transport from the endoplasmic reticulum to the Golgi complex.
    Mol Cell Biol. 1990 Jul;10(7):3405-14 PMID: 2192256
  17. Distinct sets of SEC genes govern transport vesicle formation and fusion early in the secretory pathway.
    Cell. 1990 May 18;61(4):723-33 PMID: 2188733
  18. Identification and structure of four yeast genes (SLY) that are able to suppress the functional loss of YPT1, a member of the RAS superfamily.
    Mol Cell Biol. 1991 Feb;11(2):872-85 PMID: 1990290
  19. A role for synaptotagmin (p65) in regulated exocytosis.
    Cell. 1993 Jan 15;72(1):153-9 PMID: 8422678
  20. The synaptic vesicle protein synaptotagmin associates with calcium channels and is a putative Lambert-Eaton myasthenic syndrome antigen.
    Proc Natl Acad Sci U S A. 1992 Apr 15;89(8):3625-9 PMID: 1314395
  21. Different axoplasmic proteins generate movement in opposite directions along microtubules in vitro.
    Cell. 1985 Dec;43(3 Pt 2):623-32 PMID: 2416467
  22. Synaptic vesicle membrane fusion complex: action of clostridial neurotoxins on assembly.
    EMBO J. 1994 Nov 1;13(21):5051-61 PMID: 7957071
  23. Purification of an N-ethylmaleimide-sensitive protein catalyzing vesicular transport.
    Proc Natl Acad Sci U S A. 1988 Nov;85(21):7852-6 PMID: 3186695
  24. Receptors compete for adaptors found in plasma membrane coated pits.
    EMBO J. 1988 Nov;7(11):3331-6 PMID: 2905261
  25. An integral membrane component of coatomer-coated transport vesicles defines a family of proteins involved in budding.
    Proc Natl Acad Sci U S A. 1995 Aug 15;92(17):8011-5 PMID: 7644530
  26. Specificity and regulation of a synaptic vesicle docking complex.
    Neuron. 1994 Aug;13(2):353-61 PMID: 8060616
  27. The identification of a novel synaptosomal-associated protein, SNAP-25, differentially expressed by neuronal subpopulations.
    J Cell Biol. 1989 Dec;109(6 Pt 1):3039-52 PMID: 2592413
  28. A fusion protein required for vesicle-mediated transport in both mammalian cells and yeast.
    Nature. 1989 Jun 1;339(6223):355-9 PMID: 2657434
  29. An N-terminal double-arginine motif maintains type II membrane proteins in the endoplasmic reticulum.
    EMBO J. 1994 Apr 1;13(7):1696-705 PMID: 8157008
  30. Stepwise assembly of functionally active transport vesicles.
    Cell. 1993 Dec 3;75(5):1015-25 PMID: 8252615
  31. SNAPs, a family of NSF attachment proteins involved in intracellular membrane fusion in animals and yeast.
    Cell. 1990 May 18;61(4):709-21 PMID: 2111733
  32. Phospholipase D: a downstream effector of ARF in granulocytes.
    Science. 1994 Jan 28;263(5146):523-6 PMID: 8290961
  33. ADP-ribosylation factor, a small GTP-dependent regulatory protein, stimulates phospholipase D activity.
    Cell. 1993 Dec 17;75(6):1137-44 PMID: 8261513
  34. A Drosophila NSF mutant.
    Nature. 1995 Jul 6;376(6535):25 PMID: 7596428
  35. Coatomer is essential for retrieval of dilysine-tagged proteins to the endoplasmic reticulum.
    Cell. 1994 Dec 30;79(7):1199-207 PMID: 8001155
  36. A possible docking and fusion particle for synaptic transmission.
    Nature. 1995 Dec 14;378(6558):733-6 PMID: 7501022
  37. SNARE-mediated retrograde traffic from the Golgi complex to the endoplasmic reticulum.
    Cell. 1996 Apr 19;85(2):205-15 PMID: 8612273
  38. A post-docking role for synaptobrevin in synaptic vesicle fusion.
    Neuron. 1994 Jun;12(6):1269-79 PMID: 8011337
  39. Protein sorting by transport vesicles.
    Science. 1996 Apr 12;272(5259):227-34 PMID: 8602507
  40. The synaptic vesicle cycle: a cascade of protein-protein interactions.
    Nature. 1995 Jun 22;375(6533):645-53 PMID: 7791897
  41. Role of an N-ethylmaleimide-sensitive transport component in promoting fusion of transport vesicles with cisternae of the Golgi stack.
    Cell. 1988 Jul 15;54(2):221-7 PMID: 3390865
  42. Synaptotagmin and neurotransmitter release.
    Cell. 1993 Sep 24;74(6):947-50 PMID: 8104706
  43. Mutations in the Drosophila Rop gene suggest a function in general secretion and synaptic transmission.
    Neuron. 1994 Sep;13(3):555-66 PMID: 7917291
  44. SNAP-25, a t-SNARE which binds to both syntaxin and synaptobrevin via domains that may form coiled coils.
    J Biol Chem. 1994 Nov 4;269(44):27427-32 PMID: 7961655
  45. Synaptobrevin: an integral membrane protein of 18,000 daltons present in small synaptic vesicles of rat brain.
    EMBO J. 1989 Feb;8(2):379-84 PMID: 2498078
  46. Proteinase mutants of Saccharomyces cerevisiae.
    Genetics. 1977 Jan;85(1):23-33 PMID: 320092
  47. Vesicular transport between the endoplasmic reticulum and the Golgi stack requires the NEM-sensitive fusion protein.
    Nature. 1989 Jun 1;339(6223):397-8 PMID: 2542798
  48. The syntaxin family of vesicular transport receptors.
    Cell. 1993 Sep 10;74(5):863-73 PMID: 7690687
  49. Syntaxin and synaptobrevin function downstream of vesicle docking in Drosophila.
    Neuron. 1995 Sep;15(3):663-73 PMID: 7546745
  50. A coat subunit of Golgi-derived non-clathrin-coated vesicles with homology to the clathrin-coated vesicle coat protein beta-adaptin.
    Nature. 1991 Jan 17;349(6306):215-20 PMID: 1898984
  51. HPC-1 is associated with synaptotagmin and omega-conotoxin receptor.
    J Biol Chem. 1992 Dec 15;267(35):24925-8 PMID: 1334074
  52. Identification of a consensus motif for retention of transmembrane proteins in the endoplasmic reticulum.
    EMBO J. 1990 Oct;9(10):3153-62 PMID: 2120038
  53. VAMP-1: a synaptic vesicle-associated integral membrane protein.
    Proc Natl Acad Sci U S A. 1988 Jun;85(12):4538-42 PMID: 3380805
  54. 'Coatomer': a cytosolic protein complex containing subunits of non-clathrin-coated Golgi transport vesicles.
    Nature. 1991 Jan 17;349(6306):248-51 PMID: 1898986
  55. Identification of 23 complementation groups required for post-translational events in the yeast secretory pathway.
    Cell. 1980 Aug;21(1):205-15 PMID: 6996832
  56. SNAP family of NSF attachment proteins includes a brain-specific isoform.
    Nature. 1993 Mar 25;362(6418):353-5 PMID: 8455721
  57. ADP-ribosylation factor-directed GTPase-activating protein. Purification and partial characterization.
    J Biol Chem. 1995 Mar 10;270(10):5232-7 PMID: 7890632
  58. Localization of Sed5, a putative vesicle targeting molecule, to the cis-Golgi network involves both its transmembrane and cytoplasmic domains.
    J Cell Biol. 1994 Oct;127(2):357-71 PMID: 7929581
  59. Hydrolysis of bound GTP by ARF protein triggers uncoating of Golgi-derived COP-coated vesicles.
    J Cell Biol. 1993 Dec;123(6 Pt 1):1365-71 PMID: 8253837
  60. A rab protein is required for the assembly of SNARE complexes in the docking of transport vesicles.
    Cell. 1994 Sep 23;78(6):937-48 PMID: 7923363
  61. The rate of bulk flow from the endoplasmic reticulum to the cell surface.
    Cell. 1987 Jul 17;50(2):289-300 PMID: 3594573
  62. A protein assembly-disassembly pathway in vitro that may correspond to sequential steps of synaptic vesicle docking, activation, and fusion.
    Cell. 1993 Nov 5;75(3):409-18 PMID: 8221884
  63. Vesicle fusion following receptor-mediated endocytosis requires a protein active in Golgi transport.
    Nature. 1989 Jun 1;339(6223):398-400 PMID: 2725659
  64. A SNARE-like protein required for traffic through the Golgi complex.
    Nature. 1995 Jun 29;375(6534):806-9 PMID: 7596416
  65. SED5 encodes a 39-kD integral membrane protein required for vesicular transport between the ER and the Golgi complex.
    J Cell Biol. 1992 Nov;119(3):513-21 PMID: 1400588
  66. Intracellular aspects of the process of protein synthesis.
    Science. 1975 Aug 1;189(4200):347-58 PMID: 1096303
  67. Synaptobrevin binding to synaptophysin: a potential mechanism for controlling the exocytotic fusion machine.
    EMBO J. 1995 Jan 16;14(2):224-31 PMID: 7835333
  68. Compartmental organization of Golgi-specific protein modification and vacuolar protein sorting events defined in a yeast sec18 (NSF) mutant.
    J Cell Biol. 1991 Jul;114(2):207-18 PMID: 2071670
  69. Yeast syntaxins Sso1p and Sso2p belong to a family of related membrane proteins that function in vesicular transport.
    EMBO J. 1993 Nov;12(11):4095-104 PMID: 8223426
Article Info
Journal
Experientia
Abbr.
Experientia
ISSN
0014-4754
Published
1996-12-15
Pages
1021-5
Language
English
Region
Switzerland
NLM ID
0376547
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]