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Pendrin abundance, subcellular distribution, and function are unaffected by either αENaC gene ablation or by increasing ENaC channel activity.
Loffing, Johannes; Pech, Vladimir; Loffing-Cueni, Dominique; Abood, Delaney C; Kim, Young Hee; Chen, Chao; Pham, Truyen D; Verlander, Jill W; Wall, Susan M.
Afiliação
  • Loffing J; Institute of Anatomy, University of Zurich, Zurich, Switzerland. johannes.loffing@anatomy.uzh.ch.
  • Pech V; Division of Renal Medicine, Department of Medicine, Emory University, Atlanta, GA, 30322, USA.
  • Loffing-Cueni D; Institute of Anatomy, University of Zurich, Zurich, Switzerland.
  • Abood DC; Division of Renal Medicine, Department of Medicine, Emory University, Atlanta, GA, 30322, USA.
  • Kim YH; Division of Renal Medicine, Department of Medicine, Emory University, Atlanta, GA, 30322, USA.
  • Chen C; The Division of Nephrology, Hypertension and Renal Transplantation, The University of Florida College of Medicine, Gainesville, FL, USA.
  • Pham TD; Division of Renal Medicine, Department of Medicine, Emory University, Atlanta, GA, 30322, USA.
  • Verlander JW; The Division of Nephrology, Hypertension and Renal Transplantation, The University of Florida College of Medicine, Gainesville, FL, USA.
  • Wall SM; Division of Renal Medicine, Department of Medicine, Emory University, Atlanta, GA, 30322, USA. smwall@emory.edu.
Pflugers Arch ; 475(5): 607-620, 2023 05.
Article em En | MEDLINE | ID: mdl-36977894
ABSTRACT
The intercalated cell Cl-/HCO3- exchanger, pendrin, modulates ENaC subunit abundance and function. Whether ENaC modulates pendrin abundance and function is however unknown. Because αENaC mRNA has been detected in pendrin-positive intercalated cells, we hypothesized that ENaC, or more specifically the αENaC subunit, modulates intercalated cell function. The purpose of this study was therefore to determine if αENaC is expressed at the protein level in pendrin-positive intercalated cells and to determine if αENaC gene ablation or constitutively upregulating ENaC activity changes pendrin abundance, subcellular distribution, and/or function. We observed diffuse, cytoplasmic αENaC label in pendrin-positive intercalated cells from both mice and rats, with much lower label intensity in pendrin-negative, type A intercalated cells. However, while αENaC gene ablation within principal and intercalated cells of the CCD reduced Cl- absorption, it did not change pendrin abundance or subcellular distribution in aldosterone-treated mice. Further experiments used a mouse model of Liddle's syndrome to explore the effect of increasing ENaC channel activity on pendrin abundance and function. The Liddle's variant did not increase either total or apical plasma membrane pendrin abundance in aldosterone-treated or in NaCl-restricted mice. Similarly, while the Liddle's mutation increased total Cl- absorption in CCDs from aldosterone-treated mice, it did not significantly affect the change in Cl- absorption seen with pendrin gene ablation. We conclude that in rats and mice, αENaC localizes to pendrin-positive ICs where its physiological role remains to be determined. While pendrin modulates ENaC abundance, subcellular distribution, and function, ENaC does not have a similar effect on pendrin.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Proteínas de Transporte de Ânions / Aldosterona Limite: Animals Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Proteínas de Transporte de Ânions / Aldosterona Limite: Animals Idioma: En Ano de publicação: 2023 Tipo de documento: Article