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miR-27a inhibits cervical adenocarcinoma progression by downregulating the TGF-βRI signaling pathway

High-risk human papillomavirus infection is essential for the malignant transformation of cervical cancer and can inhibit host miR-27a expression. We investigated the role and mechanism of miR-27a in cervical cancer progression. miR-27a is decreased in cervical cancer cell lines and miR-27a-agomir i...

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Autores principales: Fang, Fang, Huang, Bangxing, Sun, Si, Xiao, Man, Guo, Jing, Yi, Xiaoqing, Cai, Jing, Wang, Zehua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5847584/
https://www.ncbi.nlm.nih.gov/pubmed/29531222
http://dx.doi.org/10.1038/s41419-018-0431-2
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author Fang, Fang
Huang, Bangxing
Sun, Si
Xiao, Man
Guo, Jing
Yi, Xiaoqing
Cai, Jing
Wang, Zehua
author_facet Fang, Fang
Huang, Bangxing
Sun, Si
Xiao, Man
Guo, Jing
Yi, Xiaoqing
Cai, Jing
Wang, Zehua
author_sort Fang, Fang
collection PubMed
description High-risk human papillomavirus infection is essential for the malignant transformation of cervical cancer and can inhibit host miR-27a expression. We investigated the role and mechanism of miR-27a in cervical cancer progression. miR-27a is decreased in cervical cancer cell lines and miR-27a-agomir inhibited the cell proliferation, migration, and invasion properties of HeLa (adenocarcinoma) cells, but not in SiHa cells (squamous cell carcinoma). Luciferase assays revealed that miR-27a directly targets the 3′-UTR of transforming growth factor beta receptor I (TGF-βRI) and downregulates TGF-β signaling. The co-transfection of a TGF-βRI expression vector largely restored the inhibition of TGF-β signaling, cell proliferation, migration, and invasion mediated by miR-27a-agomir. Also, miR-27a-agomir slows down the growth of subcutaneous HeLa xenografts and downregulates the TGF-βRI expression and TGF-β signaling in tumor in vivo. Tissue microarray analysis revealed a low miR-27a level in adenocarcinoma cells, but not in squamous cell carcinoma cells, which was negatively associated with TGF-βRI expression. High TGF-βRI correlated with deep stromal invasion and lymph node metastasis. These results suggest that miR-27a acts as a tumor suppressor in cervical cancer, especially in adenocarcinoma, by inhibiting TGF-βRI signaling pathway. Thus, enhancing miR-27a expression and function may be a novel treatment strategy for cervical adenocarcinoma.
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spelling pubmed-58475842018-03-14 miR-27a inhibits cervical adenocarcinoma progression by downregulating the TGF-βRI signaling pathway Fang, Fang Huang, Bangxing Sun, Si Xiao, Man Guo, Jing Yi, Xiaoqing Cai, Jing Wang, Zehua Cell Death Dis Article High-risk human papillomavirus infection is essential for the malignant transformation of cervical cancer and can inhibit host miR-27a expression. We investigated the role and mechanism of miR-27a in cervical cancer progression. miR-27a is decreased in cervical cancer cell lines and miR-27a-agomir inhibited the cell proliferation, migration, and invasion properties of HeLa (adenocarcinoma) cells, but not in SiHa cells (squamous cell carcinoma). Luciferase assays revealed that miR-27a directly targets the 3′-UTR of transforming growth factor beta receptor I (TGF-βRI) and downregulates TGF-β signaling. The co-transfection of a TGF-βRI expression vector largely restored the inhibition of TGF-β signaling, cell proliferation, migration, and invasion mediated by miR-27a-agomir. Also, miR-27a-agomir slows down the growth of subcutaneous HeLa xenografts and downregulates the TGF-βRI expression and TGF-β signaling in tumor in vivo. Tissue microarray analysis revealed a low miR-27a level in adenocarcinoma cells, but not in squamous cell carcinoma cells, which was negatively associated with TGF-βRI expression. High TGF-βRI correlated with deep stromal invasion and lymph node metastasis. These results suggest that miR-27a acts as a tumor suppressor in cervical cancer, especially in adenocarcinoma, by inhibiting TGF-βRI signaling pathway. Thus, enhancing miR-27a expression and function may be a novel treatment strategy for cervical adenocarcinoma. Nature Publishing Group UK 2018-03-12 /pmc/articles/PMC5847584/ /pubmed/29531222 http://dx.doi.org/10.1038/s41419-018-0431-2 Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Fang, Fang
Huang, Bangxing
Sun, Si
Xiao, Man
Guo, Jing
Yi, Xiaoqing
Cai, Jing
Wang, Zehua
miR-27a inhibits cervical adenocarcinoma progression by downregulating the TGF-βRI signaling pathway
title miR-27a inhibits cervical adenocarcinoma progression by downregulating the TGF-βRI signaling pathway
title_full miR-27a inhibits cervical adenocarcinoma progression by downregulating the TGF-βRI signaling pathway
title_fullStr miR-27a inhibits cervical adenocarcinoma progression by downregulating the TGF-βRI signaling pathway
title_full_unstemmed miR-27a inhibits cervical adenocarcinoma progression by downregulating the TGF-βRI signaling pathway
title_short miR-27a inhibits cervical adenocarcinoma progression by downregulating the TGF-βRI signaling pathway
title_sort mir-27a inhibits cervical adenocarcinoma progression by downregulating the tgf-βri signaling pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5847584/
https://www.ncbi.nlm.nih.gov/pubmed/29531222
http://dx.doi.org/10.1038/s41419-018-0431-2
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