The Japanese Journal of Pharmacology
Online ISSN : 1347-3506
Print ISSN : 0021-5198
ISSN-L : 0021-5198
Involvement of the Inhibitory GTP-Binding Regulatory Protein and a Low-Affinity Benzodiazepine Receptor in the Inhibitory Effect of Diazepam on Rat Brain Adenylate Cyclase System
Tomonori KUROKAWAToshio DAN'URAAtsushi YAMASHITAYasutomo UNESadahiko ISHIBASHI
Author information
JOURNAL FREE ACCESS

1988 Volume 47 Issue 1 Pages 81-86

Details
Abstract
The effect of diazepam on the adenylate cyclase system was studied in rat synaptosomal membranes. Micromolar concentrations of diazepam inhibited the cyclase activities in the presence or absence of guanylyl-5'-1midodiphosphate (GppNHp). The inhibitory effect of diazepam was greater on the cyclase activity in the presence of GppNHp than on that in the basal state. This effect of diazepam was not antagonized by Rol5-1788, an antagonist of a high affinity benzodiazepine receptor in the central nervous system. Furthermore, micromolar concentrations of Rol5-1788 had no inhibitory effect on cyclase activities in the presence or absence of GppNHp. In addition, the bromide ion enhanced the inhibition by diazepam of the cyclase activity in the presence of GppN Hp, but not the basal activity, although the bromide ion had no effect on both activities in the absence of diazepam. On the other hand, the pretreatment of synaptosomal membranes with GppNHp increased the KD value for [3H]diazepam binding from 98 μM to 198 μM. These data led us to conclude that diazepam inhibits rat brain adenylate cyclase through the effects on both a low affinity benzodiazepine receptor coupled with the inhibitory GTP-binding regulatory protein (G1) and the catalytic protein.
Content from these authors
© The Japanese PharmacologicalSociety
Previous article Next article
feedback
Top