Abstract

Synaptic transmission of most vertebrate synapses is thought to be terminated by rapid transport of the neurotransmitter into presynaptic nerve terminals or neuroglia. L-Glutamate is the major excitatory transmitter in brain and its transport represents the mechanism by which it is removed from the synaptic cleft and kept below toxic levels. Here we use an antibody against a glial L-glutamate transporter from rat brain to isolate a complementary DNA clone encoding this transporter. Expression of this cDNA in transfected HeLa cells indicates that L-glutamate accumulation requires external sodium and internal potassium and transport shows the expected stereospecificity. The cDNA sequence predicts a protein of 573 amino acids with 8-9 putative transmembrane alpha-helices. Database searches indicate that this protein is not homologous to any identified protein of mammalian origin, including the recently described superfamily of neurotransmitter transporters. This protein therefore seems to be a member of a new family of transport molecules.

Keywords

Glutamate receptorNeurotransmitter transporterMetabotropic glutamate receptor 6Synaptic cleftTransporterGlutamate aspartate transporterBiologyComplementary DNAExcitatory amino-acid transporterCell biologyAmino acidNeurotransmissionNeurotransmitterBiochemistryChemistryMolecular biologyMetabotropic glutamate receptorGeneReceptor

MeSH Terms

Amino Acid SequenceAmino Acid Transport System X-AGAnimalsBase SequenceBlottingNorthernBrainCloningMolecularDNAEscherichia coliGene LibraryGlutamatesGlycoproteinsKineticsModelsStructuralMolecular Sequence DataProtein ConformationRNAMessengerRatsSequence HomologyAmino Acid

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Publication Info

Year
1992
Type
article
Volume
360
Issue
6403
Pages
464-467
Citations
1232
Access
Closed

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Cite This

Gilia Pines, Niels C. Danbolt, Magnar Bjørås et al. (1992). Cloning and expression of a rat brain L-glutamate transporter. Nature , 360 (6403) , 464-467. https://doi.org/10.1038/360464a0

Identifiers

DOI
10.1038/360464a0
PMID
1448170

Data Quality

Data completeness: 81%