CANNABINOID RECEPTOR AGONIST EFFICACY FOR STIMULATING [S-35] GTP-GAMMA-S BINDING TO RAT CEREBELLAR MEMBRANES CORRELATES WITH AGONIST-INDUCED DECREASES IN GDP AFFINITY

Citation
Cs. Breivogel et al., CANNABINOID RECEPTOR AGONIST EFFICACY FOR STIMULATING [S-35] GTP-GAMMA-S BINDING TO RAT CEREBELLAR MEMBRANES CORRELATES WITH AGONIST-INDUCED DECREASES IN GDP AFFINITY, The Journal of biological chemistry, 273(27), 1998, pp. 16865-16873
Citations number
55
Categorie Soggetti
Biology
ISSN journal
00219258
Volume
273
Issue
27
Year of publication
1998
Pages
16865 - 16873
Database
ISI
SICI code
0021-9258(1998)273:27<16865:CRAEFS>2.0.ZU;2-N
Abstract
The relationship between GDP and cannabinoid-stimulated [S-35]guanosin e-5'-O-(3-thiotriphosphate) ([S-35]GTP gamma S) binding was investigat ed in rat cerebellar membranes. Kinetic analyses showed that [35S]GTP gamma S binding reached steady-state levels and that the association r ate was increased by the agonist WIN 55212-2 proportional to the conce ntration of GDP. Dissociation of [S-35]GTP gamma S occurred with two r ates (t(1/2) = 7 and 170 min), and WIN 55212-2 increased the proportio n of sites exhibiting the faster rate. Without GDP, [S-35]GTP gamma S bound to membranes with high and low affinity, and WIN 55212-2 had no effect. With 30 mu M GDP, [S-35]GTP gamma S bound to low and intermedi ate affinity sites, and WIN 55212-2 induced high affinity [S-35]GTP ga mma S binding without affecting low affinity sites, GDP competed for h igh affinity [S-35]GTP gamma S binding with high and intermediate affi nity in the absence of WIN 55212-2 and with high and low affinity in t he presence of WIN 55212-2. Cannabinoid ligands displayed differential abilities to maximally stimulate [S-35]GTP gamma S binding in the pre sence of GDP. Efficacy differences among ligands increased with increa sing GDP concentrations. GDP competition curves revealed that agonists induced low affinity GDP Ki values that were proportional to agonist E-max values, indicating that agonist efficacy is determined by displa cement of GDP from G-proteins.