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miR‐5188 augments glioma growth, migration and invasion through an SP1‐modulated FOXO1‐PI3K/AKT‐c‐JUN‐positive feedback circuit

The biological effect and molecular mechanism of miR‐5188 have not been thoroughly investigated. The study aims at elucidating the role of miR‐5188 in glioma progression. Human glioma cell lines and tissues were used for functional and expression analysis. Cellular and molecular techniques were perf...

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Detalles Bibliográficos
Autores principales: Yi, Renhui, Yang, Shaochun, Lin, Xian, Zhong, Liangying, Liao, Yuanyuan, Hu, Zheng, Huang, Tengyue, Long, Hao, Lin, Jie, Wu, Zhiyong, Xie, Cheng, Ding, Shengfeng, Luo, Jie, Luo, Qisheng, Song, Ye
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7579714/
https://www.ncbi.nlm.nih.gov/pubmed/32902145
http://dx.doi.org/10.1111/jcmm.15794
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author Yi, Renhui
Yang, Shaochun
Lin, Xian
Zhong, Liangying
Liao, Yuanyuan
Hu, Zheng
Huang, Tengyue
Long, Hao
Lin, Jie
Wu, Zhiyong
Xie, Cheng
Ding, Shengfeng
Luo, Jie
Luo, Qisheng
Song, Ye
author_facet Yi, Renhui
Yang, Shaochun
Lin, Xian
Zhong, Liangying
Liao, Yuanyuan
Hu, Zheng
Huang, Tengyue
Long, Hao
Lin, Jie
Wu, Zhiyong
Xie, Cheng
Ding, Shengfeng
Luo, Jie
Luo, Qisheng
Song, Ye
author_sort Yi, Renhui
collection PubMed
description The biological effect and molecular mechanism of miR‐5188 have not been thoroughly investigated. The study aims at elucidating the role of miR‐5188 in glioma progression. Human glioma cell lines and tissues were used for functional and expression analysis. Cellular and molecular techniques were performed to explore the functions and mechanisms of miR‐5188 in glioma. In our investigation, we demonstrated that miR‐5188 promoted cell proliferation, the G1/S transition of the cell cycle, migration and invasion in glioma and reduced the lifespan of glioma‐bearing mice. miR‐5188 directly targeted FOXO1 and activated PI3K/AKT‐c‐JUN signalling, which enhanced miR‐5188 expression. Moreover, the c‐JUN transcription factor functionally bound to the miR‐5188 promoter region, forming the positive feedback loop. The feedback loop promoted glioma progression through activating the PI3K/AKT signalling, and this loop is augmented by the interaction between SP1 and c‐JUN. Moreover, it was also found that the miR‐5188/FOXO1 axis is facilitated by SP1‐activated PI3K/AKT/c‐JUN signalling. In glioma samples, miR‐5188 expression was found to be an unfavourable factor and was positively associated with the mRNA levels of SP1 and c‐JUN, whereas negatively associated with the mRNA levels of FOXO1. Our investigation demonstrates that miR‐5188 could function as a tumour promoter by directly targeting FOXO1 and participating in SP1‐mediated promotion of cell growth and tumorigenesis in glioma.
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spelling pubmed-75797142020-10-27 miR‐5188 augments glioma growth, migration and invasion through an SP1‐modulated FOXO1‐PI3K/AKT‐c‐JUN‐positive feedback circuit Yi, Renhui Yang, Shaochun Lin, Xian Zhong, Liangying Liao, Yuanyuan Hu, Zheng Huang, Tengyue Long, Hao Lin, Jie Wu, Zhiyong Xie, Cheng Ding, Shengfeng Luo, Jie Luo, Qisheng Song, Ye J Cell Mol Med Original Articles The biological effect and molecular mechanism of miR‐5188 have not been thoroughly investigated. The study aims at elucidating the role of miR‐5188 in glioma progression. Human glioma cell lines and tissues were used for functional and expression analysis. Cellular and molecular techniques were performed to explore the functions and mechanisms of miR‐5188 in glioma. In our investigation, we demonstrated that miR‐5188 promoted cell proliferation, the G1/S transition of the cell cycle, migration and invasion in glioma and reduced the lifespan of glioma‐bearing mice. miR‐5188 directly targeted FOXO1 and activated PI3K/AKT‐c‐JUN signalling, which enhanced miR‐5188 expression. Moreover, the c‐JUN transcription factor functionally bound to the miR‐5188 promoter region, forming the positive feedback loop. The feedback loop promoted glioma progression through activating the PI3K/AKT signalling, and this loop is augmented by the interaction between SP1 and c‐JUN. Moreover, it was also found that the miR‐5188/FOXO1 axis is facilitated by SP1‐activated PI3K/AKT/c‐JUN signalling. In glioma samples, miR‐5188 expression was found to be an unfavourable factor and was positively associated with the mRNA levels of SP1 and c‐JUN, whereas negatively associated with the mRNA levels of FOXO1. Our investigation demonstrates that miR‐5188 could function as a tumour promoter by directly targeting FOXO1 and participating in SP1‐mediated promotion of cell growth and tumorigenesis in glioma. John Wiley and Sons Inc. 2020-09-09 2020-10 /pmc/articles/PMC7579714/ /pubmed/32902145 http://dx.doi.org/10.1111/jcmm.15794 Text en © 2020 The Authors. Journal of Cellular and Molecular Medicine published by Foundation for Cellular and Molecular Medicine and John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Yi, Renhui
Yang, Shaochun
Lin, Xian
Zhong, Liangying
Liao, Yuanyuan
Hu, Zheng
Huang, Tengyue
Long, Hao
Lin, Jie
Wu, Zhiyong
Xie, Cheng
Ding, Shengfeng
Luo, Jie
Luo, Qisheng
Song, Ye
miR‐5188 augments glioma growth, migration and invasion through an SP1‐modulated FOXO1‐PI3K/AKT‐c‐JUN‐positive feedback circuit
title miR‐5188 augments glioma growth, migration and invasion through an SP1‐modulated FOXO1‐PI3K/AKT‐c‐JUN‐positive feedback circuit
title_full miR‐5188 augments glioma growth, migration and invasion through an SP1‐modulated FOXO1‐PI3K/AKT‐c‐JUN‐positive feedback circuit
title_fullStr miR‐5188 augments glioma growth, migration and invasion through an SP1‐modulated FOXO1‐PI3K/AKT‐c‐JUN‐positive feedback circuit
title_full_unstemmed miR‐5188 augments glioma growth, migration and invasion through an SP1‐modulated FOXO1‐PI3K/AKT‐c‐JUN‐positive feedback circuit
title_short miR‐5188 augments glioma growth, migration and invasion through an SP1‐modulated FOXO1‐PI3K/AKT‐c‐JUN‐positive feedback circuit
title_sort mir‐5188 augments glioma growth, migration and invasion through an sp1‐modulated foxo1‐pi3k/akt‐c‐jun‐positive feedback circuit
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7579714/
https://www.ncbi.nlm.nih.gov/pubmed/32902145
http://dx.doi.org/10.1111/jcmm.15794
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