Cargando…

SPAK Deficiency Corrects Pseudohypoaldosteronism II Caused by WNK4 Mutation

Stimulation of the OSR1 (Oxidative stress-responsive kinase-1)/SPAK [STE20 (sterile 20)/SPS1-related proline/alanine-rich kinase]-NCC (Na(+)-Cl(−) cotransporter) signaling cascade plays an important role in the WNK [With-No-Lysine (K)] kinase 4 D561A knock-in mouse model of pseudohypoaldosteronism t...

Descripción completa

Detalles Bibliográficos
Autores principales: Chu, Pei-Yi, Cheng, Chih-Jen, Wu, Yi-Chang, Fang, Yu-Wei, Chau, Tom, Uchida, Shinichi, Sasaki, Sei, Yang, Sung-Sen, Lin, Shih-Hua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3770638/
https://www.ncbi.nlm.nih.gov/pubmed/24039833
http://dx.doi.org/10.1371/journal.pone.0072969
_version_ 1782284120308580352
author Chu, Pei-Yi
Cheng, Chih-Jen
Wu, Yi-Chang
Fang, Yu-Wei
Chau, Tom
Uchida, Shinichi
Sasaki, Sei
Yang, Sung-Sen
Lin, Shih-Hua
author_facet Chu, Pei-Yi
Cheng, Chih-Jen
Wu, Yi-Chang
Fang, Yu-Wei
Chau, Tom
Uchida, Shinichi
Sasaki, Sei
Yang, Sung-Sen
Lin, Shih-Hua
author_sort Chu, Pei-Yi
collection PubMed
description Stimulation of the OSR1 (Oxidative stress-responsive kinase-1)/SPAK [STE20 (sterile 20)/SPS1-related proline/alanine-rich kinase]-NCC (Na(+)-Cl(−) cotransporter) signaling cascade plays an important role in the WNK [With-No-Lysine (K)] kinase 4 D561A knock-in mouse model of pseudohypoaldosteronism type II (PHA II) characterized by salt-sensitive hypertension and hyperkalemia. The aim of this study was to investigate the respective roles of Osr1 and Spak in the pathogenesis of PHA II in vivo. Wnk4 (D561A/+) mice were crossed with kidney tubule-specific (KSP) Osr1 knockout (KSP-Osr1 (−/−)) and Spak knockout (Spak (−/−)) mice. Blood pressure, plasma and urine biochemistries, and the relevant protein expression in the kidneys were examined. Wnk4 (D561A/+), KSP-Osr1 (−/−), and Spak (−/−) mice recapitulated the phenotypes of PHA II, Bartter-like syndrome, and Gitelman syndrome, respectively. Wnk4 (D561A/+).KSP-Osr1 (−/−) remained phenotypically PHA II while Wnk4 (D561A/+).Spak (−/−) mice became normotensive and lacked the PHA II phenotype. Phosphorylated Spak and Ncc were similarly increased in both Wnk4 (D561A/+) and Wnk4 (D561A/+).KSP-Osr1 (−/−) mice while phosphorylated Ncc normalized in Wnk4 (D561A/+).Spak (−/−) mice. Furthermore, Wnk4 (D561A/+).KSP-Osr1 (−/−) mice exhibited exaggerated salt excretion in response to thiazide diuretics while Wnk4 (D561A/+).Spak (−/−) mice exhibited normal responses. Wnk4(D561A/+).Spak (−/−).KSP-Osr1 (−/−) triple mutant mice had low blood pressure and diminished phosphorylated Ncc. Both SPAK and OSR1 are important in the maintenance of blood pressure but activation of SPAK-NCC plays the dominant role in PHA II. SPAK may be a therapeutic target for disorders with salt-sensitive hypertension related to WNK4 activation.
format Online
Article
Text
id pubmed-3770638
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37706382013-09-13 SPAK Deficiency Corrects Pseudohypoaldosteronism II Caused by WNK4 Mutation Chu, Pei-Yi Cheng, Chih-Jen Wu, Yi-Chang Fang, Yu-Wei Chau, Tom Uchida, Shinichi Sasaki, Sei Yang, Sung-Sen Lin, Shih-Hua PLoS One Research Article Stimulation of the OSR1 (Oxidative stress-responsive kinase-1)/SPAK [STE20 (sterile 20)/SPS1-related proline/alanine-rich kinase]-NCC (Na(+)-Cl(−) cotransporter) signaling cascade plays an important role in the WNK [With-No-Lysine (K)] kinase 4 D561A knock-in mouse model of pseudohypoaldosteronism type II (PHA II) characterized by salt-sensitive hypertension and hyperkalemia. The aim of this study was to investigate the respective roles of Osr1 and Spak in the pathogenesis of PHA II in vivo. Wnk4 (D561A/+) mice were crossed with kidney tubule-specific (KSP) Osr1 knockout (KSP-Osr1 (−/−)) and Spak knockout (Spak (−/−)) mice. Blood pressure, plasma and urine biochemistries, and the relevant protein expression in the kidneys were examined. Wnk4 (D561A/+), KSP-Osr1 (−/−), and Spak (−/−) mice recapitulated the phenotypes of PHA II, Bartter-like syndrome, and Gitelman syndrome, respectively. Wnk4 (D561A/+).KSP-Osr1 (−/−) remained phenotypically PHA II while Wnk4 (D561A/+).Spak (−/−) mice became normotensive and lacked the PHA II phenotype. Phosphorylated Spak and Ncc were similarly increased in both Wnk4 (D561A/+) and Wnk4 (D561A/+).KSP-Osr1 (−/−) mice while phosphorylated Ncc normalized in Wnk4 (D561A/+).Spak (−/−) mice. Furthermore, Wnk4 (D561A/+).KSP-Osr1 (−/−) mice exhibited exaggerated salt excretion in response to thiazide diuretics while Wnk4 (D561A/+).Spak (−/−) mice exhibited normal responses. Wnk4(D561A/+).Spak (−/−).KSP-Osr1 (−/−) triple mutant mice had low blood pressure and diminished phosphorylated Ncc. Both SPAK and OSR1 are important in the maintenance of blood pressure but activation of SPAK-NCC plays the dominant role in PHA II. SPAK may be a therapeutic target for disorders with salt-sensitive hypertension related to WNK4 activation. Public Library of Science 2013-09-11 /pmc/articles/PMC3770638/ /pubmed/24039833 http://dx.doi.org/10.1371/journal.pone.0072969 Text en © 2013 Chu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Chu, Pei-Yi
Cheng, Chih-Jen
Wu, Yi-Chang
Fang, Yu-Wei
Chau, Tom
Uchida, Shinichi
Sasaki, Sei
Yang, Sung-Sen
Lin, Shih-Hua
SPAK Deficiency Corrects Pseudohypoaldosteronism II Caused by WNK4 Mutation
title SPAK Deficiency Corrects Pseudohypoaldosteronism II Caused by WNK4 Mutation
title_full SPAK Deficiency Corrects Pseudohypoaldosteronism II Caused by WNK4 Mutation
title_fullStr SPAK Deficiency Corrects Pseudohypoaldosteronism II Caused by WNK4 Mutation
title_full_unstemmed SPAK Deficiency Corrects Pseudohypoaldosteronism II Caused by WNK4 Mutation
title_short SPAK Deficiency Corrects Pseudohypoaldosteronism II Caused by WNK4 Mutation
title_sort spak deficiency corrects pseudohypoaldosteronism ii caused by wnk4 mutation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3770638/
https://www.ncbi.nlm.nih.gov/pubmed/24039833
http://dx.doi.org/10.1371/journal.pone.0072969
work_keys_str_mv AT chupeiyi spakdeficiencycorrectspseudohypoaldosteronismiicausedbywnk4mutation
AT chengchihjen spakdeficiencycorrectspseudohypoaldosteronismiicausedbywnk4mutation
AT wuyichang spakdeficiencycorrectspseudohypoaldosteronismiicausedbywnk4mutation
AT fangyuwei spakdeficiencycorrectspseudohypoaldosteronismiicausedbywnk4mutation
AT chautom spakdeficiencycorrectspseudohypoaldosteronismiicausedbywnk4mutation
AT uchidashinichi spakdeficiencycorrectspseudohypoaldosteronismiicausedbywnk4mutation
AT sasakisei spakdeficiencycorrectspseudohypoaldosteronismiicausedbywnk4mutation
AT yangsungsen spakdeficiencycorrectspseudohypoaldosteronismiicausedbywnk4mutation
AT linshihhua spakdeficiencycorrectspseudohypoaldosteronismiicausedbywnk4mutation