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Hsp90β is involved in the development of high salt-diet-induced nephropathy via interaction with various signalling proteins

A high-salt diet often leads to a local intrarenal increase in renal hypoxia and oxidative stress, which are responsible for an excess production of pathogenic substances. Here, Wistar Kyoto/spontaneous hypertensive (WKY/SHR) rats fed a high-salt diet developed severe proteinuria, resulting from pro...

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Autores principales: Yan, Shi-hai, Zhao, Ning-wei, Jiang, Wei-min, Wang, Xin-tong, Zhang, Si-qi, Zhu, Xuan-xuan, Zhang, Chun-bing, Gao, Yan-hong, Gao, Feng, Liu, Fu-ming, Fang, Zhu-yuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4852449/
https://www.ncbi.nlm.nih.gov/pubmed/27248656
http://dx.doi.org/10.1098/rsob.150159
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author Yan, Shi-hai
Zhao, Ning-wei
Jiang, Wei-min
Wang, Xin-tong
Zhang, Si-qi
Zhu, Xuan-xuan
Zhang, Chun-bing
Gao, Yan-hong
Gao, Feng
Liu, Fu-ming
Fang, Zhu-yuan
author_facet Yan, Shi-hai
Zhao, Ning-wei
Jiang, Wei-min
Wang, Xin-tong
Zhang, Si-qi
Zhu, Xuan-xuan
Zhang, Chun-bing
Gao, Yan-hong
Gao, Feng
Liu, Fu-ming
Fang, Zhu-yuan
author_sort Yan, Shi-hai
collection PubMed
description A high-salt diet often leads to a local intrarenal increase in renal hypoxia and oxidative stress, which are responsible for an excess production of pathogenic substances. Here, Wistar Kyoto/spontaneous hypertensive (WKY/SHR) rats fed a high-salt diet developed severe proteinuria, resulting from pronounced renal inflammation, fibrosis and tubular epithelial cell apoptosis. All these were mainly non-pressure-related effects. Hsp90β, TGF-β, HIF-1α, TNF-α, IL-6 and MCP-1 were shown to be highly expressed in response to salt loading. Next, we found that Hsp90β might play the key role in non-pressure-related effects of salt loading through a series of cellular signalling events, including the NF-κB, p38 activation and Bcl-2 inactivation. Hsp90β was previously proven to regulate the upstream mediators in multiple cellular signalling cascades through stabilizing and maintaining their activities. In our study, 17-dimethylaminoethylamino-17-demethoxygeldanamycin (17-DMAG) or Hsp90β knockdown dramatically alleviated the high-salt-diet-induced proteinuria and renal damage without altering blood pressure significantly, when it reversed activations of NF-κB, mTOR and p38 signalling cascades. Meanwhile, Co-IP results demonstrated that Hsp90β could interact with and stabilize TAK1, AMPKα, IKKα/β, HIF-1α and Raptor, whereas Hsp90β inhibition disrupted this process. In addition, Hsp90β inhibition-mediated renal improvements also accompanied the reduction of renal oxidative stress. In conclusion, salt loading indeed exhibited non-pressure-related impacts on proteinuria and renal dysfunction in WKY/SHR rats. Hsp90β inhibition caused the destabilization of upstream mediators in various pathogenic signalling events, thereby effectively ameliorating this nephropathy owing to renal hypoxia and oxidative stress.
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spelling pubmed-48524492016-05-05 Hsp90β is involved in the development of high salt-diet-induced nephropathy via interaction with various signalling proteins Yan, Shi-hai Zhao, Ning-wei Jiang, Wei-min Wang, Xin-tong Zhang, Si-qi Zhu, Xuan-xuan Zhang, Chun-bing Gao, Yan-hong Gao, Feng Liu, Fu-ming Fang, Zhu-yuan Open Biol Research A high-salt diet often leads to a local intrarenal increase in renal hypoxia and oxidative stress, which are responsible for an excess production of pathogenic substances. Here, Wistar Kyoto/spontaneous hypertensive (WKY/SHR) rats fed a high-salt diet developed severe proteinuria, resulting from pronounced renal inflammation, fibrosis and tubular epithelial cell apoptosis. All these were mainly non-pressure-related effects. Hsp90β, TGF-β, HIF-1α, TNF-α, IL-6 and MCP-1 were shown to be highly expressed in response to salt loading. Next, we found that Hsp90β might play the key role in non-pressure-related effects of salt loading through a series of cellular signalling events, including the NF-κB, p38 activation and Bcl-2 inactivation. Hsp90β was previously proven to regulate the upstream mediators in multiple cellular signalling cascades through stabilizing and maintaining their activities. In our study, 17-dimethylaminoethylamino-17-demethoxygeldanamycin (17-DMAG) or Hsp90β knockdown dramatically alleviated the high-salt-diet-induced proteinuria and renal damage without altering blood pressure significantly, when it reversed activations of NF-κB, mTOR and p38 signalling cascades. Meanwhile, Co-IP results demonstrated that Hsp90β could interact with and stabilize TAK1, AMPKα, IKKα/β, HIF-1α and Raptor, whereas Hsp90β inhibition disrupted this process. In addition, Hsp90β inhibition-mediated renal improvements also accompanied the reduction of renal oxidative stress. In conclusion, salt loading indeed exhibited non-pressure-related impacts on proteinuria and renal dysfunction in WKY/SHR rats. Hsp90β inhibition caused the destabilization of upstream mediators in various pathogenic signalling events, thereby effectively ameliorating this nephropathy owing to renal hypoxia and oxidative stress. The Royal Society 2016-04-20 /pmc/articles/PMC4852449/ /pubmed/27248656 http://dx.doi.org/10.1098/rsob.150159 Text en © 2016 The Authors. http://creativecommons.org/licenses/by/4.0/ Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Research
Yan, Shi-hai
Zhao, Ning-wei
Jiang, Wei-min
Wang, Xin-tong
Zhang, Si-qi
Zhu, Xuan-xuan
Zhang, Chun-bing
Gao, Yan-hong
Gao, Feng
Liu, Fu-ming
Fang, Zhu-yuan
Hsp90β is involved in the development of high salt-diet-induced nephropathy via interaction with various signalling proteins
title Hsp90β is involved in the development of high salt-diet-induced nephropathy via interaction with various signalling proteins
title_full Hsp90β is involved in the development of high salt-diet-induced nephropathy via interaction with various signalling proteins
title_fullStr Hsp90β is involved in the development of high salt-diet-induced nephropathy via interaction with various signalling proteins
title_full_unstemmed Hsp90β is involved in the development of high salt-diet-induced nephropathy via interaction with various signalling proteins
title_short Hsp90β is involved in the development of high salt-diet-induced nephropathy via interaction with various signalling proteins
title_sort hsp90β is involved in the development of high salt-diet-induced nephropathy via interaction with various signalling proteins
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4852449/
https://www.ncbi.nlm.nih.gov/pubmed/27248656
http://dx.doi.org/10.1098/rsob.150159
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