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PMID: 16380464 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

Angiotensin II AT2 receptors inhibit proximal tubular Na+-K+-ATPase activity via a NO/cGMP-dependent pathway.

American journal of physiology. Renal physiology ·Vol. 290 ·No. 6 ·2006-06-00 ·Pages F1430-6

Hakam AC, Hussain T

Abstract

Angiotensin II AT2 receptors act as a functional antagonist for the AT1 receptors in various tissues. We previously reported that activation of the renal AT2 receptors promotes natriuresis and diuresis; however, the mechanism is not known. The present study was designed to investigate whether activation of AT2 receptors affects the activity of Na+-K+-ATPase (NKA), an active tubular sodium transporter, in the proximal tubules isolated from Sprague-Dawley rats. The AT2 receptor agonist CGP-42112 (10(-10)-10(-7) M) produced a dose-dependent inhibition of NKA activity (9-38%); the inhibition was attenuated by the presence of the AT2 receptor antagonist PD-123319 (1 microM), suggesting the involvement of the AT2 receptors. The AT1 receptor antagonist losartan (1 microM) did not affect the CGP-42112 (100 nM)-induced inhibition of NKA activity. The presence of guanylyl cyclase inhibitor ODQ (10 microM) and the nitric oxide (NO) synthase inhibitor N(omega)-nitro-L-arginine methyl ester (L-NAME; 100 microM) abolished the CGP-42112 (100 nM)-induced NKA inhibition. ANG II (100 nM), in the presence of losartan, significantly inhibited NKA activity; the inhibition was attenuated by PD-123319. CGP-42112 also, in a dose-dependent manner, stimulated NO production (approximately 0-230%) and cGMP accumulation (approximately 25-100%). The CGP-42112 (100 nM)-induced NO and cGMP increases were abolished by the AT2 receptor antagonist PD-123319, ODQ, and L-NAME. The data suggest that the activation of the AT2 receptor via stimulation of the NO/cGMP pathway causes inhibition of NKA activity in the proximal tubules. This phenomenon provides a plausible mechanism responsible for the AT2 receptor-mediated natriuresis-diuresis in rodents.

MeSH Terms
Angiotensin II/pharmacology Angiotensin II Type 1 Receptor Blockers/pharmacology Angiotensin II Type 2 Receptor Blockers Animals Cyclic GMP/analysis,physiology,urine Diuresis/drug effects Enzyme Inhibitors/pharmacology Glomerular Filtration Rate/drug effects Kidney Tubules, Proximal/chemistry,enzymology Male Natriuresis/drug effects Nitrates/analysis Nitric Oxide/biosynthesis,physiology Nitrites/analysis Oligopeptides/pharmacology Rats Rats, Sprague-Dawley Receptor, Angiotensin, Type 1 Receptor, Angiotensin, Type 2/agonists,physiology Sodium-Potassium-Exchanging ATPase/antagonists & inhibitors,metabolism
Chemicals
Angiotensin II Type 1 Receptor Blockers Angiotensin II Type 2 Receptor Blockers Enzyme Inhibitors Nitrates Nitrites Oligopeptides Receptor, Angiotensin, Type 1 Receptor, Angiotensin, Type 2 Angiotensin II CGP 42112A Nitric Oxide Sodium-Potassium-Exchanging ATPase Cyclic GMP
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Hakam Amer C
Dept. of Pharmacological and Pharmaceutical Sciences, Science and Research Bldg. 2, Univ. of Houston, 4800 Calhoun, Houston, TX 77204-5037, USA.
Hussain Tahir
Article Info
Journal
American journal of physiology. Renal physiology
Abbr.
Am J Physiol Renal Physiol
ISSN
1931-857X
Published
2006-06-00
Epub
2005-00-27
Pages
F1430-6
Language
English
Region
United States
NLM ID
100901990
Subset
IM
Grants
NIDDK NIH HHS · R01-DK-61578 · United States
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