Solubilization of phencyclidine receptors from rat cerebral cortex in an active ligand binding state |
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Authors: | L D McVittie D R Sibley |
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Institution: | National Institute of Neurological and Communicative Disorders and Stroke, Bethesda, MD 20892. |
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Abstract: | A phencyclidine (PCP) receptor binding site has been solubilized in an active ligand-binding state from rat cerebral cortical membranes with sodium deoxycholate. Optimal receptor solubilization occurs at a detergent/protein ratio of 0.5 (w/w); for 5 mg protein/ml solubilized with 0.25% sodium deoxycholate, about 60% of the protein and 25% of the receptor is solubilized. Specific binding of either 3H]-N-1-(2-thienyl)cyclohexyl]piperidine (3H]TCP) or 3H]MK-801 is measurable by filtration through Sephadex G-50 columns or glass fiber filters; more than 60% of the binding activity is stable after 48 h at 4 degrees C. In the presence of detergent, 3H]TCP binding exhibits a Kd of 250 nM, a Bmax of 0.56 pmol/mg protein, and a pharmacological profile consistent with that of the membrane-bound PCP receptor, although most drugs bind with affinities 2 to 8 fold lower than in membranes. Upon reduction of detergent concentration, binding parameters approximate those for the membrane-bound receptor (3H]TCP binding: Kd = 48 nM, Bmax = 1.13 pmol/mg protein). |
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