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Renal Tubule Angiotensin II Type 1 Receptor–Associated Protein Promotes Natriuresis and Inhibits Salt‐Sensitive Blood Pressure Elevation

BACKGROUND: Angiotensin II type 1 receptor (AT1R)–associated protein (ATRAP; Agtrap gene) promotes AT1R internalization along with suppression of pathological AT1R activation. In this study, we examined whether enhancement of ATRAP in the renal distal tubules affects sodium handling and blood pressu...

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Autores principales: Wakui, Hiromichi, Uneda, Kazushi, Tamura, Kouichi, Ohsawa, Masato, Azushima, Kengo, Kobayashi, Ryu, Ohki, Kohji, Dejima, Toru, Kanaoka, Tomohiko, Tsurumi‐Ikeya, Yuko, Matsuda, Miyuki, Haruhara, Kotaro, Nishiyama, Akira, Yabana, Machiko, Fujikawa, Tetsuya, Yamashita, Akio, Umemura, Satoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4392439/
https://www.ncbi.nlm.nih.gov/pubmed/25792129
http://dx.doi.org/10.1161/JAHA.114.001594
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author Wakui, Hiromichi
Uneda, Kazushi
Tamura, Kouichi
Ohsawa, Masato
Azushima, Kengo
Kobayashi, Ryu
Ohki, Kohji
Dejima, Toru
Kanaoka, Tomohiko
Tsurumi‐Ikeya, Yuko
Matsuda, Miyuki
Haruhara, Kotaro
Nishiyama, Akira
Yabana, Machiko
Fujikawa, Tetsuya
Yamashita, Akio
Umemura, Satoshi
author_facet Wakui, Hiromichi
Uneda, Kazushi
Tamura, Kouichi
Ohsawa, Masato
Azushima, Kengo
Kobayashi, Ryu
Ohki, Kohji
Dejima, Toru
Kanaoka, Tomohiko
Tsurumi‐Ikeya, Yuko
Matsuda, Miyuki
Haruhara, Kotaro
Nishiyama, Akira
Yabana, Machiko
Fujikawa, Tetsuya
Yamashita, Akio
Umemura, Satoshi
author_sort Wakui, Hiromichi
collection PubMed
description BACKGROUND: Angiotensin II type 1 receptor (AT1R)–associated protein (ATRAP; Agtrap gene) promotes AT1R internalization along with suppression of pathological AT1R activation. In this study, we examined whether enhancement of ATRAP in the renal distal tubules affects sodium handling and blood pressure regulation in response to high salt (HS) loading, using ATRAP transgenic mice on a salt‐sensitive C57BL/6J background. METHODS AND RESULTS: Renal ATRAP transgenic (rATRAP‐Tg) mice, which exhibit renal tubule–dominant ATRAP enhancement, and their wild‐type littermate C57BL/6J mice on a normal salt diet (0.3% NaCl) at baseline were subjected to dietary HS loading (4% NaCl) for 7 days. In rATRAP‐Tg mice, the dietary HS loading–mediated blood pressure elevation was suppressed compared with wild‐type mice, despite similar baseline blood pressure. Although renal angiotensin II level was comparable in rATRAP‐Tg and wild‐type mice with and without HS loading, urinary sodium excretion in response to HS loading was significantly enhanced in the rATRAP‐Tg mice. In addition, functional transport activity of the amiloride‐sensitive epithelial Na(+) channel was significantly decreased under saline volume–expanded conditions in rATRAP‐Tg mice compared with wild‐type mice, without any evident change in epithelial Na(+) channel protein expression. Plasma membrane AT1R expression in the kidney of rATRAP‐Tg mice was decreased compared with wild‐type mice. CONCLUSIONS: These results demonstrated that distal tubule–dominant enhancement of ATRAP inhibits pathological renal sodium reabsorption and blood pressure elevation in response to HS loading. The findings suggest that ATRAP‐mediated modulation of sodium handling in renal distal tubules could be a target of interest in salt‐sensitive blood pressure regulation.
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spelling pubmed-43924392015-04-14 Renal Tubule Angiotensin II Type 1 Receptor–Associated Protein Promotes Natriuresis and Inhibits Salt‐Sensitive Blood Pressure Elevation Wakui, Hiromichi Uneda, Kazushi Tamura, Kouichi Ohsawa, Masato Azushima, Kengo Kobayashi, Ryu Ohki, Kohji Dejima, Toru Kanaoka, Tomohiko Tsurumi‐Ikeya, Yuko Matsuda, Miyuki Haruhara, Kotaro Nishiyama, Akira Yabana, Machiko Fujikawa, Tetsuya Yamashita, Akio Umemura, Satoshi J Am Heart Assoc Original Research BACKGROUND: Angiotensin II type 1 receptor (AT1R)–associated protein (ATRAP; Agtrap gene) promotes AT1R internalization along with suppression of pathological AT1R activation. In this study, we examined whether enhancement of ATRAP in the renal distal tubules affects sodium handling and blood pressure regulation in response to high salt (HS) loading, using ATRAP transgenic mice on a salt‐sensitive C57BL/6J background. METHODS AND RESULTS: Renal ATRAP transgenic (rATRAP‐Tg) mice, which exhibit renal tubule–dominant ATRAP enhancement, and their wild‐type littermate C57BL/6J mice on a normal salt diet (0.3% NaCl) at baseline were subjected to dietary HS loading (4% NaCl) for 7 days. In rATRAP‐Tg mice, the dietary HS loading–mediated blood pressure elevation was suppressed compared with wild‐type mice, despite similar baseline blood pressure. Although renal angiotensin II level was comparable in rATRAP‐Tg and wild‐type mice with and without HS loading, urinary sodium excretion in response to HS loading was significantly enhanced in the rATRAP‐Tg mice. In addition, functional transport activity of the amiloride‐sensitive epithelial Na(+) channel was significantly decreased under saline volume–expanded conditions in rATRAP‐Tg mice compared with wild‐type mice, without any evident change in epithelial Na(+) channel protein expression. Plasma membrane AT1R expression in the kidney of rATRAP‐Tg mice was decreased compared with wild‐type mice. CONCLUSIONS: These results demonstrated that distal tubule–dominant enhancement of ATRAP inhibits pathological renal sodium reabsorption and blood pressure elevation in response to HS loading. The findings suggest that ATRAP‐mediated modulation of sodium handling in renal distal tubules could be a target of interest in salt‐sensitive blood pressure regulation. Blackwell Publishing Ltd 2015-03-19 /pmc/articles/PMC4392439/ /pubmed/25792129 http://dx.doi.org/10.1161/JAHA.114.001594 Text en © 2015 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley Blackwell. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial (http://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Research
Wakui, Hiromichi
Uneda, Kazushi
Tamura, Kouichi
Ohsawa, Masato
Azushima, Kengo
Kobayashi, Ryu
Ohki, Kohji
Dejima, Toru
Kanaoka, Tomohiko
Tsurumi‐Ikeya, Yuko
Matsuda, Miyuki
Haruhara, Kotaro
Nishiyama, Akira
Yabana, Machiko
Fujikawa, Tetsuya
Yamashita, Akio
Umemura, Satoshi
Renal Tubule Angiotensin II Type 1 Receptor–Associated Protein Promotes Natriuresis and Inhibits Salt‐Sensitive Blood Pressure Elevation
title Renal Tubule Angiotensin II Type 1 Receptor–Associated Protein Promotes Natriuresis and Inhibits Salt‐Sensitive Blood Pressure Elevation
title_full Renal Tubule Angiotensin II Type 1 Receptor–Associated Protein Promotes Natriuresis and Inhibits Salt‐Sensitive Blood Pressure Elevation
title_fullStr Renal Tubule Angiotensin II Type 1 Receptor–Associated Protein Promotes Natriuresis and Inhibits Salt‐Sensitive Blood Pressure Elevation
title_full_unstemmed Renal Tubule Angiotensin II Type 1 Receptor–Associated Protein Promotes Natriuresis and Inhibits Salt‐Sensitive Blood Pressure Elevation
title_short Renal Tubule Angiotensin II Type 1 Receptor–Associated Protein Promotes Natriuresis and Inhibits Salt‐Sensitive Blood Pressure Elevation
title_sort renal tubule angiotensin ii type 1 receptor–associated protein promotes natriuresis and inhibits salt‐sensitive blood pressure elevation
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4392439/
https://www.ncbi.nlm.nih.gov/pubmed/25792129
http://dx.doi.org/10.1161/JAHA.114.001594
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