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MiR-362-5p, Which Is Regulated by Long Non-Coding RNA MBNL1-AS1, Promotes the Cell Proliferation and Tumor Growth of Bladder Cancer by Targeting QKI

In this study, we found miR-362-5p was upregulated in bladder cancer tissues and we predicted that QKI is potential a target of miR-362-5p and MBNL1-AS1 might be able to directly target to miR-362-5p. We attempted to evaluate whether miR-362-5p could play its roles in bladder cancer through regulati...

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Autores principales: Wei, Xiaosong, Wang, Beibei, Wang, Qi, Yang, Xiaoming, Yang, Yang, Fang, Zhiwei, Yi, Chengzhi, Shi, Lei, Fan, Xin, Tao, Jin, Guo, Yufeng, Song, Dongkui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7063466/
https://www.ncbi.nlm.nih.gov/pubmed/32194406
http://dx.doi.org/10.3389/fphar.2020.00164
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author Wei, Xiaosong
Wang, Beibei
Wang, Qi
Yang, Xiaoming
Yang, Yang
Fang, Zhiwei
Yi, Chengzhi
Shi, Lei
Fan, Xin
Tao, Jin
Guo, Yufeng
Song, Dongkui
author_facet Wei, Xiaosong
Wang, Beibei
Wang, Qi
Yang, Xiaoming
Yang, Yang
Fang, Zhiwei
Yi, Chengzhi
Shi, Lei
Fan, Xin
Tao, Jin
Guo, Yufeng
Song, Dongkui
author_sort Wei, Xiaosong
collection PubMed
description In this study, we found miR-362-5p was upregulated in bladder cancer tissues and we predicted that QKI is potential a target of miR-362-5p and MBNL1-AS1 might be able to directly target to miR-362-5p. We attempted to evaluate whether miR-362-5p could play its roles in bladder cancer through regulating QKI (quaking) and whether the expression and function of miR-362-5p could be mediated by lncRNA MBNL1-AS1. We performed the gain- and loss-function experiments to explore the association between miR-362-5p expression and bladder cancer proliferation. In vivo, the nude mice were injected with miR-362-5p knockdown SW780 cells to assess the effects of miR-362-5p on tumor growth. The results showed upregulation of miR-362-5p promoted cell proliferation of bladder cancer cells. MBNL1-AS1 and QKI could directly bind with miR-362-5p, and knockdown of MBNL1-AS1 or QKI could abrogate the regulatory effects of miR-362-5p on bladder cancer cell proliferation. Furthermore, downregulation of miR-362-5p inhibited bladder tumor growth and increased QKI expression. Our data unveiled that miR-362-5p may play an oncogenic role in bladder cancer through QKI and MBNL1-AS1 might function as a sponge to mediate the miR-362-5p expression and function.
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spelling pubmed-70634662020-03-19 MiR-362-5p, Which Is Regulated by Long Non-Coding RNA MBNL1-AS1, Promotes the Cell Proliferation and Tumor Growth of Bladder Cancer by Targeting QKI Wei, Xiaosong Wang, Beibei Wang, Qi Yang, Xiaoming Yang, Yang Fang, Zhiwei Yi, Chengzhi Shi, Lei Fan, Xin Tao, Jin Guo, Yufeng Song, Dongkui Front Pharmacol Pharmacology In this study, we found miR-362-5p was upregulated in bladder cancer tissues and we predicted that QKI is potential a target of miR-362-5p and MBNL1-AS1 might be able to directly target to miR-362-5p. We attempted to evaluate whether miR-362-5p could play its roles in bladder cancer through regulating QKI (quaking) and whether the expression and function of miR-362-5p could be mediated by lncRNA MBNL1-AS1. We performed the gain- and loss-function experiments to explore the association between miR-362-5p expression and bladder cancer proliferation. In vivo, the nude mice were injected with miR-362-5p knockdown SW780 cells to assess the effects of miR-362-5p on tumor growth. The results showed upregulation of miR-362-5p promoted cell proliferation of bladder cancer cells. MBNL1-AS1 and QKI could directly bind with miR-362-5p, and knockdown of MBNL1-AS1 or QKI could abrogate the regulatory effects of miR-362-5p on bladder cancer cell proliferation. Furthermore, downregulation of miR-362-5p inhibited bladder tumor growth and increased QKI expression. Our data unveiled that miR-362-5p may play an oncogenic role in bladder cancer through QKI and MBNL1-AS1 might function as a sponge to mediate the miR-362-5p expression and function. Frontiers Media S.A. 2020-03-03 /pmc/articles/PMC7063466/ /pubmed/32194406 http://dx.doi.org/10.3389/fphar.2020.00164 Text en Copyright © 2020 Wei, Wang, Wang, Yang, Yang, Fang, Yi, Shi, Fan, Tao, Guo and Song http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Wei, Xiaosong
Wang, Beibei
Wang, Qi
Yang, Xiaoming
Yang, Yang
Fang, Zhiwei
Yi, Chengzhi
Shi, Lei
Fan, Xin
Tao, Jin
Guo, Yufeng
Song, Dongkui
MiR-362-5p, Which Is Regulated by Long Non-Coding RNA MBNL1-AS1, Promotes the Cell Proliferation and Tumor Growth of Bladder Cancer by Targeting QKI
title MiR-362-5p, Which Is Regulated by Long Non-Coding RNA MBNL1-AS1, Promotes the Cell Proliferation and Tumor Growth of Bladder Cancer by Targeting QKI
title_full MiR-362-5p, Which Is Regulated by Long Non-Coding RNA MBNL1-AS1, Promotes the Cell Proliferation and Tumor Growth of Bladder Cancer by Targeting QKI
title_fullStr MiR-362-5p, Which Is Regulated by Long Non-Coding RNA MBNL1-AS1, Promotes the Cell Proliferation and Tumor Growth of Bladder Cancer by Targeting QKI
title_full_unstemmed MiR-362-5p, Which Is Regulated by Long Non-Coding RNA MBNL1-AS1, Promotes the Cell Proliferation and Tumor Growth of Bladder Cancer by Targeting QKI
title_short MiR-362-5p, Which Is Regulated by Long Non-Coding RNA MBNL1-AS1, Promotes the Cell Proliferation and Tumor Growth of Bladder Cancer by Targeting QKI
title_sort mir-362-5p, which is regulated by long non-coding rna mbnl1-as1, promotes the cell proliferation and tumor growth of bladder cancer by targeting qki
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7063466/
https://www.ncbi.nlm.nih.gov/pubmed/32194406
http://dx.doi.org/10.3389/fphar.2020.00164
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