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Interaction of PPARα With the Canonic Wnt Pathway in the Regulation of Renal Fibrosis
Peroxisome proliferator–activated receptor-α (PPARα) displays renoprotective effects with an unclear mechanism. Aberrant activation of the canonical Wnt pathway plays a key role in renal fibrosis. Renal levels of PPARα were downregulated in both type 1 and type 2 diabetes models. The PPARα agonist f...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Diabetes Association
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5127249/ https://www.ncbi.nlm.nih.gov/pubmed/27543085 http://dx.doi.org/10.2337/db16-0426 |
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author | Cheng, Rui Ding, Lexi He, Xuemin Takahashi, Yusuke Ma, Jian-xing |
author_facet | Cheng, Rui Ding, Lexi He, Xuemin Takahashi, Yusuke Ma, Jian-xing |
author_sort | Cheng, Rui |
collection | PubMed |
description | Peroxisome proliferator–activated receptor-α (PPARα) displays renoprotective effects with an unclear mechanism. Aberrant activation of the canonical Wnt pathway plays a key role in renal fibrosis. Renal levels of PPARα were downregulated in both type 1 and type 2 diabetes models. The PPARα agonist fenofibrate and overexpression of PPARα both attenuated the expression of fibrotic factors, and suppressed high glucose–induced or Wnt3a-induced Wnt signaling in renal cells. Fenofibrate inhibited Wnt signaling in the kidney of diabetic rats. A more renal prominent activation of Wnt signaling was detected both in PPARα(−/−) mice with diabetes or obstructive nephropathy and in PPARα(−/−) tubular cells treated with Wnt3a. PPARα did not block the transcriptional activity of β-catenin induced by a constitutively active mutant of lipoprotein receptor–related protein 6 (LRP6) or β-catenin. LRP6 stability was decreased by overexpression of PPARα and increased in PPARα(−/−) tubular cells, suggesting that PPARα interacts with Wnt signaling at the Wnt coreceptor level. 4-Hydroxynonenal–induced reactive oxygen species production, which resulted in LRP6 stability, was suppressed by overexpression of PPARα and dramatically enhanced in PPARα(−/−) tubular cells. Diabetic PPARα(−/−) mice showed more prominent NADPH oxidase-4 overexpression compared with diabetic wild-type mice, suggesting that the inhibitory effect of PPARα on Wnt signaling may be ascribed to its antioxidant activity. These observations identified a novel interaction between PPARα and the Wnt pathway, which is responsible, at least partially, for the therapeutic effects of fenofibrate on diabetic nephropathy. |
format | Online Article Text |
id | pubmed-5127249 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | American Diabetes Association |
record_format | MEDLINE/PubMed |
spelling | pubmed-51272492017-12-01 Interaction of PPARα With the Canonic Wnt Pathway in the Regulation of Renal Fibrosis Cheng, Rui Ding, Lexi He, Xuemin Takahashi, Yusuke Ma, Jian-xing Diabetes Complications Peroxisome proliferator–activated receptor-α (PPARα) displays renoprotective effects with an unclear mechanism. Aberrant activation of the canonical Wnt pathway plays a key role in renal fibrosis. Renal levels of PPARα were downregulated in both type 1 and type 2 diabetes models. The PPARα agonist fenofibrate and overexpression of PPARα both attenuated the expression of fibrotic factors, and suppressed high glucose–induced or Wnt3a-induced Wnt signaling in renal cells. Fenofibrate inhibited Wnt signaling in the kidney of diabetic rats. A more renal prominent activation of Wnt signaling was detected both in PPARα(−/−) mice with diabetes or obstructive nephropathy and in PPARα(−/−) tubular cells treated with Wnt3a. PPARα did not block the transcriptional activity of β-catenin induced by a constitutively active mutant of lipoprotein receptor–related protein 6 (LRP6) or β-catenin. LRP6 stability was decreased by overexpression of PPARα and increased in PPARα(−/−) tubular cells, suggesting that PPARα interacts with Wnt signaling at the Wnt coreceptor level. 4-Hydroxynonenal–induced reactive oxygen species production, which resulted in LRP6 stability, was suppressed by overexpression of PPARα and dramatically enhanced in PPARα(−/−) tubular cells. Diabetic PPARα(−/−) mice showed more prominent NADPH oxidase-4 overexpression compared with diabetic wild-type mice, suggesting that the inhibitory effect of PPARα on Wnt signaling may be ascribed to its antioxidant activity. These observations identified a novel interaction between PPARα and the Wnt pathway, which is responsible, at least partially, for the therapeutic effects of fenofibrate on diabetic nephropathy. American Diabetes Association 2016-12 2016-08-19 /pmc/articles/PMC5127249/ /pubmed/27543085 http://dx.doi.org/10.2337/db16-0426 Text en © 2016 by the American Diabetes Association. http://www.diabetesjournals.org/content/licenseReaders may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. More information is available at http://www.diabetesjournals.org/content/license. |
spellingShingle | Complications Cheng, Rui Ding, Lexi He, Xuemin Takahashi, Yusuke Ma, Jian-xing Interaction of PPARα With the Canonic Wnt Pathway in the Regulation of Renal Fibrosis |
title | Interaction of PPARα With the Canonic Wnt Pathway in the Regulation of Renal Fibrosis |
title_full | Interaction of PPARα With the Canonic Wnt Pathway in the Regulation of Renal Fibrosis |
title_fullStr | Interaction of PPARα With the Canonic Wnt Pathway in the Regulation of Renal Fibrosis |
title_full_unstemmed | Interaction of PPARα With the Canonic Wnt Pathway in the Regulation of Renal Fibrosis |
title_short | Interaction of PPARα With the Canonic Wnt Pathway in the Regulation of Renal Fibrosis |
title_sort | interaction of pparα with the canonic wnt pathway in the regulation of renal fibrosis |
topic | Complications |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5127249/ https://www.ncbi.nlm.nih.gov/pubmed/27543085 http://dx.doi.org/10.2337/db16-0426 |
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