Literature DB >> 21282553

Angiotensin II stimulates renin in inner medullary collecting duct cells via protein kinase C and independent of epithelial sodium channel and mineralocorticoid receptor activity.

Alexis A Gonzalez1, Liu Liu, Lucienne S Lara, Dale M Seth, L Gabriel Navar, Minolfa C Prieto.   

Abstract

Collecting duct (CD) renin is stimulated by angiotensin (Ang) II, providing a pathway for Ang I generation and further conversion to Ang II. Ang II stimulates the epithelial sodium channel via the Ang II type 1 receptor and increases mineralocorticoid receptor activity attributed to increased aldosterone release. Our objective was to determine whether CD renin augmentation is mediated directly by Ang II type 1 receptor or via the epithelial sodium channel and mineralocorticoid receptor. In vivo studies examined the effects of epithelial sodium channel blockade (amiloride; 5 mg/kg per day) on CD renin expression and urinary renin content in Ang II-infused rats (80 ng/min, 2 weeks). Ang II infusion increased systolic blood pressure, medullary renin mRNA, urinary renin content, and intrarenal Ang II levels. Amiloride cotreatment did not alter these responses despite a reduction in the rate of progression of systolic blood pressure. In primary cultures of inner medullary CD cells, renin mRNA and (pro)renin protein levels increased with Ang II (100 nmol/L), and candesartan (Ang II type 1 receptor antagonist) prevented this effect. Aldosterone (10(-10) to 10(-7) mol/L) with or without amiloride did not modify the upregulation of renin mRNA in Ang II-treated cells. However, inhibition of protein kinase C with calphostin C prevented the Ang II-mediated increases in renin mRNA and (pro)renin protein levels. Furthermore, protein kinase C activation with phorbol 12-myristate 13-acetate increased renin expression to the same extent as Ang II. These data indicate that an Ang II type 1 receptor-mediated increase in CD renin is induced directly by Ang II via the protein kinase C pathway and that this regulation is independent of mineralocorticoid receptor activation or epithelial sodium channel activity.

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Year:  2011        PMID: 21282553      PMCID: PMC3065069          DOI: 10.1161/HYPERTENSIONAHA.110.165902

Source DB:  PubMed          Journal:  Hypertension        ISSN: 0194-911X            Impact factor:   10.190


  26 in total

1.  Elements of a paracrine tubular renin-angiotensin system along the entire nephron.

Authors:  A Rohrwasser; T Morgan; H F Dillon; L Zhao; C W Callaway; E Hillas; S Zhang; T Cheng; T Inagami; K Ward; D A Terreros; J M Lalouel
Journal:  Hypertension       Date:  1999-12       Impact factor: 10.190

2.  Angiotensin II type 1 receptor-mediated augmentation of urinary excretion of endogenous angiotensin II in Val5-angiotensin II-infused rats.

Authors:  Weijian Shao; Dale M Seth; L Gabriel Navar
Journal:  Hypertension       Date:  2010-07-12       Impact factor: 10.190

3.  Regulation of aquaporin-2 trafficking by vasopressin in the renal collecting duct. Roles of ryanodine-sensitive Ca2+ stores and calmodulin.

Authors:  C L Chou; K P Yip; L Michea; K Kador; J D Ferraris; J B Wade; M A Knepper
Journal:  J Biol Chem       Date:  2000-11-24       Impact factor: 5.157

4.  Expression of angiotensinogen mRNA and protein in angiotensin II-dependent hypertension.

Authors:  Hiroyuki Kobori; Lisa M Harrison-Bernard; L Gabriel Navar
Journal:  J Am Soc Nephrol       Date:  2001-03       Impact factor: 10.121

5.  Effects of dietary sodium and genetic background on angiotensinogen and Renin in mouse.

Authors:  Pierre Lantelme; Andreas Rohrwasser; Barbu Gociman; Elaine Hillas; Tong Cheng; Gray Petty; Jennifer Thomas; Sha Xiao; Tomoaki Ishigami; Tracy Herrmann; Daniel A Terreros; Kenneth Ward; Jean-Marc Lalouel
Journal:  Hypertension       Date:  2002-05       Impact factor: 10.190

6.  Angiotensin II directly stimulates ENaC activity in the cortical collecting duct via AT(1) receptors.

Authors:  János Peti-Peterdi; David G Warnock; P Darwin Bell
Journal:  J Am Soc Nephrol       Date:  2002-05       Impact factor: 10.121

7.  Angiotensin II inhibits renin gene transcription via the protein kinase C pathway.

Authors:  Markus W H Müller; Vladimir Todorov; Bernhard K Krämer; Armin Kurtz
Journal:  Pflugers Arch       Date:  2002-04-09       Impact factor: 3.657

8.  Collecting duct renin is upregulated in both kidneys of 2-kidney, 1-clip goldblatt hypertensive rats.

Authors:  Minolfa C Prieto-Carrasquero; Fady T Botros; Javier Pagan; Hiroyuki Kobori; Dale M Seth; Dulce E Casarini; L Gabriel Navar
Journal:  Hypertension       Date:  2008-04-21       Impact factor: 10.190

9.  Acute angiotensin II infusions elicit pressure natriuresis in mice and reduce distal fractional sodium reabsorption.

Authors:  Di Zhao; L Gabriel Navar
Journal:  Hypertension       Date:  2008-05-26       Impact factor: 10.190

10.  Enhanced distal nephron sodium reabsorption in chronic angiotensin II-infused mice.

Authors:  Di Zhao; Dale M Seth; L Gabriel Navar
Journal:  Hypertension       Date:  2009-06-01       Impact factor: 10.190

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  46 in total

1.  A major role for the EP4 receptor in regulation of renin.

Authors:  Carie S Facemire; Mytrang Nguyen; Leigh Jania; William H Beierwaltes; Hyung-Suk Kim; Beverly H Koller; Thomas M Coffman
Journal:  Am J Physiol Renal Physiol       Date:  2011-08-10

2.  Reciprocal effect of angiotensin II in collecting duct renin synthesis.

Authors:  Takamitsu Saigusa
Journal:  Am J Physiol Renal Physiol       Date:  2015-09-16

3.  Genetic disruption of guanylyl cyclase/natriuretic peptide receptor-A upregulates renal (pro) renin receptor expression in Npr1 null mutant mice.

Authors:  Ramu Periyasamy; Subhankar Das; Kailash N Pandey
Journal:  Peptides       Date:  2019-04-06       Impact factor: 3.750

4.  Pericytes synthesize renin.

Authors:  Alison C Berg; Catalina Chernavvsky-Sequeira; Jennifer Lindsey; R Ariel Gomez; Maria Luisa S Sequeira-Lopez
Journal:  World J Nephrol       Date:  2013-02-06

5.  PGE2 upregulates renin through E-prostanoid receptor 1 via PKC/cAMP/CREB pathway in M-1 cells.

Authors:  Alexis A Gonzalez; Nicolas Salinas-Parra; Dan Leach; L Gabriel Navar; Minolfa C Prieto
Journal:  Am J Physiol Renal Physiol       Date:  2017-07-12

Review 6.  Physiology and Pathophysiology of the Intrarenal Renin-Angiotensin System: An Update.

Authors:  Tianxin Yang; Chuanming Xu
Journal:  J Am Soc Nephrol       Date:  2017-03-02       Impact factor: 10.121

Review 7.  Evolving concepts on regulation and function of renin in distal nephron.

Authors:  Minolfa C Prieto; Alexis A Gonzalez; L Gabriel Navar
Journal:  Pflugers Arch       Date:  2012-09-19       Impact factor: 3.657

Review 8.  Angiotensin-(1-7) and Alamandine on Experimental Models of Hypertension and Atherosclerosis.

Authors:  Fernando Pedro de Souza-Neto; Melissa Carvalho Santuchi; Mario de Morais E Silva; Maria José Campagnole-Santos; Rafaela Fernandes da Silva
Journal:  Curr Hypertens Rep       Date:  2018-03-14       Impact factor: 5.369

Review 9.  Role of the Collecting Duct Renin Angiotensin System in Regulation of Blood Pressure and Renal Function.

Authors:  Nirupama Ramkumar; Donald E Kohan
Journal:  Curr Hypertens Rep       Date:  2016-04       Impact factor: 5.369

10.  Nuclear expression of renin-angiotensin system components in NRK-52E renal epithelial cells.

Authors:  Ebaa M Alzayadneh; Mark C Chappell
Journal:  J Renin Angiotensin Aldosterone Syst       Date:  2014-06-24       Impact factor: 1.636

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