Skip to main navigation Skip to search Skip to main content

Cloning, Transport Properties, and Differential Localization of Two Splice Variants of GLT-1 in the Rat CNS: Implications for CNS Glutamate Homeostasis

  • Robert Sullivan
  • , Thomas Rauen
  • , Frauke Fischer
  • , Michael Wießner
  • , Christof Grewer
  • , Ana Bicho
  • , David V. Pow
  • University of Queensland
  • University of Münster
  • Novartis
  • Swiss Federal Institute of Technology Zurich
  • Max Planck Institute of Biophysics
  • University of Miami

Research output: Contribution to journalArticlepeer-review

93 Scopus citations

Abstract

At least two splice variants of GLT-1 are expressed by rat brain astrocytes, albeit in different membrane domains. There is at present only limited data available as to the spatial relationship of such variants relative to the location of synapses and their functional properties. We have characterized the transport properties of GLT-1v in a heterologous expression system and conclude that its transport properties are similar to those of the originally described form of GLT-1, namely GLT-1α. We demonstrate that GLT-1α is localized to glial processes, some of which are interposed between multiple synapse types, including GABAergic synapses, whereas GLT-1v is expressed by astrocytic processes, at sites not interposed between synapses. Both splice variants can be expressed by a single astrocyte, but such expression is not uniform over the surface of the astrocytes. Neither splice variant of GLT-1 is evident in brain neurons, but both are abundantly expressed in some retinal neurons. We conclude that GLT-1v may not be involved in shaping the kinetics of synaptic signaling in the brain, but may be critical in preventing spillover of glutamate between adjacent synapses, thereby regulating intersynaptic glutamatergic and GABAergic transmission. Furthermore, GLT-1v may be crucial in ensuring that low levels of glutamate are maintained at extrasynaptic locations, especially in pathological conditions such as ischemia, motor neurone disease, and epilepsy.

Original languageEnglish
Pages (from-to)155-169
Number of pages15
JournalGLIA
Volume45
Issue number2
DOIs
StatePublished - Jan 15 2004

Keywords

  • Astrocyte
  • Bipolar cell
  • EAAT
  • GLT-1
  • Glutamate
  • Photoreceptor
  • Retina
  • Splice variant
  • Synapse
  • Transporter

Fingerprint

Dive into the research topics of 'Cloning, Transport Properties, and Differential Localization of Two Splice Variants of GLT-1 in the Rat CNS: Implications for CNS Glutamate Homeostasis'. Together they form a unique fingerprint.

Cite this