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Kinetic characterization of the phencyclidine-N-methyl-D-aspartate receptor interaction: evidence for a steric blockade of the channel.

Y Kloog, R Haring, M Sokolovsky

Biochemistry February 9, 1988 DOI: 10.1021/bi00403a001 (opens in new tab) via PubMed

Summary

AI-generated from the abstract

The binding of a PCP-site ligand ([3H]TCP) to NMDA receptors in rat brain membranes is slow unless glutamate and glycine are present. Without these agonists, association and dissociation take hours; with them, both accelerate dramatically (dissociation half-life drops from ~128–165 min to ~8 min). The competitive NMDA antagonist AP-5 blocks this acceleration. The authors propose a two-step model: the ligand must cross a barrier—likely the closed NMDA receptor channel—that opens when agonists bind.

Study at a glance

Characteristics In vitro laboratory study Peer reviewed
Population Rat cerebral cortex membranes
Key finding Glutamate and glycine accelerate [3H]TCP binding and dissociation kinetics by opening the NMDA receptor channel, a process blocked by the antagonist AP-5.

Abstract

The nature of the interactions between the N-methyl-D-aspartate (NMDA) and the phencyclidine (PCP) receptors was studied in membranes obtained from rat cerebral cortex and washed repeatedly to remove endogenous excitatory amino acids. Binding of [3H]-N-[1-(2-thienyl)cyclohexyl]piperidine ([3H]TCP) to its receptor sites in these membranes proceeded slowly and did not reach equilibrium even after incubation for 4 h at 25 degrees C. The dissociation rate of [3H]TCP-receptor complexes was also slow (t1/2 = 128-165 min). Both association and dissociation followed first-order reaction kinetics, with similar time constants (0.0054 min-1). Addition of glutamate and glycine to the washed membranes was immediately followed by a marked increase in the rates of both association of [3H]TCP with the receptors and its dissociation from them (t1/2 = 8 min). Association now followed second-order reaction kinetics. Accelerated association of [3H]TCP with its binding sites could also be induced by NMDA or by glutamate alone, and glycine enhanced the effect. All effects of glutamate and glycine on [3H]TCP binding kinetics were blocked by the competitive NMDA receptor antagonist AP-5 [D-(-)-2-amino-5-phosphovaleric acid]. [3H]TCP-receptor interactions at equilibrium were not altered by AP-5 or by glutamate and glycine. The binding data were fitted to a model in which interactions of [3H]TCP with the receptor involve a two-step process: the outside ligand must cross a barrier (presumably a closed NMDA receptor channel in the absence of agonists). Once agonists are added, this limitation is removed (presumably because the channel is open).(ABSTRACT TRUNCATED AT 250 WORDS)

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