Summary--Opioid agonists of the mu, kappa and delta types stimulated low-Km guanosine triphos-phatase (GTPase) in membranes, from the brain of the rat by up to 34%, with potencies the rank order of which corresponded to the respective binding affinities to opioid receptor. In general, kappa ligands stimulated GTPase to a lesser degree than mu or delta opiates. The coupling of a given type of opioid receptor to GTPase was resolved by direct or protective alkylation of the other receptors. Treatment of the membranes with I-funaltrexamine abolished the stimulation of GTPase by sufentanil and levorphanol (mu), but not by bremazocine (kappa) or DSLET (delta). On the other hand, prior incubation with Superfit, an alkylating agent with selectivity...
The mechanisms of opioid receptor coupling through G protein to adenylate cyclase (AC) during acute ...
Contains fulltext : 47484.pdf (publisher's version ) (Closed access)The effect of ...
High affinity low Km GTPase activity was measured in membrane preparations of adult mouse mesencepha...
Opioid agonists of the mu, kappa and delta types stimulated low-Km guanosine triphosphatase (GTPase)...
In membranes from guinea pig cerebellum, a tissue which predominantly contains [kappa] opioid recept...
Treatment of rat brain membranes with the irreversible opioid ligand cis -3-methylfentanylisothiocya...
There is much pharmacological evidence that suggests the existence of multiple δ-opioid receptors. H...
Opioid receptors are coupled to heterotrimeric guanine nucleotide binding proteins (G proteins). Ago...
grantor: University of TorontoEndogenous opioids play an important role in a variety of ph...
The role of guanine nucleotide binding protein (G protein) and membrane lipid in opioid receptor-lig...
The affinity displayed by different opioids to μ receptors (ORs) was determined in mouse brain membr...
Endogenous opioid peptides as well as opioid alkaloids exert their biological effects by interacting...
The existence of functional selectivity at the mu-opioid receptor was examined by determining the ef...
A nonisotopic, immunoelectrophoretic technique was used to analyze the characteristics of opioid-evo...
Subtle differences in coupling to different G proteins exist among the three opioid receptors (δ, κ ...
The mechanisms of opioid receptor coupling through G protein to adenylate cyclase (AC) during acute ...
Contains fulltext : 47484.pdf (publisher's version ) (Closed access)The effect of ...
High affinity low Km GTPase activity was measured in membrane preparations of adult mouse mesencepha...
Opioid agonists of the mu, kappa and delta types stimulated low-Km guanosine triphosphatase (GTPase)...
In membranes from guinea pig cerebellum, a tissue which predominantly contains [kappa] opioid recept...
Treatment of rat brain membranes with the irreversible opioid ligand cis -3-methylfentanylisothiocya...
There is much pharmacological evidence that suggests the existence of multiple δ-opioid receptors. H...
Opioid receptors are coupled to heterotrimeric guanine nucleotide binding proteins (G proteins). Ago...
grantor: University of TorontoEndogenous opioids play an important role in a variety of ph...
The role of guanine nucleotide binding protein (G protein) and membrane lipid in opioid receptor-lig...
The affinity displayed by different opioids to μ receptors (ORs) was determined in mouse brain membr...
Endogenous opioid peptides as well as opioid alkaloids exert their biological effects by interacting...
The existence of functional selectivity at the mu-opioid receptor was examined by determining the ef...
A nonisotopic, immunoelectrophoretic technique was used to analyze the characteristics of opioid-evo...
Subtle differences in coupling to different G proteins exist among the three opioid receptors (δ, κ ...
The mechanisms of opioid receptor coupling through G protein to adenylate cyclase (AC) during acute ...
Contains fulltext : 47484.pdf (publisher's version ) (Closed access)The effect of ...
High affinity low Km GTPase activity was measured in membrane preparations of adult mouse mesencepha...