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Binding of [3H]muscimol to calf cerebrocortical synaptic membranes and the effects of sulphur-containing convulsant and non-convulsant compounds
Authors:John O. Egbuta  Roger Griffiths
Affiliation:(1) Department of Biochemistry and Microbiology, University of St. Andrews, KY16 9AL, Fife, Scotland, U.K.
Abstract:Endogenous and xenobiotic sulphur-containing convulsant and non-convulsant compounds containing structural moieties of, or bearing a structural resemblance to, GABA and homocysteine were tested in binding studies for their potency in displacing the GABA-mimetic [3H]muscimol from specific, high-affinity sites (Kd=3.6 nM;Bmax=3.94 pmol/mg protein) on freeze-thawed, Triton-treated calf-brain synaptic membranes. The xenobiotic convulsants, 4-mercaptobutyric acid (MBA), 3-mercaptopropionic acid (3-MPA) and 2-mercaptopropionic acid (2-MPA) were found to be two-site competitive inhibitors exhibiting apparent inhibition affinity constants (Kiapp) of 5000 mgrM, 3750 mgrM, and 4800 mgrM, respectively; while homocysteic acid (Kiapp=4800 mgrM) was shown to be a one-site partial competitive inhibitor. Intermediary metabolites of methionine: S-adenosyl-l-homocysteine,l-cysteine, the convulsantl-homocysteine, and its non-convulsant disulphide oxidation product, homocystine, were found to be one-site partial competitive inhibitors exhibitingKiapp values of 5750 mgrM, 8350 mgrM, 5000 mgrM, and 510 mgrM, respectively. The endogenous anticonvulsant neuroeffector, taurine, and the tripeptide, reduced glutathione (GSH) were shown to be, respectively, one-site (Ki=20 mgrM) and two-site (Kiapp=4300 mgrM) competitive inhibitors of [3H]muscimol binding. These findings are discussed with regard to a previously proposed mechanism for the convulsant action of homocysteine.
Keywords:GABA receptor  sulphur compounds  homocysteine  convulsions
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