Literature DB >> 16077082

Genetic ablation of Rhbg in the mouse does not impair renal ammonium excretion.

Régine Chambrey1, Dominique Goossens, Soline Bourgeois, Nicolas Picard, May Bloch-Faure, Françoise Leviel, Valérie Geoffroy, Michele Cambillau, Yves Colin, Michel Paillard, Pascal Houillier, Jean Pierre Cartron, Dominique Eladari.   

Abstract

NH(4)(+) transport by the distal nephron and NH(4)(+) detoxification by the liver are critical for achieving regulation of acid-base balance and to avoid hyperammonemic hepatic encephalopathy, respectively. Therefore, it has been proposed that rhesus type B glycoprotein (Rhbg), a member of the Mep/Amt/Rh NH(3) channel superfamily, may be involved in some forms of distal tubular acidosis and congenital hyperammonemia. We have tested this hypothesis by inactivating the RHbg gene in the mouse by insertional mutagenesis. Histochemical studies analyses confirmed that RHbg knockout (KO) mice did not express Rhbg protein. Under basal conditions, the KO mice did not exhibit encephalopathy and survived well. They did not exhibit hallmarks of distal tubular acidosis because neither acid-base status, serum potassium concentration, nor bone mineral density was altered by RHbg disruption. They did not have hyperammonemia or disturbed hepatic NH(3) metabolism. Moreover, the KO mice adapted to a chronic acid-loading challenge by increasing urinary NH(4)(+) excretion as well as their wild-type controls. Finally, transepithelial NH(3) diffusive permeability, or NH(3) and NH(4)(+) entry across the basolateral membrane of cortical collecting duct cells, measured by in vitro microperfusion of collecting duct from KO and wild-type mice, was identical with no apparent effect of the absence of Rhbg protein. We conclude that Rhbg is not a critical determinant of NH(4)(+) excretion by the kidney and of NH(4)(+) detoxification by the liver in vivo.

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Year:  2005        PMID: 16077082     DOI: 10.1152/ajprenal.00172.2005

Source DB:  PubMed          Journal:  Am J Physiol Renal Physiol        ISSN: 1522-1466


  37 in total

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Authors:  I David Weiner; Jill W Verlander
Journal:  Curr Opin Nephrol Hypertens       Date:  2010-09       Impact factor: 2.894

Review 2.  Molecular mechanisms of renal ammonia transport.

Authors:  I David Weiner; L Lee Hamm
Journal:  Annu Rev Physiol       Date:  2007       Impact factor: 19.318

Review 3.  Role of NH3 and NH4+ transporters in renal acid-base transport.

Authors:  I David Weiner; Jill W Verlander
Journal:  Am J Physiol Renal Physiol       Date:  2010-11-03

Review 4.  Ammonia Transporters and Their Role in Acid-Base Balance.

Authors:  I David Weiner; Jill W Verlander
Journal:  Physiol Rev       Date:  2017-04       Impact factor: 37.312

Review 5.  Emerging Features of Ammonia Metabolism and Transport in Acid-Base Balance.

Authors:  I David Weiner; Jill W Verlander
Journal:  Semin Nephrol       Date:  2019-07       Impact factor: 5.299

6.  Tissue kallikrein permits early renal adaptation to potassium load.

Authors:  Soumaya El Moghrabi; Pascal Houillier; Nicolas Picard; Fabien Sohet; Bharath Wootla; May Bloch-Faure; Françoise Leviel; Lydie Cheval; Sebastian Frische; Pierre Meneton; Dominique Eladari; Régine Chambrey
Journal:  Proc Natl Acad Sci U S A       Date:  2010-07-12       Impact factor: 11.205

7.  Intercalated cell-specific Rh B glycoprotein deletion diminishes renal ammonia excretion response to hypokalemia.

Authors:  Jesse M Bishop; Hyun-Wook Lee; Mary E Handlogten; Ki-Hwan Han; Jill W Verlander; I David Weiner
Journal:  Am J Physiol Renal Physiol       Date:  2012-12-05

Review 8.  The Rh protein family: gene evolution, membrane biology, and disease association.

Authors:  Cheng-Han Huang; Mao Ye
Journal:  Cell Mol Life Sci       Date:  2009-12-02       Impact factor: 9.261

9.  The role of the renal ammonia transporter Rhcg in metabolic responses to dietary protein.

Authors:  Lisa Bounoure; Davide Ruffoni; Ralph Müller; Gisela Anna Kuhn; Soline Bourgeois; Olivier Devuyst; Carsten A Wagner
Journal:  J Am Soc Nephrol       Date:  2014-03-20       Impact factor: 10.121

Review 10.  Regulated acid-base transport in the collecting duct.

Authors:  Carsten A Wagner; Olivier Devuyst; Soline Bourgeois; Nilufar Mohebbi
Journal:  Pflugers Arch       Date:  2009-03-07       Impact factor: 3.657

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