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Renal peroxiredoxin 6 interacts with anion exchanger 1 and plays a novel role in pH homeostasis

Peroxiredoxin 6 (PRDX6) is one of six members of the PRDX family, which have peroxidase and antioxidant activity. PRDX6 is unique, containing only one conserved cysteine residue (C47) rather than the two found in other PRDXs. A yeast two-hybrid screen found PRDX6 to be a potential binding partner of...

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Autores principales: Sorrell, Sara L., Golder, Zoe J., Johnstone, Duncan B., Frankl, Fiona E. Karet
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4705439/
https://www.ncbi.nlm.nih.gov/pubmed/26398495
http://dx.doi.org/10.1038/ki.2015.277
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author Sorrell, Sara L.
Golder, Zoe J.
Johnstone, Duncan B.
Frankl, Fiona E. Karet
author_facet Sorrell, Sara L.
Golder, Zoe J.
Johnstone, Duncan B.
Frankl, Fiona E. Karet
author_sort Sorrell, Sara L.
collection PubMed
description Peroxiredoxin 6 (PRDX6) is one of six members of the PRDX family, which have peroxidase and antioxidant activity. PRDX6 is unique, containing only one conserved cysteine residue (C47) rather than the two found in other PRDXs. A yeast two-hybrid screen found PRDX6 to be a potential binding partner of the C-terminal tail of anion exchanger 1 (AE1), a Cl(−)/HCO(3(−)) exchanger basolaterally expressed in renal α-intercalated cells. PRDX6 immunostaining in human kidney was both cytoplasmic and peripheral and co-localized with AE1. Analysis of native protein showed it was largely monomeric, whereas expressed tagged protein was more dimeric. Two methionine oxidation sites were identified. In vitro and ex vivo pulldowns and immunoprecipitation assays confirmed interaction with AE1, but mutation of the conserved cysteine resulted in loss of interaction. Prdx6 knockout mice had a baseline acidosis with a major respiratory component and greater AE1 expression than wild type animals. After an oral acid challenge, PRDX6 expression increased in wild type mice, with preservation of AE1. However, AE1 expression was significantly decreased in knockout animals. Kidneys from acidified mice showed widespread proximal tubular vacuolation in wild type but not knockout animals. Knockdown of PRDX6 by siRNA in mammalian cells reduced both total and cell membrane AE1 levels. Thus, PRDX6-AE1 interaction contributes to maintenance of AE1 during cellular stress such as during metabolic acidosis.
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spelling pubmed-47054392016-07-04 Renal peroxiredoxin 6 interacts with anion exchanger 1 and plays a novel role in pH homeostasis Sorrell, Sara L. Golder, Zoe J. Johnstone, Duncan B. Frankl, Fiona E. Karet Kidney Int Article Peroxiredoxin 6 (PRDX6) is one of six members of the PRDX family, which have peroxidase and antioxidant activity. PRDX6 is unique, containing only one conserved cysteine residue (C47) rather than the two found in other PRDXs. A yeast two-hybrid screen found PRDX6 to be a potential binding partner of the C-terminal tail of anion exchanger 1 (AE1), a Cl(−)/HCO(3(−)) exchanger basolaterally expressed in renal α-intercalated cells. PRDX6 immunostaining in human kidney was both cytoplasmic and peripheral and co-localized with AE1. Analysis of native protein showed it was largely monomeric, whereas expressed tagged protein was more dimeric. Two methionine oxidation sites were identified. In vitro and ex vivo pulldowns and immunoprecipitation assays confirmed interaction with AE1, but mutation of the conserved cysteine resulted in loss of interaction. Prdx6 knockout mice had a baseline acidosis with a major respiratory component and greater AE1 expression than wild type animals. After an oral acid challenge, PRDX6 expression increased in wild type mice, with preservation of AE1. However, AE1 expression was significantly decreased in knockout animals. Kidneys from acidified mice showed widespread proximal tubular vacuolation in wild type but not knockout animals. Knockdown of PRDX6 by siRNA in mammalian cells reduced both total and cell membrane AE1 levels. Thus, PRDX6-AE1 interaction contributes to maintenance of AE1 during cellular stress such as during metabolic acidosis. 2016-01-04 2016-01 /pmc/articles/PMC4705439/ /pubmed/26398495 http://dx.doi.org/10.1038/ki.2015.277 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Sorrell, Sara L.
Golder, Zoe J.
Johnstone, Duncan B.
Frankl, Fiona E. Karet
Renal peroxiredoxin 6 interacts with anion exchanger 1 and plays a novel role in pH homeostasis
title Renal peroxiredoxin 6 interacts with anion exchanger 1 and plays a novel role in pH homeostasis
title_full Renal peroxiredoxin 6 interacts with anion exchanger 1 and plays a novel role in pH homeostasis
title_fullStr Renal peroxiredoxin 6 interacts with anion exchanger 1 and plays a novel role in pH homeostasis
title_full_unstemmed Renal peroxiredoxin 6 interacts with anion exchanger 1 and plays a novel role in pH homeostasis
title_short Renal peroxiredoxin 6 interacts with anion exchanger 1 and plays a novel role in pH homeostasis
title_sort renal peroxiredoxin 6 interacts with anion exchanger 1 and plays a novel role in ph homeostasis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4705439/
https://www.ncbi.nlm.nih.gov/pubmed/26398495
http://dx.doi.org/10.1038/ki.2015.277
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