CHARACTERIZATION OF THE INHIBITION OF EXCITATORY AMINO ACID-INDUCED NEUROTRANSMITTER RELEASE IN THE RAT STRIATUM BY PHENCYCLIDINE-LIKE DRUGS
- 1 September 1986
- journal article
- research article
- Vol. 238 (3) , 938-946
Abstract
In the present study, the authors found that, in Mg++-free buffer, N-methyl-D-aspartate (NMDA) was able to evoke the Ca++-dependent and tetrodotoxin-sensitive release of striatal acetylcholine (ACh), presumably via interaction with receptors on cholinergic interneurons. In Mg++-free buffer containing pargyline, NMDA also evoked a Ca++-dependent and tetrodotoxin-sensitive release of striatal [3H]dopamine (DA). Phencyclidine (PCP) and physiological concentrations of Mg++ (1.2 mM) also inhibited ACh release evoked by L-glutamate, L-aspartate and DL-homocysteate, but not ACh release evoked by the glutamate analogs quisqualate and kainate, suggesting that PCP is selective for the magnesium-sensitive, NMDA-preferring glutamate-aspartate receptor subtype. Comparison of PCP inhibition of NMDA-stimulated ACh and DA release with that produced by the competitive NMDA antagonist 2-amino-5-phosphonovalerate indicates that PCP is probably not altering release by a direct action on the NMDA recognition site. The ability of 2-amino-5-phosphonovalerate, but not PCP, to prevent desensitization of NMDA-induced ACh release is consistent with this interpretation. Binding studies did, however, reveal a reduction in the apparent affinity of the PCP binding site by high concentrations of NMDA. This may suggest an allosteric link between the PCP-sigma receptor and the NMDA-type glutamate-aspartate receptor. The receptors mediating excitatory amino acid-induced DA release were somewhat less selective than those on cholinergic neurons in their sensitivity to both Mg++ and PCP. Structure-activity-relationship studies suggested that the inhibition of ACh and DA release evoked by NMDA involves binding to the PCP-sigma receptor. Thus, the PCP-sigma receptor and the NMDA-preferring receptor both may modulate a Mg++-sensitive ionic conductance channel in an opposing manner.This publication has 40 references indexed in Scilit:
- Specific [3H]phencyclidine binding in rat central nervous system.Proceedings of the National Academy of Sciences, 1979
- Cortical lesions modulate turnover rates of acetylcholine and γ-aminobutyric acidNeuroscience Letters, 1979
- STIMULATORY EFFECT OF l‐GLUTAMATE AND RELATED AMINO ACIDS ON [3H]DOPAMINE RELEASE FROM RAT STRIATUM: AN IN VITRO MODEL FOR GLUTAMATE ACTIONSJournal of Neurochemistry, 1979
- METABOLISM AND EFFLUX OF [DOPAMINE-H-3 IN RAT NEOSTRIATUM - PRESYNAPTIC ORIGIN OF 3,4-[H-3]DIHYDROXYPHENYLACETIC ACID1979
- Selective degeneration of two out of the nine types of synapses in cat caudate nucleus after cortical lesionsExperimental Brain Research, 1978
- Presynaptic effect of L-glutamic acid on the release of dopamine in rat striatal slicesNeuroscience Letters, 1977
- Effects of phencyclidine on [3H]catecholamine and [3H]serotonin uptake in synaptosomal preparations from rat brainBiochemical Pharmacology, 1977
- A Rapid and Sensitive Method for the Quantitation of Microgram Quantities of Protein Utilizing the Principle of Protein-Dye BindingAnalytical Biochemistry, 1976
- The effects of phencyclidine on the uptake of 3H-catecholamines by rat striatal and hypothalamic synaptosomesLife Sciences, 1976
- THE PHARMACOLOGY OF 1-(1-PHENYLCYCLOHEXYL) PIPERIDINE.HCL1959