Literature DB >> 24807050

Single-vesicle architecture of synaptobrevin2 in astrocytes.

Priyanka Singh1, Jernej Jorgačevski2, Marko Kreft3, Vladimir Grubišić4, Randy F Stout5, Maja Potokar2, Vladimir Parpura6, Robert Zorec2.   

Abstract

Exocytic transmitter release is regulated by the SNARE complex, which contains a vesicular protein, synaptobrevin2 (Sb2). However, Sb2 vesicular arrangement is unclear. Here we use super-resolution fluorescence microscopy to study the prevalence and distribution of endogenous and exogenous Sb2 in single vesicles of astrocytes, the most abundant glial cells in the brain. We tag Sb2 protein at C- and N termini with a pair of fluorophores, which allows us to determine the Sb2 length and geometry. To estimate total number of Sb2 proteins per vesicle and the quantity necessary for the formation of fusion pores, we treat cells with ATP to stimulate Ca2+-dependent exocytosis, increase intracellular alkalinity to enhance the fluorescence presentation of yellow-shifted pHluorin (YpH), appended to the vesicle lumen domain of Sb2, and perform photobleaching of YpH fluorophores. Fluorescence intensity analysis reveals that the total number of endogenous Sb2 units or molecules per vesicle is ≤25.

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Year:  2014        PMID: 24807050      PMCID: PMC4344122          DOI: 10.1038/ncomms4780

Source DB:  PubMed          Journal:  Nat Commun        ISSN: 2041-1723            Impact factor:   14.919


  50 in total

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Journal:  Biophys J       Date:  2000-10       Impact factor: 4.033

2.  Computation and mutagenesis suggest a right-handed structure for the synaptobrevin transmembrane dimer.

Authors:  K G Fleming; D M Engelman
Journal:  Proteins       Date:  2001-12-01

Review 3.  New roles for astrocytes: redefining the functional architecture of the brain.

Authors:  Maiken Nedergaard; Bruce Ransom; Steven A Goldman
Journal:  Trends Neurosci       Date:  2003-10       Impact factor: 13.837

4.  Red-edge anisotropy microscopy enables dynamic imaging of homo-FRET between green fluorescent proteins in cells.

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5.  Vesicular glutamate transporter-dependent glutamate release from astrocytes.

Authors:  Vedrana Montana; Yingchun Ni; Vice Sunjara; Xue Hua; Vladimir Parpura
Journal:  J Neurosci       Date:  2004-03-17       Impact factor: 6.167

6.  Automated high through-put colocalization analysis of multichannel confocal images.

Authors:  M Kreft; I Milisav; M Potokar; R Zorec
Journal:  Comput Methods Programs Biomed       Date:  2004-04       Impact factor: 5.428

7.  A variant of yellow fluorescent protein with fast and efficient maturation for cell-biological applications.

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9.  ATP stimulates calcium-dependent glutamate release from cultured astrocytes.

Authors:  A Jeremic; K Jeftinija; J Stevanovic; A Glavaski; S Jeftinija
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10.  Access of antibody molecules to the conserved coreceptor binding site on glycoprotein gp120 is sterically restricted on primary human immunodeficiency virus type 1.

Authors:  Aran F Labrijn; Pascal Poignard; Aarti Raja; Michael B Zwick; Karla Delgado; Michael Franti; James Binley; Veronique Vivona; Christoph Grundner; Chih-Chin Huang; Miro Venturi; Christos J Petropoulos; Terri Wrin; Dimiter S Dimitrov; James Robinson; Peter D Kwong; Richard T Wyatt; Joseph Sodroski; Dennis R Burton
Journal:  J Virol       Date:  2003-10       Impact factor: 5.103

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  23 in total

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Review 2.  Astrocytes as secretory cells of the central nervous system: idiosyncrasies of vesicular secretion.

Authors:  Alexei Verkhratsky; Michela Matteoli; Vladimir Parpura; Jean-Pierre Mothet; Robert Zorec
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Review 3.  Loose excitation-secretion coupling in astrocytes.

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Review 4.  Excitable Astrocytes: Ca(2+)- and cAMP-Regulated Exocytosis.

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Journal:  Neurochem Res       Date:  2015-03-03       Impact factor: 3.996

5.  Dominant negative SNARE peptides stabilize the fusion pore in a narrow, release-unproductive state.

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6.  Trafficking of excitatory amino acid transporter 2-laden vesicles in cultured astrocytes: a comparison between approximate and exact determination of trajectory angles.

Authors:  Chapin E Cavender; Manoj K Gottipati; Vladimir Parpura
Journal:  Amino Acids       Date:  2014-11-19       Impact factor: 3.520

Review 7.  Physiology of Astroglia.

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Journal:  Physiol Rev       Date:  2018-01-01       Impact factor: 37.312

Review 8.  Enteric glia regulate gut motility in health and disease.

Authors:  Vladimir Grubišić; Alexei Verkhratsky; Robert Zorec; Vladimir Parpura
Journal:  Brain Res Bull       Date:  2017-03-29       Impact factor: 4.077

9.  Astroglial Vesicular Trafficking in Neurodegenerative Diseases.

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Journal:  Neurochem Res       Date:  2016-09-14       Impact factor: 3.996

Review 10.  Gliocrine System: Astroglia as Secretory Cells of the CNS.

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Journal:  Adv Exp Med Biol       Date:  2019       Impact factor: 2.622

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