Cargando…

The crystallin alpha B (HSPB5)-tripartite motif containing 33 (TRIM33) axis mediates myocardial fibrosis induced by angiotensinogen II through transforming growth factor-β (TGF-β1)-Smad3/4 signaling

Myocardial fibrosis, a common pathological manifestation of cardiac remodeling (CR), often leads to heart failure (HF) and even death. The underlying molecular mechanism of the role of TRIM33 in Ang II–induced myocardial fibrosis is not fully understood. We found that TRIM33 was specifically upregul...

Descripción completa

Detalles Bibliográficos
Autores principales: Wei, Tianwen, Du, Yingqiang, Shan, Tiankai, Chen, Jiawen, Shi, Dongwei, Yang, Tongtong, Wang, Jiankang, Zhang, Jun, Li, Yafei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9161881/
https://www.ncbi.nlm.nih.gov/pubmed/35333698
http://dx.doi.org/10.1080/21655979.2022.2054913
_version_ 1784719575851466752
author Wei, Tianwen
Du, Yingqiang
Shan, Tiankai
Chen, Jiawen
Shi, Dongwei
Yang, Tongtong
Wang, Jiankang
Zhang, Jun
Li, Yafei
author_facet Wei, Tianwen
Du, Yingqiang
Shan, Tiankai
Chen, Jiawen
Shi, Dongwei
Yang, Tongtong
Wang, Jiankang
Zhang, Jun
Li, Yafei
author_sort Wei, Tianwen
collection PubMed
description Myocardial fibrosis, a common pathological manifestation of cardiac remodeling (CR), often leads to heart failure (HF) and even death. The underlying molecular mechanism of the role of TRIM33 in Ang II–induced myocardial fibrosis is not fully understood. We found that TRIM33 was specifically upregulated in CFs and myocardial tissue after Ang II stimulation. Adult mice induced by Ang II were used as in vivo models, and Ang II–induced neonatal mouse primary cardiac fibroblasts (CFs) were used as in vitro models. The level of CF fibrosis in vitro was assessed by CF proliferation, migration, activation and extracellular matrix (ECM) synthesis. In addition, Masson staining, the heart weight/body weight (HW/BW) ratio and echocardiography were used to evaluate the in vivo effect of TRIM33. TRIM33 expression was specifically upregulated in CFs and myocardial tissue after Ang II stimulation. In in vitro experiments, we found that TRIM33 knockdown promoted Ang II–induced CF proliferation, while TRIM33 overexpression weakened Ang II–induced CF proliferation, migration, activation and collagen synthesis. Mechanistically, we showed that TRIM33, negatively regulated by HSPB5, mediated its antifibrotic effect by inhibiting the activation of TGF-β1 and its downstream genes, Smad3 and Smad4. Finally, TRIM33 overexpression suppressed fibrosis and promoted cardiac repair and functional recovery in Ang II–induced mice. Our results clearly establish that TRIM33 limits cardiac fibrosis by hindering CF proliferation, migration, activation and collagen synthesis. Enhancing these beneficial functions of TRIM33 by a targeting vector might be a novel therapeutic strategy for CR.
format Online
Article
Text
id pubmed-9161881
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Taylor & Francis
record_format MEDLINE/PubMed
spelling pubmed-91618812022-06-03 The crystallin alpha B (HSPB5)-tripartite motif containing 33 (TRIM33) axis mediates myocardial fibrosis induced by angiotensinogen II through transforming growth factor-β (TGF-β1)-Smad3/4 signaling Wei, Tianwen Du, Yingqiang Shan, Tiankai Chen, Jiawen Shi, Dongwei Yang, Tongtong Wang, Jiankang Zhang, Jun Li, Yafei Bioengineered Research Paper Myocardial fibrosis, a common pathological manifestation of cardiac remodeling (CR), often leads to heart failure (HF) and even death. The underlying molecular mechanism of the role of TRIM33 in Ang II–induced myocardial fibrosis is not fully understood. We found that TRIM33 was specifically upregulated in CFs and myocardial tissue after Ang II stimulation. Adult mice induced by Ang II were used as in vivo models, and Ang II–induced neonatal mouse primary cardiac fibroblasts (CFs) were used as in vitro models. The level of CF fibrosis in vitro was assessed by CF proliferation, migration, activation and extracellular matrix (ECM) synthesis. In addition, Masson staining, the heart weight/body weight (HW/BW) ratio and echocardiography were used to evaluate the in vivo effect of TRIM33. TRIM33 expression was specifically upregulated in CFs and myocardial tissue after Ang II stimulation. In in vitro experiments, we found that TRIM33 knockdown promoted Ang II–induced CF proliferation, while TRIM33 overexpression weakened Ang II–induced CF proliferation, migration, activation and collagen synthesis. Mechanistically, we showed that TRIM33, negatively regulated by HSPB5, mediated its antifibrotic effect by inhibiting the activation of TGF-β1 and its downstream genes, Smad3 and Smad4. Finally, TRIM33 overexpression suppressed fibrosis and promoted cardiac repair and functional recovery in Ang II–induced mice. Our results clearly establish that TRIM33 limits cardiac fibrosis by hindering CF proliferation, migration, activation and collagen synthesis. Enhancing these beneficial functions of TRIM33 by a targeting vector might be a novel therapeutic strategy for CR. Taylor & Francis 2022-03-25 /pmc/articles/PMC9161881/ /pubmed/35333698 http://dx.doi.org/10.1080/21655979.2022.2054913 Text en © 2022 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Wei, Tianwen
Du, Yingqiang
Shan, Tiankai
Chen, Jiawen
Shi, Dongwei
Yang, Tongtong
Wang, Jiankang
Zhang, Jun
Li, Yafei
The crystallin alpha B (HSPB5)-tripartite motif containing 33 (TRIM33) axis mediates myocardial fibrosis induced by angiotensinogen II through transforming growth factor-β (TGF-β1)-Smad3/4 signaling
title The crystallin alpha B (HSPB5)-tripartite motif containing 33 (TRIM33) axis mediates myocardial fibrosis induced by angiotensinogen II through transforming growth factor-β (TGF-β1)-Smad3/4 signaling
title_full The crystallin alpha B (HSPB5)-tripartite motif containing 33 (TRIM33) axis mediates myocardial fibrosis induced by angiotensinogen II through transforming growth factor-β (TGF-β1)-Smad3/4 signaling
title_fullStr The crystallin alpha B (HSPB5)-tripartite motif containing 33 (TRIM33) axis mediates myocardial fibrosis induced by angiotensinogen II through transforming growth factor-β (TGF-β1)-Smad3/4 signaling
title_full_unstemmed The crystallin alpha B (HSPB5)-tripartite motif containing 33 (TRIM33) axis mediates myocardial fibrosis induced by angiotensinogen II through transforming growth factor-β (TGF-β1)-Smad3/4 signaling
title_short The crystallin alpha B (HSPB5)-tripartite motif containing 33 (TRIM33) axis mediates myocardial fibrosis induced by angiotensinogen II through transforming growth factor-β (TGF-β1)-Smad3/4 signaling
title_sort crystallin alpha b (hspb5)-tripartite motif containing 33 (trim33) axis mediates myocardial fibrosis induced by angiotensinogen ii through transforming growth factor-β (tgf-β1)-smad3/4 signaling
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9161881/
https://www.ncbi.nlm.nih.gov/pubmed/35333698
http://dx.doi.org/10.1080/21655979.2022.2054913
work_keys_str_mv AT weitianwen thecrystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT duyingqiang thecrystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT shantiankai thecrystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT chenjiawen thecrystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT shidongwei thecrystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT yangtongtong thecrystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT wangjiankang thecrystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT zhangjun thecrystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT liyafei thecrystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT weitianwen crystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT duyingqiang crystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT shantiankai crystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT chenjiawen crystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT shidongwei crystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT yangtongtong crystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT wangjiankang crystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT zhangjun crystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling
AT liyafei crystallinalphabhspb5tripartitemotifcontaining33trim33axismediatesmyocardialfibrosisinducedbyangiotensinogeniithroughtransforminggrowthfactorbtgfb1smad34signaling