Defective G protein activation of the cAMP pathway in rat kidney during genetic hypertension.
- 28 March 1995
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 92 (7) , 2924-2928
- https://doi.org/10.1073/pnas.92.7.2924
Abstract
The development of hypertension in the spontaneously hypertensive rat (SHR) is associated with renal dysfunction and vasoconstriction. The kidneys of young SHRs exhibit exaggerated reactivity to angiotensin II (Ang-II) and attenuated responses to vasodilators that normally activate the cAMP signal to buffer hormone-induced vasoconstriction. The present study investigates the mechanism(s) responsible for this abnormality in activation of the cAMP second-messenger pathway in hypertensive animals. Renal vascular reactivity was assessed in 7-week-old anesthetized SHRs and normotensive Wistar-Kyoto rats. The animals were pretreated with indomethacin to block prostanoid production throughout an experiment. Ang-II was injected into the renal artery either alone or mixed with the vasodilator fenoldopam, a dopamine-receptor agonist. These two opposing vasoactive agents were administered before and during intrarenal infusion of NaF or cholera toxin, two activators of G proteins that stimulate cAMP production. The results show that Ang-II reduced renal blood flow by 45% in both strains. In Wistar-Kyoto rats, fenoldopam reduced the Ang-II-induced decrease in renal blood flow from -45% to -30%. This protective effect of fenoldopam was increased further during infusion of NaF or cholera toxin (-18% or -19% decrease in renal blood flow). In SHRs, fenoldopam failed to attenuate Ang II-mediated vasoconstriction (-45% vs. -44%). In contrast, fenoldopam effectively blunted the Ang-II-induced vasoconstriction when it was given concurrently with NaF or cholera toxin (-27 or -31% decrease in renal blood flow). These findings provide evidence for defective interaction between receptor coupling and activation of guanine nucleotide stimulatory factor proteins in the renal microcirculation of 7-week-old SHRs. Such a deficiency could play an important role in renal dysfunction associated with the development of genetic hypertension.Keywords
This publication has 24 references indexed in Scilit:
- TRANSPLANTATION STUDIES OF THE ROLE OF THE KIDNEY IN LONG-TERM BLOOD PRESSURE REDUCTION FOLLOWING BRIEF ACE INHIBITOR TREATMENT IN YOUNG SPONTANEOUSLY HYPERTENSIVE RATSClinical and Experimental Pharmacology and Physiology, 1994
- Exaggerated renal vascular reactivity to angiotensin and thromboxane in young genetically hypertensive ratsAmerican Journal of Physiology-Renal Physiology, 1990
- Deficient Activity of Nucleotide Binding Regulatory Protein Coupled With PGE2 Receptor in Renal Medulla of Spontaneously Hypertensive RatsAmerican Journal of Hypertension, 1990
- Defective dopamine-1 receptor adenylate cyclase coupling in the proximal convoluted tubule from the spontaneously hypertensive rat.Journal of Clinical Investigation, 1989
- Renal haemodynamics and total body sodium in immature spontaneously hypertensive and Wistar-Kyoto rats.1986
- Defective Renal Adenylate Cyclase Response to Prostaglandin E2 in Spontaneously Hypertensive RatsJournal Of Hypertension, 1985
- Abnormalities in glomerular function in rats developing spontaneous hypertensionAmerican Journal of Physiology-Renal Physiology, 1984
- Activation of Adenylate Cyclase by CholeragenAnnual Review of Biochemistry, 1979
- Autoregulation of renal blood flow in spontaneously hypertensive rats.Circulation Research, 1979
- Renal and nephron hemodynamics in spontaneously hypertensive ratsAmerican Journal of Physiology-Renal Physiology, 1979