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Vascular atrial natriuretic factor receptor subtypes are not independently regulated by atrial peptides
P A Cahill1, E M Redmond, A K Keenan
1Department of Pharmacology, University College Dublin, Belfield, Ireland.
Abstract:
The regulation of the atrial natriuretic factor (ANF) receptor system in cultured rat vascular smooth muscle cells (RVSMC) was examined following long term pretreatment of these cells with rANF99-126 or with any one of a series of truncated and ring-deleted analogs. The latter analogs are reported to bind selectively the ANF-C or clearance receptor. Initial competition binding studies revealed that all analogs examined showed comparable apparent receptor binding affinities (Ki values did not differ by more than 10-fold). In contrast, the extent of interaction of the ANF analogs with the receptor pool coupled to particulate guanylate cyclase (the ANF-B receptor) was much more variable, with some ligands failing to stimulate cGMP production or particulate guanylate cyclase over the concentrations tested. Pretreatment of cells for 24 h with rANF99-126 or any of the truncated analogs that interact with the ANF-B receptor caused a dose- and time-dependent decrease in the number of ANF binding sites (99% of which are uncoupled in RVSMC) without any change in affinity. Examination of the binding activity following pretreatment of the cells with ANF suggested that the observed reduction in 125I-rANF99-126 binding capacity was not because of the retention of the peptide on its receptor. Furthermore, this down-regulation was associated with desensitization of particulate guanylate cyclase resulting in a decreased responsiveness of intracellular cGMP accumulation to ANF. In contrast, however, analogs selective for the ANF-C receptor pool failed to cause down-regulation or desensitization. These findings suggest that ANF-C receptors in RVSMC are not independently down-regulated by selective ligands but that nonselective analogs that down-regulate and desensitize the ANF-B receptor system can by some cooperative mechanism reduce the size of the predominant ANF-C receptor pool in these cells.
Insights
Atrial natriuretic factor (ANF) receptor regulation was studied in rat vascular smooth muscle cells. ANF analogs that activate the ANF-B receptor down-regulate ANF binding sites and desensitize guanylate cyclase.
Area of Science:
- Cardiovascular Physiology
- Molecular Pharmacology
- Cell Signaling
Background:
- The atrial natriuretic factor (ANF) system plays a crucial role in cardiovascular homeostasis.
- Understanding ANF receptor regulation is key to deciphering its physiological effects.
- Rat vascular smooth muscle cells (RVSMC) express ANF receptors involved in blood pressure regulation.
Purpose of the Study:
- To investigate the long-term regulation of ANF receptor subtypes in cultured RVSMC.
- To determine the effects of various ANF analogs on ANF receptor binding and signaling.
- To elucidate the mechanisms of ANF receptor down-regulation and desensitization.
Main Methods:
- Utilized cultured rat vascular smooth muscle cells (RVSMC).
- Employed competition binding studies with radiolabeled ANF and various analogs.
- Assessed guanylate cyclase activity and intracellular cGMP accumulation.
- Performed long-term cell pretreatment with different ANF analogs.
Main Results:
- All tested ANF analogs exhibited comparable binding affinities.
- Analogs interacting with the ANF-B receptor caused dose- and time-dependent down-regulation of ANF binding sites.
- Down-regulation by ANF-B receptor agonists was linked to particulate guanylate cyclase desensitization and reduced cGMP response.
- Selective ANF-C receptor agonists did not induce down-regulation or desensitization.
- Nonselective analogs down-regulated ANF-B receptors and potentially reduced ANF-C receptor pool size via a cooperative mechanism.
Conclusions:
- ANF-B receptor activation leads to down-regulation and desensitization of the ANF signaling pathway in RVSMC.
- ANF-C receptors in RVSMC are not independently regulated by selective ligands.
- Cooperative mechanisms may link ANF-B receptor activity to the modulation of the predominant ANF-C receptor pool.