Publication | Closed Access
Chaotropic Ions Affect the Conformation of Quisqualate Receptors in Rat Cortical Membranes
126
Citations
16
References
1988
Year
NeurotransmitterNeurotransmissionCellular PhysiologyQuisqualate ReceptorsMedicinal ChemistryRelaxation ConstantNeurochemistryBiophysicsHealth SciencesMolecular PhysiologyChaotropic Ions AffectBiochemistryG Protein-coupled ReceptorMedicineReceptor (Biochemistry)Mechanism Of ActionNervous SystemPharmacologyCooperative InteractionSignal TransductionNeurophysiologyFunctional SelectivityPhysiologyNeuropeptide ReceptorNeuroscienceCentral Nervous SystemRat Cortical MembranesDrug Discovery
Binding of [3H](R,S)-alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid ([3H]AMPA) to quisqualate receptors in the presence of SCN- ions produced curvilinear Scatchard plots. Kinetic investigations of [3H]AMPA binding showed that the curvilinearity cannot be explained by assuming binding to two separate binding sites or by considering it due to cooperative interaction. A more likely explanation is that the quisqualate receptors exist in two states, one with high and one with low affinity for [3H]AMPA. Chaotropic ions change the relaxation constant between the two states.
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