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Identification of endothelin receptor subtypes in rat kidney cortex using subtype-selective ligands
1Department of Pharmacology, SmithKline Beecham Pharmaceuticals, King of Prussia, Pennsylvania 19406-0939.
Molecular Pharmacology
|August 1, 1992
Summary
Rat kidney cortex membranes bind Endothelin (ET)-1 and ET-3 with high affinity. These studies reveal a 50:50 ratio of ETA and ETB receptors, aiding in subtype identification.
Area of Science:
- Pharmacology
- Endocrinology
- Renal Physiology
Background:
- Endothelin (ET) receptors play crucial roles in regulating physiological processes, including renal function.
- Understanding the distribution and characteristics of ET receptor subtypes (ETA and ETB) in the kidney is essential for targeted therapeutic interventions.
Purpose of the Study:
- To characterize the binding affinity and density of Endothelin (ET)-1 and ET-3 binding sites in rat kidney cortex membranes.
- To determine the relative proportions of ETA and ETB receptor subtypes in the rat kidney cortex using selective ligands.
Main Methods:
- Radioligand binding assays using radiolabeled 125I-Endothelin (ET)-1 and 125I-ET-3.
- Saturation binding experiments to determine dissociation constants (Kd) and maximum binding (Bmax).
- Competitive binding studies utilizing selective ETA receptor antagonist BQ123 and selective ETB receptor agonist sarafotoxin 6c.
Main Results:
- Both 125I-ET-1 and 125I-ET-3 exhibited specific, saturable, high-affinity binding to rat kidney cortex membranes.
- 125I-ET-3 binding sites were 40-50% less abundant than 125I-ET-1 binding sites.
- Sarafotoxin 6c and BQ123 selectively inhibited binding, indicating the presence of both ETA and ETB receptors in a 50:50 ratio. 125I-ET-1 bound to both subtypes, while 125I-ET-3 primarily bound to ETB receptors.
Conclusions:
- Rat kidney cortex possesses both ETA and ETB receptors in approximately equal proportions.
- 125I-ET-1 demonstrates high-affinity binding to both ETA and ETB receptors.
- 125I-ET-3 shows high-affinity binding predominantly to ETB receptors, and sarafotoxin 6c and BQ123 are effective tools for differentiating ET receptor subtypes in kidney tissue.