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BMI1 activates P-glycoprotein via transcription repression of miR-3682-3p and enhances chemoresistance of bladder cancer cell

Chemoresistance is the most significant reason for the failure of cancer treatment following radical cystectomy. The response rate to the first-line chemotherapy of cisplatin and gemcitabine does not exceed 50%. In our previous research, elevated BMI1 (B-cell specific Moloney murine leukemia virus i...

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Autores principales: Chen, Ming-Kun, Zhou, Jun-Hao, Wang, Peng, Ye, Yun-lin, Liu, Yang, Zhou, Jia-Wei, Chen, Zi-Jian, Yang, Jian-Kun, Liao, De-Ying, Liang, Zhi-Jian, Xie, Xiao, Zhou, Qi-Zhao, Xue, Kang-Yi, Guo, Wen-Bin, Xia, Ming, Bao, Ji-Ming, Yang, Cheng, Duan, Hai-Feng, Wang, Hong-Yi, Huang, Zhi-Peng, Qin, Zi-Ke, Liu, Cun-Dong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8351696/
https://www.ncbi.nlm.nih.gov/pubmed/34270461
http://dx.doi.org/10.18632/aging.203277
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author Chen, Ming-Kun
Zhou, Jun-Hao
Wang, Peng
Ye, Yun-lin
Liu, Yang
Zhou, Jia-Wei
Chen, Zi-Jian
Yang, Jian-Kun
Liao, De-Ying
Liang, Zhi-Jian
Xie, Xiao
Zhou, Qi-Zhao
Xue, Kang-Yi
Guo, Wen-Bin
Xia, Ming
Bao, Ji-Ming
Yang, Cheng
Duan, Hai-Feng
Wang, Hong-Yi
Huang, Zhi-Peng
Qin, Zi-Ke
Liu, Cun-Dong
author_facet Chen, Ming-Kun
Zhou, Jun-Hao
Wang, Peng
Ye, Yun-lin
Liu, Yang
Zhou, Jia-Wei
Chen, Zi-Jian
Yang, Jian-Kun
Liao, De-Ying
Liang, Zhi-Jian
Xie, Xiao
Zhou, Qi-Zhao
Xue, Kang-Yi
Guo, Wen-Bin
Xia, Ming
Bao, Ji-Ming
Yang, Cheng
Duan, Hai-Feng
Wang, Hong-Yi
Huang, Zhi-Peng
Qin, Zi-Ke
Liu, Cun-Dong
author_sort Chen, Ming-Kun
collection PubMed
description Chemoresistance is the most significant reason for the failure of cancer treatment following radical cystectomy. The response rate to the first-line chemotherapy of cisplatin and gemcitabine does not exceed 50%. In our previous research, elevated BMI1 (B-cell specific Moloney murine leukemia virus integration region 1) expression in bladder cancer conferred poor survival and was associated with chemoresistance. Herein, via analysis of The Cancer Genome Atlas database and validation of clinical samples, BMI1 was elevated in patients with bladder cancer resistant to cisplatin and gemcitabine, which conferred tumor relapse and progression. Consistently, BMI1 was markedly increased in the established cisplatin- and gemcitabine-resistant T24 cells (T24/DDP&GEM). Functionally, BMI1 overexpression dramatically promoted drug efflux, enhanced viability and decreased apoptosis of bladder cancer cells upon treatment with cisplatin or gemcitabine, whereas BMI1 downregulation reversed this effect. Mechanically, upon interaction with p53, BMI1 was recruited on the promoter of miR-3682-3p gene concomitant with an increase in the mono-ubiquitination of histone H2A lysine 119, leading to transcription repression of miR-3682-3p gene followed by derepression of ABCB1 (ATP binding cassette subfamily B member 1) gene. Moreover, suppression of P-glycoprotein by miR-3682-3p mimics or its inhibitor XR-9576, could significantly reverse chemoresistance of T24/DDP&GEM cells. These results provided a novel insight into a portion of the mechanism underlying BMI1-mediated chemoresistance in bladder cancer.
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spelling pubmed-83516962021-08-10 BMI1 activates P-glycoprotein via transcription repression of miR-3682-3p and enhances chemoresistance of bladder cancer cell Chen, Ming-Kun Zhou, Jun-Hao Wang, Peng Ye, Yun-lin Liu, Yang Zhou, Jia-Wei Chen, Zi-Jian Yang, Jian-Kun Liao, De-Ying Liang, Zhi-Jian Xie, Xiao Zhou, Qi-Zhao Xue, Kang-Yi Guo, Wen-Bin Xia, Ming Bao, Ji-Ming Yang, Cheng Duan, Hai-Feng Wang, Hong-Yi Huang, Zhi-Peng Qin, Zi-Ke Liu, Cun-Dong Aging (Albany NY) Research Paper Chemoresistance is the most significant reason for the failure of cancer treatment following radical cystectomy. The response rate to the first-line chemotherapy of cisplatin and gemcitabine does not exceed 50%. In our previous research, elevated BMI1 (B-cell specific Moloney murine leukemia virus integration region 1) expression in bladder cancer conferred poor survival and was associated with chemoresistance. Herein, via analysis of The Cancer Genome Atlas database and validation of clinical samples, BMI1 was elevated in patients with bladder cancer resistant to cisplatin and gemcitabine, which conferred tumor relapse and progression. Consistently, BMI1 was markedly increased in the established cisplatin- and gemcitabine-resistant T24 cells (T24/DDP&GEM). Functionally, BMI1 overexpression dramatically promoted drug efflux, enhanced viability and decreased apoptosis of bladder cancer cells upon treatment with cisplatin or gemcitabine, whereas BMI1 downregulation reversed this effect. Mechanically, upon interaction with p53, BMI1 was recruited on the promoter of miR-3682-3p gene concomitant with an increase in the mono-ubiquitination of histone H2A lysine 119, leading to transcription repression of miR-3682-3p gene followed by derepression of ABCB1 (ATP binding cassette subfamily B member 1) gene. Moreover, suppression of P-glycoprotein by miR-3682-3p mimics or its inhibitor XR-9576, could significantly reverse chemoresistance of T24/DDP&GEM cells. These results provided a novel insight into a portion of the mechanism underlying BMI1-mediated chemoresistance in bladder cancer. Impact Journals 2021-07-16 /pmc/articles/PMC8351696/ /pubmed/34270461 http://dx.doi.org/10.18632/aging.203277 Text en Copyright: © 2021 Chen et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Chen, Ming-Kun
Zhou, Jun-Hao
Wang, Peng
Ye, Yun-lin
Liu, Yang
Zhou, Jia-Wei
Chen, Zi-Jian
Yang, Jian-Kun
Liao, De-Ying
Liang, Zhi-Jian
Xie, Xiao
Zhou, Qi-Zhao
Xue, Kang-Yi
Guo, Wen-Bin
Xia, Ming
Bao, Ji-Ming
Yang, Cheng
Duan, Hai-Feng
Wang, Hong-Yi
Huang, Zhi-Peng
Qin, Zi-Ke
Liu, Cun-Dong
BMI1 activates P-glycoprotein via transcription repression of miR-3682-3p and enhances chemoresistance of bladder cancer cell
title BMI1 activates P-glycoprotein via transcription repression of miR-3682-3p and enhances chemoresistance of bladder cancer cell
title_full BMI1 activates P-glycoprotein via transcription repression of miR-3682-3p and enhances chemoresistance of bladder cancer cell
title_fullStr BMI1 activates P-glycoprotein via transcription repression of miR-3682-3p and enhances chemoresistance of bladder cancer cell
title_full_unstemmed BMI1 activates P-glycoprotein via transcription repression of miR-3682-3p and enhances chemoresistance of bladder cancer cell
title_short BMI1 activates P-glycoprotein via transcription repression of miR-3682-3p and enhances chemoresistance of bladder cancer cell
title_sort bmi1 activates p-glycoprotein via transcription repression of mir-3682-3p and enhances chemoresistance of bladder cancer cell
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8351696/
https://www.ncbi.nlm.nih.gov/pubmed/34270461
http://dx.doi.org/10.18632/aging.203277
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