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MicroRNA-93 promotes the malignant phenotypes of human glioma cells and induces their chemoresistance to temozolomide

MicroRNAs (miRNAs), a class of small non-coding RNAs, can induce mRNA degradation or repress translation by binding to the 3′-untranslated region (UTR) of its target mRNA. Recently, some specific miRNAs, e.g. miR-93, have been found to be involved in pathological processes by targeting some oncogene...

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Autores principales: Chen, Rui, Liu, Huan, Cheng, Quan, Jiang, Bing, Peng, Renjun, Zou, Qin, Yang, Wenren, Yang, Xiaosheng, Wu, Xiaobing, Chen, Zigui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4920179/
https://www.ncbi.nlm.nih.gov/pubmed/27185265
http://dx.doi.org/10.1242/bio.015552
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author Chen, Rui
Liu, Huan
Cheng, Quan
Jiang, Bing
Peng, Renjun
Zou, Qin
Yang, Wenren
Yang, Xiaosheng
Wu, Xiaobing
Chen, Zigui
author_facet Chen, Rui
Liu, Huan
Cheng, Quan
Jiang, Bing
Peng, Renjun
Zou, Qin
Yang, Wenren
Yang, Xiaosheng
Wu, Xiaobing
Chen, Zigui
author_sort Chen, Rui
collection PubMed
description MicroRNAs (miRNAs), a class of small non-coding RNAs, can induce mRNA degradation or repress translation by binding to the 3′-untranslated region (UTR) of its target mRNA. Recently, some specific miRNAs, e.g. miR-93, have been found to be involved in pathological processes by targeting some oncogenes or tumor suppressors in glioma. However, the regulatory mechanism of miR-93 in the biological behaviors and chemoresistance of glioma cells remains unclear. In the present study, in situ hybridization and real-time RT-PCR data indicated that miR-93 was significantly upregulated in glioma patients (n=43) compared with normal brain tissues (n=8). Moreover, the upregulated miR-93 level was significantly associated with the advanced malignancy. We also found that upregulation of miR-93 promoted the proliferation, migration and invasion of glioma cells, and that miR-93 was involved in the regulation of cell cycle progression by mediating the protein levels of P21, P27, P53 and Cyclin D1. P21 was further identified as a direct target of miR-93. Knockdown of P21 attenuated the suppressive effects of miR-93 inhibition on cell cycle progression and colony formation. In addition, inhibition of miR-93 enhanced the chemosensitization of glioma cells to temozolomide (TMZ). Based on these above data, our study demonstrates that miR-93, upregulated in glioma, promotes the proliferation, cell cycle progression, migration and invasion of human glioma cells and suppresses their chemosensitivity to TMZ. Therefore, miR-93 may become a promising diagnostic marker and therapeutic target for glioma.
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spelling pubmed-49201792016-07-07 MicroRNA-93 promotes the malignant phenotypes of human glioma cells and induces their chemoresistance to temozolomide Chen, Rui Liu, Huan Cheng, Quan Jiang, Bing Peng, Renjun Zou, Qin Yang, Wenren Yang, Xiaosheng Wu, Xiaobing Chen, Zigui Biol Open Research Article MicroRNAs (miRNAs), a class of small non-coding RNAs, can induce mRNA degradation or repress translation by binding to the 3′-untranslated region (UTR) of its target mRNA. Recently, some specific miRNAs, e.g. miR-93, have been found to be involved in pathological processes by targeting some oncogenes or tumor suppressors in glioma. However, the regulatory mechanism of miR-93 in the biological behaviors and chemoresistance of glioma cells remains unclear. In the present study, in situ hybridization and real-time RT-PCR data indicated that miR-93 was significantly upregulated in glioma patients (n=43) compared with normal brain tissues (n=8). Moreover, the upregulated miR-93 level was significantly associated with the advanced malignancy. We also found that upregulation of miR-93 promoted the proliferation, migration and invasion of glioma cells, and that miR-93 was involved in the regulation of cell cycle progression by mediating the protein levels of P21, P27, P53 and Cyclin D1. P21 was further identified as a direct target of miR-93. Knockdown of P21 attenuated the suppressive effects of miR-93 inhibition on cell cycle progression and colony formation. In addition, inhibition of miR-93 enhanced the chemosensitization of glioma cells to temozolomide (TMZ). Based on these above data, our study demonstrates that miR-93, upregulated in glioma, promotes the proliferation, cell cycle progression, migration and invasion of human glioma cells and suppresses their chemosensitivity to TMZ. Therefore, miR-93 may become a promising diagnostic marker and therapeutic target for glioma. The Company of Biologists Ltd 2016-05-16 /pmc/articles/PMC4920179/ /pubmed/27185265 http://dx.doi.org/10.1242/bio.015552 Text en © 2016. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Chen, Rui
Liu, Huan
Cheng, Quan
Jiang, Bing
Peng, Renjun
Zou, Qin
Yang, Wenren
Yang, Xiaosheng
Wu, Xiaobing
Chen, Zigui
MicroRNA-93 promotes the malignant phenotypes of human glioma cells and induces their chemoresistance to temozolomide
title MicroRNA-93 promotes the malignant phenotypes of human glioma cells and induces their chemoresistance to temozolomide
title_full MicroRNA-93 promotes the malignant phenotypes of human glioma cells and induces their chemoresistance to temozolomide
title_fullStr MicroRNA-93 promotes the malignant phenotypes of human glioma cells and induces their chemoresistance to temozolomide
title_full_unstemmed MicroRNA-93 promotes the malignant phenotypes of human glioma cells and induces their chemoresistance to temozolomide
title_short MicroRNA-93 promotes the malignant phenotypes of human glioma cells and induces their chemoresistance to temozolomide
title_sort microrna-93 promotes the malignant phenotypes of human glioma cells and induces their chemoresistance to temozolomide
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4920179/
https://www.ncbi.nlm.nih.gov/pubmed/27185265
http://dx.doi.org/10.1242/bio.015552
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