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Genome-wide transcriptional analysis of BRD4-regulated genes and pathways in human glioma U251 cells

Bromodomain containing 4 (BRD4), a member of the bromodomain and extra-terminal family, has become a promising drug target for numerous types of cancer. BRD4 has been reported to be deregulated in gliomas; however, the precise molecular pathways regulated by BRD4 remained elusive. In the present stu...

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Autores principales: Du, Zhanhui, Song, Xiuxiang, Yan, Fangfang, Wang, Jingjing, Zhao, Yuxia, Liu, Shangming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5873870/
https://www.ncbi.nlm.nih.gov/pubmed/29568956
http://dx.doi.org/10.3892/ijo.2018.4324
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author Du, Zhanhui
Song, Xiuxiang
Yan, Fangfang
Wang, Jingjing
Zhao, Yuxia
Liu, Shangming
author_facet Du, Zhanhui
Song, Xiuxiang
Yan, Fangfang
Wang, Jingjing
Zhao, Yuxia
Liu, Shangming
author_sort Du, Zhanhui
collection PubMed
description Bromodomain containing 4 (BRD4), a member of the bromodomain and extra-terminal family, has become a promising drug target for numerous types of cancer. BRD4 has been reported to be deregulated in gliomas; however, the precise molecular pathways regulated by BRD4 remained elusive. In the present study, BRD4 expression was silenced in the glioma cell line U251 and the results demonstrated that BRD4 knockdown attenuated cell proliferation and promoted cell apoptosis. A genome-wide analysis of BRD4-regulated transcripts in U251 cells was performed using microarray to reveal the possible molecular mechanism. A total of 3,529 differentially expressed genes were identified; 1,648 of these genes were upregulated and 1,881 were downregulated. The results of the gene ontology analysis revealed that these genes were mainly involved in membrane organization, mitotic cell cycle, cell division and DNA replication. Pathway analysis revealed that the pathways altered following BRD4 knockdown included multiple cellular processes, such as cell cycle and apoptosis. Candidate genes were identified through global signal transduction network analysis and were validated using reverse transcription-quantitative polymerase chain reaction and western blot analyses. The results demonstrated that BRD4 knockdown decreased the expression of KRAS proto-oncogene GTPase (KRAS). Downregulated KRAS expression in U251 cells restrained cell proliferation and promoted cell apoptosis, suggesting that the effect of BRD4 on glioma cells might occur through the Ras pathway. In conclusion, the present results confirmed the role of BRD4 in glioma and provided information for further exploration of the molecular mechanism of BRD4 in glioma development and progression.
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spelling pubmed-58738702018-03-30 Genome-wide transcriptional analysis of BRD4-regulated genes and pathways in human glioma U251 cells Du, Zhanhui Song, Xiuxiang Yan, Fangfang Wang, Jingjing Zhao, Yuxia Liu, Shangming Int J Oncol Articles Bromodomain containing 4 (BRD4), a member of the bromodomain and extra-terminal family, has become a promising drug target for numerous types of cancer. BRD4 has been reported to be deregulated in gliomas; however, the precise molecular pathways regulated by BRD4 remained elusive. In the present study, BRD4 expression was silenced in the glioma cell line U251 and the results demonstrated that BRD4 knockdown attenuated cell proliferation and promoted cell apoptosis. A genome-wide analysis of BRD4-regulated transcripts in U251 cells was performed using microarray to reveal the possible molecular mechanism. A total of 3,529 differentially expressed genes were identified; 1,648 of these genes were upregulated and 1,881 were downregulated. The results of the gene ontology analysis revealed that these genes were mainly involved in membrane organization, mitotic cell cycle, cell division and DNA replication. Pathway analysis revealed that the pathways altered following BRD4 knockdown included multiple cellular processes, such as cell cycle and apoptosis. Candidate genes were identified through global signal transduction network analysis and were validated using reverse transcription-quantitative polymerase chain reaction and western blot analyses. The results demonstrated that BRD4 knockdown decreased the expression of KRAS proto-oncogene GTPase (KRAS). Downregulated KRAS expression in U251 cells restrained cell proliferation and promoted cell apoptosis, suggesting that the effect of BRD4 on glioma cells might occur through the Ras pathway. In conclusion, the present results confirmed the role of BRD4 in glioma and provided information for further exploration of the molecular mechanism of BRD4 in glioma development and progression. D.A. Spandidos 2018-03-16 /pmc/articles/PMC5873870/ /pubmed/29568956 http://dx.doi.org/10.3892/ijo.2018.4324 Text en Copyright: © Du et al. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Du, Zhanhui
Song, Xiuxiang
Yan, Fangfang
Wang, Jingjing
Zhao, Yuxia
Liu, Shangming
Genome-wide transcriptional analysis of BRD4-regulated genes and pathways in human glioma U251 cells
title Genome-wide transcriptional analysis of BRD4-regulated genes and pathways in human glioma U251 cells
title_full Genome-wide transcriptional analysis of BRD4-regulated genes and pathways in human glioma U251 cells
title_fullStr Genome-wide transcriptional analysis of BRD4-regulated genes and pathways in human glioma U251 cells
title_full_unstemmed Genome-wide transcriptional analysis of BRD4-regulated genes and pathways in human glioma U251 cells
title_short Genome-wide transcriptional analysis of BRD4-regulated genes and pathways in human glioma U251 cells
title_sort genome-wide transcriptional analysis of brd4-regulated genes and pathways in human glioma u251 cells
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5873870/
https://www.ncbi.nlm.nih.gov/pubmed/29568956
http://dx.doi.org/10.3892/ijo.2018.4324
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