Abstract
Chlorpromazine (3 x 10(-4)M) prevents the stimulation of adenyl cyclase activity in thyroid membranes produced by thyrotropin and prostaglandin, ACTH stimulation of adenyl cyclase in adrenal tissue, and glucagon- and epinephrine-stimulation of adenyl cyclase activity in liver. Baseline activity is unaffected. Parathyroid hormone stimulation of kidney preparations was not inhibited under these conditions. At chlorpromazine concentrations >3 x 10(-4)M F(-)-stimulated cyclase activity of thyroid and adrenal tissue was increased. Other phenothiazines, trifluoperazine, and prochlorperazine, have similar effects on thyrotropin and F(-)-stimulated cyclase activity of thyroid. Na(+)- K(+)-dependent ATPase of thyroid is also inhibited by chlorpromazine. Since thymol causes a similar dissociation of hormone- and F(-)-stimulated adenyl cyclase, it is concluded that the surface properties of these agents best account for their effects on adenyl cyclase.
MeSH Terms
Adenine Nucleotides
Adenylyl Cyclase Inhibitors
Adrenal Glands/enzymology
Adrenocorticotropic Hormone/antagonists & inhibitors
Animals
Cattle
Cell Membrane/enzymology
Chlorpromazine/pharmacology
Enzyme Inhibitors
Epinephrine/antagonists & inhibitors
Fluorides/pharmacology
Glucagon/antagonists & inhibitors
Kidney/enzymology
Liver/enzymology
Phenothiazines/pharmacology
Pituitary Hormones, Anterior/antagonists & inhibitors
Prochlorperazine/pharmacology
Prostaglandin Antagonists
Stimulation, Chemical
Thymol/pharmacology
Thyroid Gland/cytology,enzymology
Thyrotropin/antagonists & inhibitors
Trifluoperazine/pharmacology
Chemicals
Adenine Nucleotides
Adenylyl Cyclase Inhibitors
Enzyme Inhibitors
Phenothiazines
Pituitary Hormones, Anterior
Prostaglandin Antagonists
Trifluoperazine
Thymol
Adrenocorticotropic Hormone
Thyrotropin
Glucagon
Fluorides
Chlorpromazine
Prochlorperazine
Epinephrine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Wolff J
Jones A B
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