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Role of ClC-K and barttin in low potassium-induced sodium chloride cotransporter activation and hypertension in mouse kidney

The sodium chloride cotransporter (NCC) has been identified as a key molecule regulating potassium balance. The mechanisms of NCC regulation during low extracellular potassium concentrations have been studied in vitro. These studies have shown that hyperpolarization increased chloride efflux, leadin...

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Autores principales: Nomura, Naohiro, Shoda, Wakana, Wang, Yuanlong, Mandai, Shintaro, Furusho, Taisuke, Takahashi, Daiei, Zeniya, Moko, Sohara, Eisei, Rai, Tatemitsu, Uchida, Shinichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5789154/
https://www.ncbi.nlm.nih.gov/pubmed/29326302
http://dx.doi.org/10.1042/BSR20171243
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author Nomura, Naohiro
Shoda, Wakana
Wang, Yuanlong
Mandai, Shintaro
Furusho, Taisuke
Takahashi, Daiei
Zeniya, Moko
Sohara, Eisei
Rai, Tatemitsu
Uchida, Shinichi
author_facet Nomura, Naohiro
Shoda, Wakana
Wang, Yuanlong
Mandai, Shintaro
Furusho, Taisuke
Takahashi, Daiei
Zeniya, Moko
Sohara, Eisei
Rai, Tatemitsu
Uchida, Shinichi
author_sort Nomura, Naohiro
collection PubMed
description The sodium chloride cotransporter (NCC) has been identified as a key molecule regulating potassium balance. The mechanisms of NCC regulation during low extracellular potassium concentrations have been studied in vitro. These studies have shown that hyperpolarization increased chloride efflux, leading to the activation of chloride-sensitive with-no-lysine kinase (WNK) kinases and their downstream molecules, including STE20/SPS1-related proline/alanine-rich kinase (SPAK) and NCC. However, this mechanism was not studied in vivo. Previously, we developed the barttin hypomorphic mouse (Bsnd(neo/neo) mice), expressing very low levels of barttin and ClC-K channels, because barttin is an essential β-subunit of ClC-K. In contrast with Bsnd(−/−) mice, Bsnd(neo/neo) mice survived to adulthood. In Bsnd(neo/neo) mice, SPAK and NCC activation after consuming a low-potassium diet was clearly impaired compared with that in wild-type (WT) mice. In ex vivo kidney slice experiment, the increase in pNCC and SPAK in low-potassium medium was also impaired in Bsnd(neo/neo) mice. Furthermore, increased blood pressure was observed in WT mice fed a high-salt and low-potassium diet, which was not evident in Bsnd(neo/neo) mice. Thus, our study provides in vivo evidence that, in response to a low-potassium diet, ClC-K and barttin play important roles in the activation of the WNK4-SPAK-NCC cascade and blood pressure regulation.
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spelling pubmed-57891542018-02-09 Role of ClC-K and barttin in low potassium-induced sodium chloride cotransporter activation and hypertension in mouse kidney Nomura, Naohiro Shoda, Wakana Wang, Yuanlong Mandai, Shintaro Furusho, Taisuke Takahashi, Daiei Zeniya, Moko Sohara, Eisei Rai, Tatemitsu Uchida, Shinichi Biosci Rep Research Articles The sodium chloride cotransporter (NCC) has been identified as a key molecule regulating potassium balance. The mechanisms of NCC regulation during low extracellular potassium concentrations have been studied in vitro. These studies have shown that hyperpolarization increased chloride efflux, leading to the activation of chloride-sensitive with-no-lysine kinase (WNK) kinases and their downstream molecules, including STE20/SPS1-related proline/alanine-rich kinase (SPAK) and NCC. However, this mechanism was not studied in vivo. Previously, we developed the barttin hypomorphic mouse (Bsnd(neo/neo) mice), expressing very low levels of barttin and ClC-K channels, because barttin is an essential β-subunit of ClC-K. In contrast with Bsnd(−/−) mice, Bsnd(neo/neo) mice survived to adulthood. In Bsnd(neo/neo) mice, SPAK and NCC activation after consuming a low-potassium diet was clearly impaired compared with that in wild-type (WT) mice. In ex vivo kidney slice experiment, the increase in pNCC and SPAK in low-potassium medium was also impaired in Bsnd(neo/neo) mice. Furthermore, increased blood pressure was observed in WT mice fed a high-salt and low-potassium diet, which was not evident in Bsnd(neo/neo) mice. Thus, our study provides in vivo evidence that, in response to a low-potassium diet, ClC-K and barttin play important roles in the activation of the WNK4-SPAK-NCC cascade and blood pressure regulation. Portland Press Ltd. 2018-01-30 /pmc/articles/PMC5789154/ /pubmed/29326302 http://dx.doi.org/10.1042/BSR20171243 Text en © 2018 The Author(s). http://creativecommons.org/licenses/by/4.0/This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY) (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Articles
Nomura, Naohiro
Shoda, Wakana
Wang, Yuanlong
Mandai, Shintaro
Furusho, Taisuke
Takahashi, Daiei
Zeniya, Moko
Sohara, Eisei
Rai, Tatemitsu
Uchida, Shinichi
Role of ClC-K and barttin in low potassium-induced sodium chloride cotransporter activation and hypertension in mouse kidney
title Role of ClC-K and barttin in low potassium-induced sodium chloride cotransporter activation and hypertension in mouse kidney
title_full Role of ClC-K and barttin in low potassium-induced sodium chloride cotransporter activation and hypertension in mouse kidney
title_fullStr Role of ClC-K and barttin in low potassium-induced sodium chloride cotransporter activation and hypertension in mouse kidney
title_full_unstemmed Role of ClC-K and barttin in low potassium-induced sodium chloride cotransporter activation and hypertension in mouse kidney
title_short Role of ClC-K and barttin in low potassium-induced sodium chloride cotransporter activation and hypertension in mouse kidney
title_sort role of clc-k and barttin in low potassium-induced sodium chloride cotransporter activation and hypertension in mouse kidney
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5789154/
https://www.ncbi.nlm.nih.gov/pubmed/29326302
http://dx.doi.org/10.1042/BSR20171243
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