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Functional screening for miRNAs targeting Smad4 identified miR-199a as a negative regulator of TGF-β signalling pathway

The transforming growth factor-β (TGF-β) signalling pathway participates in various biological processes. Dysregulation of Smad4, a central cellular transducer of TGF-β signalling, is implicated in a wide range of human diseases and developmental disorders. However, the mechanisms underlying Smad4 d...

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Autores principales: Zhang, Yan, Fan, Kai-Ji, Sun, Qiang, Chen, Ai-Zhong, Shen, Wen-Long, Zhao, Zhi-Hu, Zheng, Xiao-Fei, Yang, Xiao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2012
Materias:
RNA
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3467063/
https://www.ncbi.nlm.nih.gov/pubmed/22821565
http://dx.doi.org/10.1093/nar/gks667
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author Zhang, Yan
Fan, Kai-Ji
Sun, Qiang
Chen, Ai-Zhong
Shen, Wen-Long
Zhao, Zhi-Hu
Zheng, Xiao-Fei
Yang, Xiao
author_facet Zhang, Yan
Fan, Kai-Ji
Sun, Qiang
Chen, Ai-Zhong
Shen, Wen-Long
Zhao, Zhi-Hu
Zheng, Xiao-Fei
Yang, Xiao
author_sort Zhang, Yan
collection PubMed
description The transforming growth factor-β (TGF-β) signalling pathway participates in various biological processes. Dysregulation of Smad4, a central cellular transducer of TGF-β signalling, is implicated in a wide range of human diseases and developmental disorders. However, the mechanisms underlying Smad4 dysregulation are not fully understood. Using a functional screening approach based on luciferase reporter assays, we identified 39 microRNAs (miRNAs) as potential regulators of Smad4 from an expression library of 388 human miRNAs. The screening was supported by bioinformatic analysis, as 24 of 39 identified miRNAs were also predicted to target Smad4. MiR-199a, one of the identified miRNAs, was inversely correlated with Smad4 expression in various human cancer cell lines and gastric cancer tissues, and repressed Smad4 expression and blocked canonical TGF-β transcriptional responses in cell lines. These effects were dependent on the presence of a conserved, but not perfect seed paired, miR-199a-binding site in the Smad4 3′-untranslated region (UTR). Overexpression of miR-199a significantly inhibited the ability of TGF-β to induce gastric cancer cell growth arrest and apoptosis in vitro, and promoted anchorage-independent growth in soft agar, suggesting that miR-199a plays an oncogenic role in human gastric tumourigenesis. In conclusion, our functional screening uncovers multiple miRNAs that regulate the cellular responsiveness to TGF-β signalling and reveals important roles of miR-199a in gastric cancer by directly targeting Smad4.
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spelling pubmed-34670632012-10-10 Functional screening for miRNAs targeting Smad4 identified miR-199a as a negative regulator of TGF-β signalling pathway Zhang, Yan Fan, Kai-Ji Sun, Qiang Chen, Ai-Zhong Shen, Wen-Long Zhao, Zhi-Hu Zheng, Xiao-Fei Yang, Xiao Nucleic Acids Res RNA The transforming growth factor-β (TGF-β) signalling pathway participates in various biological processes. Dysregulation of Smad4, a central cellular transducer of TGF-β signalling, is implicated in a wide range of human diseases and developmental disorders. However, the mechanisms underlying Smad4 dysregulation are not fully understood. Using a functional screening approach based on luciferase reporter assays, we identified 39 microRNAs (miRNAs) as potential regulators of Smad4 from an expression library of 388 human miRNAs. The screening was supported by bioinformatic analysis, as 24 of 39 identified miRNAs were also predicted to target Smad4. MiR-199a, one of the identified miRNAs, was inversely correlated with Smad4 expression in various human cancer cell lines and gastric cancer tissues, and repressed Smad4 expression and blocked canonical TGF-β transcriptional responses in cell lines. These effects were dependent on the presence of a conserved, but not perfect seed paired, miR-199a-binding site in the Smad4 3′-untranslated region (UTR). Overexpression of miR-199a significantly inhibited the ability of TGF-β to induce gastric cancer cell growth arrest and apoptosis in vitro, and promoted anchorage-independent growth in soft agar, suggesting that miR-199a plays an oncogenic role in human gastric tumourigenesis. In conclusion, our functional screening uncovers multiple miRNAs that regulate the cellular responsiveness to TGF-β signalling and reveals important roles of miR-199a in gastric cancer by directly targeting Smad4. Oxford University Press 2012-10 2012-07-19 /pmc/articles/PMC3467063/ /pubmed/22821565 http://dx.doi.org/10.1093/nar/gks667 Text en © The Author(s) 2012. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle RNA
Zhang, Yan
Fan, Kai-Ji
Sun, Qiang
Chen, Ai-Zhong
Shen, Wen-Long
Zhao, Zhi-Hu
Zheng, Xiao-Fei
Yang, Xiao
Functional screening for miRNAs targeting Smad4 identified miR-199a as a negative regulator of TGF-β signalling pathway
title Functional screening for miRNAs targeting Smad4 identified miR-199a as a negative regulator of TGF-β signalling pathway
title_full Functional screening for miRNAs targeting Smad4 identified miR-199a as a negative regulator of TGF-β signalling pathway
title_fullStr Functional screening for miRNAs targeting Smad4 identified miR-199a as a negative regulator of TGF-β signalling pathway
title_full_unstemmed Functional screening for miRNAs targeting Smad4 identified miR-199a as a negative regulator of TGF-β signalling pathway
title_short Functional screening for miRNAs targeting Smad4 identified miR-199a as a negative regulator of TGF-β signalling pathway
title_sort functional screening for mirnas targeting smad4 identified mir-199a as a negative regulator of tgf-β signalling pathway
topic RNA
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3467063/
https://www.ncbi.nlm.nih.gov/pubmed/22821565
http://dx.doi.org/10.1093/nar/gks667
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