Literature DB >> 18278042

The vesicular glutamate transporter VGLUT3 synergizes striatal acetylcholine tone.

Christelle Gras1, Bénédicte Amilhon, Eve M Lepicard, Odile Poirel, Jacqueline Vinatier, Marc Herbin, Sylvie Dumas, Eleni T Tzavara, Mark R Wade, George G Nomikos, Naïma Hanoun, Françoise Saurini, Marie-Louise Kemel, Bruno Gasnier, Bruno Giros, Salah El Mestikawy.   

Abstract

Three subtypes of vesicular transporters accumulate glutamate into synaptic vesicles to promote its vesicular release. One of the subtypes, VGLUT3, is expressed in neurons, including cholinergic striatal interneurons, that are known to release other classical transmitters. Here we showed that disruption of the Slc17a8 gene (also known as Vglut3) caused an unexpected hypocholinergic striatal phenotype. Vglut3(-/-) mice were more responsive to cocaine and less prone to haloperidol-induced catalepsy than wild-type littermates, and acetylcholine release was decreased in striatum slices lacking VGLUT3. These phenotypes were associated with a colocalization of VGLUT3 and the vesicular acetylcholine transporter (VAChT) in striatal synaptic vesicles and the loss of a synergistic effect of glutamate on vesicular acetylcholine uptake. We propose that this vesicular synergy between two transmitters is the result of the unbalanced bioenergetics of VAChT, which requires anion co-entry for continuing vesicular filling. Our study reveals a previously unknown effect of glutamate on cholinergic synapses with potential functional and pharmacological implications.

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Year:  2008        PMID: 18278042     DOI: 10.1038/nn2052

Source DB:  PubMed          Journal:  Nat Neurosci        ISSN: 1097-6256            Impact factor:   24.884


  86 in total

Review 1.  Contribution of Vesicular Glutamate Transporters to Stress Response and Related Psychopathologies: Studies in VGluT3 Knockout Mice.

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Journal:  Cell Mol Neurobiol       Date:  2017-08-03       Impact factor: 5.046

Review 2.  Vesicular and plasma membrane transporters for neurotransmitters.

Authors:  Randy D Blakely; Robert H Edwards
Journal:  Cold Spring Harb Perspect Biol       Date:  2012-02-01       Impact factor: 10.005

3.  Synaptic and vesicular coexistence of VGLUT and VGAT in selected excitatory and inhibitory synapses.

Authors:  Johannes-Friedrich Zander; Agnieszka Münster-Wandowski; Irene Brunk; Ingrid Pahner; Gisela Gómez-Lira; Uwe Heinemann; Rafael Gutiérrez; Gregor Laube; Gudrun Ahnert-Hilger
Journal:  J Neurosci       Date:  2010-06-02       Impact factor: 6.167

4.  Pedunculopontine and laterodorsal tegmental nuclei contain distinct populations of cholinergic, glutamatergic and GABAergic neurons in the rat.

Authors:  Hui-Ling Wang; Marisela Morales
Journal:  Eur J Neurosci       Date:  2009-01       Impact factor: 3.386

5.  Target-Specific Glycinergic Transmission from VGluT3-Expressing Amacrine Cells Shapes Suppressive Contrast Responses in the Retina.

Authors:  Nai-Wen Tien; Tahnbee Kim; Daniel Kerschensteiner
Journal:  Cell Rep       Date:  2016-05-05       Impact factor: 9.423

Review 6.  Overview of glutamatergic neurotransmission in the nervous system.

Authors:  Mark J Niciu; Benjamin Kelmendi; Gerard Sanacora
Journal:  Pharmacol Biochem Behav       Date:  2011-08-26       Impact factor: 3.533

Review 7.  Dual-transmitter neurons: functional implications of co-release and co-transmission.

Authors:  Christopher E Vaaga; Maria Borisovska; Gary L Westbrook
Journal:  Curr Opin Neurobiol       Date:  2014-05-13       Impact factor: 6.627

8.  VGLUT2 in dopamine neurons is required for psychostimulant-induced behavioral activation.

Authors:  Carolina Birgner; Karin Nordenankar; Martin Lundblad; José Alfredo Mendez; Casey Smith; Madeleine le Grevès; Dagmar Galter; Lars Olson; Anders Fredriksson; Louis-Eric Trudeau; Klas Kullander; Asa Wallén-Mackenzie
Journal:  Proc Natl Acad Sci U S A       Date:  2009-12-14       Impact factor: 11.205

9.  Impairment of SLC17A8 encoding vesicular glutamate transporter-3, VGLUT3, underlies nonsyndromic deafness DFNA25 and inner hair cell dysfunction in null mice.

Authors:  Jérôme Ruel; Sarah Emery; Régis Nouvian; Tiphaine Bersot; Bénédicte Amilhon; Jana M Van Rybroek; Guy Rebillard; Marc Lenoir; Michel Eybalin; Benjamin Delprat; Theru A Sivakumaran; Bruno Giros; Salah El Mestikawy; Tobias Moser; Richard J H Smith; Marci M Lesperance; Jean-Luc Puel
Journal:  Am J Hum Genet       Date:  2008-08       Impact factor: 11.025

10.  Glutamate co-release at GABA/glycinergic synapses is crucial for the refinement of an inhibitory map.

Authors:  Jihyun Noh; Rebecca P Seal; Jessica A Garver; Robert H Edwards; Karl Kandler
Journal:  Nat Neurosci       Date:  2010-01-17       Impact factor: 24.884

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