Journal of Biological Chemistry · 2006 · 76 citations · 39 references
Molecular BiologyChemical BiologyCellular PhysiologyMolecular PharmacologyMembrane TransportGlutamate-free FormNeurochemistryGlutamate TranslocationGlutamate TransportMolecular PhysiologyBiochemistryNeuropharmacologyProtein TransportGlutamate AffinityPharmacologyInhibits BindingSignal TransductionNatural SciencesMolecular NeurobiologyGlutamate Transporter Eaac1Medicine
Substrate transport by the plasma membrane glutamate transporter EAAC1 is coupled to cotransport of three sodium ions. One of these Na(+) ions binds to the transporter already in the absence of glutamate. Here, we have investigated the possible involvement of two conserved aspartic acid residues in transmembrane segments 7 and 8 of EAAC1, Asp-367 and Asp-454, in Na(+) cotransport. To test the effect of charge neutralization mutations in these positions on Na(+) binding to the glutamate-free transporter, we recorded the Na(+)-induced anion leak current to determine the K(m) of EAAC1 for Na(+). For EAAC1(WT), this K(m) was determined as 120 mm. When the negative charge of Asp-367 was neutralized by mutagenesis to asparagine, Na(+) activated the anion leak current with a K(m) of about 2 m, indicating dramatically impaired Na(+) binding to the mutant transporter. In contrast, the Na(+) affinity of EAAC1(D454N) was virtually unchanged compared with the wild type transporter (K(m) = 90 mm). The reduced occupancy of the Na(+) binding site of EAAC1(D367N) resulted in a dramatic reduction in glutamate affinity (K(m) = 3.6 mm, 140 mm [Na(+)]), which could be partially overcome by increasing extracellular [Na(+)]. In addition to impairing Na(+) binding, the D367N mutation slowed glutamate transport, as shown by pre-steady-state kinetic analysis of transport currents, by strongly decreasing the rate of a reaction step associated with glutamate translocation. Our data are consistent with a model in which Asp-367, but not Asp-454, is involved in coordinating the bound Na(+) in the glutamate-free transporter form.
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Cloning and expression of a rat brain L-glutamate transporter
Gilia Pines, Niels C. Danbolt, Magnar Bjørås et al. · Nature · 1992 · 1.2K citations
Thorsten Storck, S. Schulte, Kay Hofmann et al. · Proceedings of the National Academy of Sciences · 1992 · 1.2K citations · Full text
Synaptic Transmission, Neurotransmitter, Molecular Biology +20