Immunocytochemical localization of pendrin in intercalated cell subtypes in rat and mouse kidney

Author:

Kim Young-Hee12,Kwon Tae-Hwan32,Frische Sebastian2,Kim Jin4,Tisher C. Craig5,Madsen Kirsten M.1,Nielsen Søren2

Affiliation:

1. Department of Medicine and

2. The Water and Salt Research Center, University of Aarhus, DK-8000 Aarhus C, Denmark

3. Department of Physiology, School of Medicine, Dongguk University, Kyungju, 780-714;

4. Department of Anatomy, College of Medicine, Catholic University, Seoul 137-701, Korea; and

5. Division of Nephrology, Hypertension and Transplantation, University of Florida, Gainesville, Florida 32610;

Abstract

Recent studies have demonstrated that a novel anion exchanger, pendrin, is expressed in the apical domain of type B intercalated cells in the mammalian collecting duct. The purpose of this study was 1) to determine the expression and distribution of pendrin along the collecting duct and connecting tubule of mouse and rat kidney and establish whether pendrin is expressed in the non-A-non-B intercalated cells and 2) to determine the intracellular localization of pendrin in the different populations of intercalated cells by immunoelectron microscopy. A peptide-derived affinity-purified antibody was generated that specifically recognized pendrin in immunoblots of rat and mouse kidney. Immunohistochemistry and confocal laser scanning microscopy demonstrated the presence of pendrin in apical domains of all type B intercalated cells in mouse and rat connecting tubule and collecting duct. In addition, strong pendrin immunostaining was observed in non-A-non-B intercalated cells. There was no labeling of type A intercalated cells. Immunoelectron microscopy demonstrated that pendrin was located in the apical plasma membrane and intracellular vesicles of both type B intercalated cells and non-A-non-B cells; the latter was identified by the presence of H+-ATPase in the apical plasma membrane. The results of this study demonstrate that both pendrin and H+-ATPase are expressed in the apical plasma membrane of non-A-non-B intercalated cells, suggesting that these cells are capable of both HCO[Formula: see text] and proton secretion. Furthermore, the presence of pendrin in both the apical plasma membrane and the apical intracellular vesicles of type B and non-A-non-B intercalated cells suggests that HCO[Formula: see text] secretion may be regulated by trafficking of pendrin between the two membrane compartments.

Publisher

American Physiological Society

Subject

Physiology

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1. Chloride/Multiple Anion Exchanger SLC26A Family: Systemic Roles of SLC26A4 in Various Organs;International Journal of Molecular Sciences;2024-04-10

2. Angiotensin II acts through Rac1 to upregulate pendrin: role of NADPH oxidase;American Journal of Physiology-Renal Physiology;2024-02-01

3. Pendrin: linking acid base to blood pressure;Pflügers Archiv - European Journal of Physiology;2023-12-19

4. The K–Cl cotransporter-3 in the mammalian kidney;Current Opinion in Nephrology & Hypertension;2023-06-30

5. Loss of the Secretin Receptor Impairs Renal Bicarbonate Excretion and Aggravates Metabolic Alkalosis in Mice during Acute Base-Loading;Journal of the American Society of Nephrology;2023-06-22

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