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      The mechanism and regulation of vesicular glutamate transport: Coordination with the synaptic vesicle cycle.

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          Abstract

          The transport of classical neurotransmitters into synaptic vesicles generally relies on a H+ electrochemical gradient (∆μH+). Synaptic vesicle uptake of glutamate depends primarily on the electrical component ∆ψ as the driving force, rather than the chemical component ∆pH. However, the vesicular glutamate transporters (VGLUTs) belong to the solute carrier 17 (SLC17) family, which includes closely related members that function as H+ cotransporters. Recent work has also shown that the VGLUTs undergo allosteric regulation by H+ and Cl-, and exhibit an associated Cl- conductance. These properties appear to coordinate VGLUT activity with the large ionic shifts that accompany the rapid recycling of synaptic vesicles driven by neural activity. Recent structural information also suggests common mechanisms that underlie the apparently divergent function of SLC17 family members, and that confer allosteric regulation.

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          Author and article information

          Journal
          Biochim Biophys Acta Biomembr
          Biochimica et biophysica acta. Biomembranes
          Elsevier BV
          1879-2642
          0005-2736
          Dec 01 2020
          : 1862
          : 12
          Affiliations
          [1 ] Department of Physiology, UCSF School of Medicine, United States of America; Department of Neurology, UCSF School of Medicine, United States of America.
          [2 ] Department of Physiology, UCSF School of Medicine, United States of America; Department of Neurology, UCSF School of Medicine, United States of America. Electronic address: robert.edwards@ucsf.edu.
          Article
          NIHMS1578079 S0005-2736(20)30084-5
          10.1016/j.bbamem.2020.183259
          7483692
          32147354
          426d67d0-3df5-4ce4-a3c7-4a91e294c17c
          History

          Allosteric regulation,Vesicular glutamate transport,Synaptic vesicle,Solute carrier (SLC) 17 family,Chloride conductance

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