The general objective of this project is to study receptor mechanism related to the development of supersensitivity by arteries to Alpha-agonists during mineralocorticoid salt hypertension. The aorta from control rats and rats made hypertensive with infusion of aldosterone will be used for pharmacologic studies and radioligand binding assays. The functional studies will focus on dose-dependent changes in 42K and 45Ca effluxes, and contraction. The ligand binding measures will use 3H-prazosin and 3H-yohimbine. It is planned to compare parameters derived from each approach and to test the general hypothesis that sup]ersensitivity in aldosterone hypertension is related to increased concentration of Alpha-1 receptors.
The specific aims deal with the determination of: (1) dissociation constants, KB, for prazosin and yohimbine based on analyses of competitive antagonism of agonist effects on isotope fluxes from intact aorta; (2) dissociation constant, KD, and maximum binding B max, for 3H-prazosin and 3H-yohimbine based on analyses of ligand saturation curves for membranes isolated from aorta; (3) relative potency series for Alpha-1 and Alpha-2 agonists based on ED50 from 42K efflux analyses and on Ki from competitive inhibition of radioligand binding; (4) receptor affinity, KA, and accupancy base on analyses of the effects of non competitive blockade by dibenamine; and (5) receptor kinetics by comparison of rate constants for the change in aortic 42K efflux indiced by norepinephrine in the presence of prazosin, with the rate of dissociation of 3H-prazosin from membrane receptors in the presence of norepinephrine. Comparison will be made between control and aldosterone hypertensive groups to test our hypotheses concerning the development of supersensitivity and its role in the pathogenesis of hypertension.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL030519-03
Application #
3341547
Study Section
Pharmacology A Study Section (PHRA)
Project Start
1983-04-01
Project End
1986-11-30
Budget Start
1985-04-01
Budget End
1986-11-30
Support Year
3
Fiscal Year
1985
Total Cost
Indirect Cost
Name
University of Missouri-Columbia
Department
Type
Schools of Medicine
DUNS #
112205955
City
Columbia
State
MO
Country
United States
Zip Code
65211
Shukla, S D; Halenda, S P (1991) Phospholipase D in cell signalling and its relationship to phospholipase C. Life Sci 48:851-66
Post, J M; Jones, A W (1991) Stimulation of arterial 42K efflux by ATP depletion and cromakalim is antagonized by glyburide. Am J Physiol 260:H848-54
Jones, A W; Shukla, S D; Geisbuhler, B B et al. (1991) Altered phospholipase activities related to alpha 1-adrenergic receptor supersensitivity of aortas from aldosterone-salt hypertensive rats. Adv Exp Med Biol 308:55-69
Magliola, L; Jones, A W (1990) Sodium nitroprusside alters Ca2+ flux components and Ca2(+)-dependent fluxes of K+ and Cl- in rat aorta. J Physiol 421:411-24
Post, J M; Smith, J M; Jones, A W (1989) BRL 34915 (Cromakalim) stimulation of 42K efflux from rabbit arteries is modulated by calcium. J Pharmacol Exp Ther 250:591-7
Jones, A W; Geisbuhler, B B; Shukla, S D et al. (1988) Altered biochemical and functional responses in aorta from hypertensive rats. Hypertension 11:627-34
Smith, J M; Jones, S B; Bylund, D B et al. (1987) Characterization of the alpha-1 adrenergic receptors in the thoracic aorta of control and aldosterone hypertensive rats: correlation of radioligand binding with potassium efflux and contraction. J Pharmacol Exp Ther 241:882-90
Jones, S B; Smith, J M; Jones, A W et al. (1987) Alpha-1 adrenergic receptor binding in aortas from rat and dog: comparison of [3H]prazosin and beta-iodo-[125I]-4-hydroxyphenyl-ethyl-aminomethyl-tetralone. J Pharmacol Exp Ther 241:875-81
Jones, A W; Smith, J M (1986) Altered Ca-dependent fluxes of 42K in rat aorta during aldosterone-salt hypertension. Prog Clin Biol Res 219:265-79
Smith, J M; Sanchez, A A; Jones, A W (1986) Comparison of rubidium-86 and potassium-42 fluxes in rat aorta. Blood Vessels 23:297-309