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Conditional Deletion of Smad1 Ameliorates Glomerular Injury in Progressive Glomerulonephritis

Matrix expansion and cell proliferation are concomitantly observed in various glomerular injuries. However, the molecular mechanisms responsible for these changes have not been fully elucidated. We have reported that Smad1 is a key signalling molecule that regulates the transcription of type IV coll...

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Autores principales: Araki, Makoto, Matsubara, Takeshi, Abe, Hideharu, Torikoshi, Kazuo, Mima, Akira, Iehara, Noriyuki, Fukatsu, Atsushi, Kita, Toru, Arai, Hidenori, Doi, Toshio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4974558/
https://www.ncbi.nlm.nih.gov/pubmed/27492138
http://dx.doi.org/10.1038/srep31216
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author Araki, Makoto
Matsubara, Takeshi
Abe, Hideharu
Torikoshi, Kazuo
Mima, Akira
Iehara, Noriyuki
Fukatsu, Atsushi
Kita, Toru
Arai, Hidenori
Doi, Toshio
author_facet Araki, Makoto
Matsubara, Takeshi
Abe, Hideharu
Torikoshi, Kazuo
Mima, Akira
Iehara, Noriyuki
Fukatsu, Atsushi
Kita, Toru
Arai, Hidenori
Doi, Toshio
author_sort Araki, Makoto
collection PubMed
description Matrix expansion and cell proliferation are concomitantly observed in various glomerular injuries. However, the molecular mechanisms responsible for these changes have not been fully elucidated. We have reported that Smad1 is a key signalling molecule that regulates the transcription of type IV collagen (Col4) in mesangial matrix expansion and is thereby involved in glomerular injury in an acute model of glomerulonephritis. In this study, we addressed the role of Smad1 signalling in accelerated nephrotoxic nephritis (NTN), a model of progressive glomerulonephritis, using conditional deletion of Smad1 in Rosa26CreERT2 mice (Smad1-CKO). Mesangial matrix expansion in the Smad1-CKO mice with NTN was significantly inhibited compared with that in wild type mice with NTN, which was consistent with the decrease in Col4 expression level. On the other hand, STAT3 activation and cell proliferation were not influenced by Smad1 deletion in the NTN model. Therefore, we investigated another factor that activates cell proliferation in the absence of Smad1. Id2 induced VEGF secretion and subsequent STAT3 activation, independently of Smad1 expression in mouse mesangial cells. Here we show that Smad1 plays an important role in the development of glomerular injury without affecting cell proliferation, in progressive glomerulonephritis.
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spelling pubmed-49745582016-08-12 Conditional Deletion of Smad1 Ameliorates Glomerular Injury in Progressive Glomerulonephritis Araki, Makoto Matsubara, Takeshi Abe, Hideharu Torikoshi, Kazuo Mima, Akira Iehara, Noriyuki Fukatsu, Atsushi Kita, Toru Arai, Hidenori Doi, Toshio Sci Rep Article Matrix expansion and cell proliferation are concomitantly observed in various glomerular injuries. However, the molecular mechanisms responsible for these changes have not been fully elucidated. We have reported that Smad1 is a key signalling molecule that regulates the transcription of type IV collagen (Col4) in mesangial matrix expansion and is thereby involved in glomerular injury in an acute model of glomerulonephritis. In this study, we addressed the role of Smad1 signalling in accelerated nephrotoxic nephritis (NTN), a model of progressive glomerulonephritis, using conditional deletion of Smad1 in Rosa26CreERT2 mice (Smad1-CKO). Mesangial matrix expansion in the Smad1-CKO mice with NTN was significantly inhibited compared with that in wild type mice with NTN, which was consistent with the decrease in Col4 expression level. On the other hand, STAT3 activation and cell proliferation were not influenced by Smad1 deletion in the NTN model. Therefore, we investigated another factor that activates cell proliferation in the absence of Smad1. Id2 induced VEGF secretion and subsequent STAT3 activation, independently of Smad1 expression in mouse mesangial cells. Here we show that Smad1 plays an important role in the development of glomerular injury without affecting cell proliferation, in progressive glomerulonephritis. Nature Publishing Group 2016-08-05 /pmc/articles/PMC4974558/ /pubmed/27492138 http://dx.doi.org/10.1038/srep31216 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Araki, Makoto
Matsubara, Takeshi
Abe, Hideharu
Torikoshi, Kazuo
Mima, Akira
Iehara, Noriyuki
Fukatsu, Atsushi
Kita, Toru
Arai, Hidenori
Doi, Toshio
Conditional Deletion of Smad1 Ameliorates Glomerular Injury in Progressive Glomerulonephritis
title Conditional Deletion of Smad1 Ameliorates Glomerular Injury in Progressive Glomerulonephritis
title_full Conditional Deletion of Smad1 Ameliorates Glomerular Injury in Progressive Glomerulonephritis
title_fullStr Conditional Deletion of Smad1 Ameliorates Glomerular Injury in Progressive Glomerulonephritis
title_full_unstemmed Conditional Deletion of Smad1 Ameliorates Glomerular Injury in Progressive Glomerulonephritis
title_short Conditional Deletion of Smad1 Ameliorates Glomerular Injury in Progressive Glomerulonephritis
title_sort conditional deletion of smad1 ameliorates glomerular injury in progressive glomerulonephritis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4974558/
https://www.ncbi.nlm.nih.gov/pubmed/27492138
http://dx.doi.org/10.1038/srep31216
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