Down-regulation of LncRNA TUG1 enhances radiosensitivity in bladder cancer via suppressing HMGB1 expression

Abstract Background Long non-coding RNAs (lncRNAs) have been reported to regulate the sensitivity of different cancer cells to chemoradiotherapy. Aberrant expression of lncRNA Taurine-upregulated gene 1 (TUG1) has been found to be involved in the development of bladder cancer, however, its function...

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Main Authors: Huijuan Jiang, Xigang Hu, Hongzhi Zhang, Wenbo Li
Format: Article
Language:English
Published: BMC 2017-04-01
Series:Radiation Oncology
Subjects:
Online Access:http://link.springer.com/article/10.1186/s13014-017-0802-3
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spelling doaj-6b735cba43d54d88862a1e5f0af06a4d2020-11-24T21:35:03ZengBMCRadiation Oncology1748-717X2017-04-0112111010.1186/s13014-017-0802-3Down-regulation of LncRNA TUG1 enhances radiosensitivity in bladder cancer via suppressing HMGB1 expressionHuijuan Jiang0Xigang Hu1Hongzhi Zhang2Wenbo Li3Department of Radiotherapy, Huaihe Hospital of Henan UniversityDepartment of Radiotherapy, Huaihe Hospital of Henan UniversityDepartment of Radiotherapy, Huaihe Hospital of Henan UniversityDepartment of Radiotherapy, Huaihe Hospital of Henan UniversityAbstract Background Long non-coding RNAs (lncRNAs) have been reported to regulate the sensitivity of different cancer cells to chemoradiotherapy. Aberrant expression of lncRNA Taurine-upregulated gene 1 (TUG1) has been found to be involved in the development of bladder cancer, however, its function and underlying mechanism in the radioresistance of bladder cancer remains unclear. Methods Quantitative real-time PCR (qRT-PCR) was conducted to measure the expression of TUG1 and HMGB1 mRNA in bladder cancer tissues and cell lines. HMGB1 protein levels were tested by western blot assays. Different doses of X-ray were used for radiation treatment of bladder cancer cells. Colony survival and cell viability were detected by clonogenic assay and CCK-8 Kit, respectively. Cell apoptosis was determined by flow cytometry. A xenograft mouse model was constructed to observe the effect of TUG1 on tumor growth in vivo. Results The levels of TUG1 and HMGB1 were remarkably increased in bladder cancer tissues and cell lines. Radiation treatment markedly elevated the expression of TUG1 and HMGB1. TUG1 knockdown inhibited cell proliferation, promoted cell apoptosis and decreased colony survival in SW780 and BIU87 cells under radiation. Moreover, TUG1 depletion suppressed the HMGB1 mRNA and protein levels. Furthermore, overexpression of HMGB1 reversed TUG1 knockdown-induced effect in bladder cancer cells. Radiation treatment dramatically reduced the tumor volume and weight in xenograft model, and this effect was more obvious when combined with TUG1 silencing. Conclusion LncRNA TUG1 knockdown enhances radiosensitivity of bladder cancer by suppressing HMGB1 expression. TUG1 acts as a potential regulator of radioresistance of bladder cancer, and it may represent a promising therapeutic target for bladder cancer patients.http://link.springer.com/article/10.1186/s13014-017-0802-3lncRNATUG1HMGB1Bladder cancerRadiosensitivity
collection DOAJ
language English
format Article
sources DOAJ
author Huijuan Jiang
Xigang Hu
Hongzhi Zhang
Wenbo Li
spellingShingle Huijuan Jiang
Xigang Hu
Hongzhi Zhang
Wenbo Li
Down-regulation of LncRNA TUG1 enhances radiosensitivity in bladder cancer via suppressing HMGB1 expression
Radiation Oncology
lncRNA
TUG1
HMGB1
Bladder cancer
Radiosensitivity
author_facet Huijuan Jiang
Xigang Hu
Hongzhi Zhang
Wenbo Li
author_sort Huijuan Jiang
title Down-regulation of LncRNA TUG1 enhances radiosensitivity in bladder cancer via suppressing HMGB1 expression
title_short Down-regulation of LncRNA TUG1 enhances radiosensitivity in bladder cancer via suppressing HMGB1 expression
title_full Down-regulation of LncRNA TUG1 enhances radiosensitivity in bladder cancer via suppressing HMGB1 expression
title_fullStr Down-regulation of LncRNA TUG1 enhances radiosensitivity in bladder cancer via suppressing HMGB1 expression
title_full_unstemmed Down-regulation of LncRNA TUG1 enhances radiosensitivity in bladder cancer via suppressing HMGB1 expression
title_sort down-regulation of lncrna tug1 enhances radiosensitivity in bladder cancer via suppressing hmgb1 expression
publisher BMC
series Radiation Oncology
issn 1748-717X
publishDate 2017-04-01
description Abstract Background Long non-coding RNAs (lncRNAs) have been reported to regulate the sensitivity of different cancer cells to chemoradiotherapy. Aberrant expression of lncRNA Taurine-upregulated gene 1 (TUG1) has been found to be involved in the development of bladder cancer, however, its function and underlying mechanism in the radioresistance of bladder cancer remains unclear. Methods Quantitative real-time PCR (qRT-PCR) was conducted to measure the expression of TUG1 and HMGB1 mRNA in bladder cancer tissues and cell lines. HMGB1 protein levels were tested by western blot assays. Different doses of X-ray were used for radiation treatment of bladder cancer cells. Colony survival and cell viability were detected by clonogenic assay and CCK-8 Kit, respectively. Cell apoptosis was determined by flow cytometry. A xenograft mouse model was constructed to observe the effect of TUG1 on tumor growth in vivo. Results The levels of TUG1 and HMGB1 were remarkably increased in bladder cancer tissues and cell lines. Radiation treatment markedly elevated the expression of TUG1 and HMGB1. TUG1 knockdown inhibited cell proliferation, promoted cell apoptosis and decreased colony survival in SW780 and BIU87 cells under radiation. Moreover, TUG1 depletion suppressed the HMGB1 mRNA and protein levels. Furthermore, overexpression of HMGB1 reversed TUG1 knockdown-induced effect in bladder cancer cells. Radiation treatment dramatically reduced the tumor volume and weight in xenograft model, and this effect was more obvious when combined with TUG1 silencing. Conclusion LncRNA TUG1 knockdown enhances radiosensitivity of bladder cancer by suppressing HMGB1 expression. TUG1 acts as a potential regulator of radioresistance of bladder cancer, and it may represent a promising therapeutic target for bladder cancer patients.
topic lncRNA
TUG1
HMGB1
Bladder cancer
Radiosensitivity
url http://link.springer.com/article/10.1186/s13014-017-0802-3
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AT hongzhizhang downregulationoflncrnatug1enhancesradiosensitivityinbladdercancerviasuppressinghmgb1expression
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