Literature DB >> 8764322

Coordinate regulation of renal expression of nitric oxide synthase, renin, and angiotensinogen mRNA by dietary salt.

I Singh1, M Grams, W H Wang, T Yang, P Killen, A Smart, J Schnermann, J P Briggs.   

Abstract

Experiments were performed to examine the effect of changes in dietary salt intake on the neuronal form of the constitutive nitric oxide synthase (ncNOS, type I NOS), renin, and angiotensinogen mRNA expression in the kidney. Three groups of Sprague-Dawley rats were studied as follows: rats maintained on a 3% Na diet plus 0.45% NaCl in the drinking fluid for 7 days (high salt), rats given a single injection of furosemide (2 mg/kg i.p.) and a 0.03% Na diet for 7 days (low salt), and rats on a diet containing 0.2% Na (control). mRNA expression was assessed with reverse transcription-polymerase chain reaction (RT-PCR) methods using cDNA prepared from samples of renal cortex and microdissected tubular segments. ncNOS PCR products were quantified by comparison with a dilution series of a mutant deletion template. Compared with their respective control, ncNOS mRNA levels in renal cortical tissue were elevated in rats on a low-salt diet and reduced in rats on a high-salt diet. Similar changes were seen in the expression of renin and angiotensinogen mRNA. Dietary salt intake did not alter the mRNA levels for ncNOS from the inner medulla or for endothelial constitutive NOS (ecNOS, type III NOS) and inducible NOS (iNOS, type II NOS) in the renal cortex. ncNOS mRNA was found in glomeruli dissected with the macula densa-containing segment (MDCS), but only at marginal levels in glomeruli without MDCS. Furthermore, a low-salt diet stimulated ncNOS mRNA in glomeruli with MDCS by 6.2-fold compared with a high-salt diet. There was no effect of salt diet on ncNOS mRNA in glomeruli without MDCS or in inner medullary collecting ducts. These results suggest that ncNOS expression in macula densa cells is inversely regulated by salt intake, thus following the known response of the renin-angiotensin system to changes in salt balance.

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Year:  1996        PMID: 8764322     DOI: 10.1152/ajprenal.1996.270.6.F1027

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  22 in total

Review 1.  Tubular control of renin synthesis and secretion.

Authors:  Jurgen Schnermann; Josephine P Briggs
Journal:  Pflugers Arch       Date:  2012-06-05       Impact factor: 3.657

2.  Enhancement of angiotensinogen expression in angiotensin II-dependent hypertension.

Authors:  H Kobori; L M Harrison-Bernard; L G Navar
Journal:  Hypertension       Date:  2001-05       Impact factor: 10.190

3.  Amelioration of renal injury and oxidative stress by the nNOS inhibitor L-VNIO in the salt-sensitive mRen2.Lewis congenic rat.

Authors:  Liliya M Yamaleyeva; Sarah H Lindsey; Jasmina Varagic; Li Li Zhang; Patricia E Gallagher; Alex F Chen; Mark C Chappell
Journal:  J Cardiovasc Pharmacol       Date:  2012-06       Impact factor: 3.105

4.  Salt-sensitive splice variant of nNOS expressed in the macula densa cells.

Authors:  Deyin Lu; Yiling Fu; Arnaldo Lopez-Ruiz; Rui Zhang; Ramiro Juncos; Haifeng Liu; R Davis Manning; Luis A Juncos; Ruisheng Liu
Journal:  Am J Physiol Renal Physiol       Date:  2010-03-24

5.  Salt-induced renal injury in spontaneously hypertensive rats: effects of nebivolol.

Authors:  Jasmina Varagic; Sarfaraz Ahmad; K Bridget Brosnihan; Javad Habibi; Roger D Tilmon; James R Sowers; Carlos M Ferrario
Journal:  Am J Nephrol       Date:  2010-11-02       Impact factor: 3.754

6.  Possible role of P-450 metabolite of arachidonic acid in vasodilator mechanism of angiotensin II type 2 receptor in the isolated microperfused rabbit afferent arteriole.

Authors:  S Arima; Y Endo; H Yaoita; K Omata; S Ogawa; K Tsunoda; M Abe; K Takeuchi; K Abe; S Ito
Journal:  J Clin Invest       Date:  1997-12-01       Impact factor: 14.808

Review 7.  Understanding the Two Faces of Low-Salt Intake.

Authors:  Branko Braam; Xiaohua Huang; William A Cupples; Shereen M Hamza
Journal:  Curr Hypertens Rep       Date:  2017-06       Impact factor: 5.369

8.  Urinary excretion of angiotensinogen reflects intrarenal angiotensinogen production.

Authors:  Hiroyuki Kobori; Lisa M Harrison-Bernard; L Gabriel Navar
Journal:  Kidney Int       Date:  2002-02       Impact factor: 10.612

9.  Young Scholars Award Lecture: Intratubular angiotensinogen in hypertension and kidney diseases.

Authors:  Hiroyuki Kobori; Yuri Ozawa; Yuki Suzaki; Minolfa C Prieto-Carrasquero; Akira Nishiyama; Tatsuya Shoji; Eric P Cohen; L Gabriel Navar
Journal:  Am J Hypertens       Date:  2006-05       Impact factor: 2.689

10.  Genotype-phenotype analysis of angiotensinogen polymorphisms and essential hypertension: the importance of haplotypes.

Authors:  W Scott Watkins; Steven C Hunt; Gordon H Williams; Whitney Tolpinrud; Xavier Jeunemaitre; Jean-Marc Lalouel; Lynn B Jorde
Journal:  J Hypertens       Date:  2010-01       Impact factor: 4.844

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