4.5 Article

A role for vesicular glutamate transporter 1 in synaptic vesicle clustering and mobility

期刊

EUROPEAN JOURNAL OF NEUROSCIENCE
卷 37, 期 10, 页码 1631-1642

出版社

WILEY
DOI: 10.1111/ejn.12199

关键词

electron tomography; high-pressure freezing; mouse; synaptic vesicle superpool; vesicular glutamate transporters

资金

  1. Fondation pour la Recherche Medicale
  2. Fondation Pierre Gilles de Gennes
  3. Federation pour la Recherche sur le Cerveau
  4. Rotary International
  5. Ecole des Neurosciences de Paris
  6. Agence Nationale de la Recherche
  7. French Ministere de l'Enseignement Superieur et de la Recherche
  8. International Max Planck Research School
  9. Goettingen Graduate School for Neurosciences and Molecular Biosciences (DFG) [GSC 226/1]
  10. Deutsche Forschungsgemeinschaft [521]

向作者/读者索取更多资源

Synaptic vesicles (SVs) from excitatory synapses carry vesicular glutamate transporters (VGLUTs) that fill the vesicles with neurotransmitter. Although the essential function of VGLUTs as glutamate transporters has been well established, the evidence for additional cell-biological functions is more controversial. Both VGLUT1 and VGLUT2 disruptions in mice result in a reduced number of SVs away from release sites, flattening of SVs, and the appearance of tubular structures. Therefore, we analysed the morphology, biochemical composition and trafficking of SVs at synapses of VGLUT1/ mice in order to test for a function of VGLUTs in the formation or clustering of SVs. Analyses with high-pressure freezing immobilisation and electron tomography pointed to a role of VGLUT1 transport function in the tonicity of excitatory SVs, explaining the aldehyde-induced flattening of SVs observed in VGLUT1/ synapses. We confirmed the steep reduction in the number of SVs previously observed in VGLUT1/ presynaptic terminals, but did not observe accumulation of endocytotic intermediates. Furthermore, SV proteins of adult VGLUT1/ mouse brain tissue were expressed at normal levels in all subcellular fractions, suggesting that they were not displaced to another organelle. We thus assessed the mobility of the recently documented superpool of SVs. Synaptobrevin2enhanced green fluorescent protein time lapse experiments revealed an oversized superpool of SVs in VGLUT1/ neurons. Our results support the idea that, beyond glutamate loading, VGLUT1 enhances the tonicity of excitatory SVs and stabilises SVs at presynaptic terminals.

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