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Bmi-1 induces radioresistance in MCF-7 mammary carcinoma cells

Bmi-1, a member of the polycomb family, it is involved in self renewal of stem cells and functions as an oncogene in many malignant human cancer types. Recent studies have demonstrated that Bmi-1 is a predictive factor for poor patient prognosis. However, the underlying mechanisms of radioresistance...

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Autores principales: LIU, ZHI-GANG, LIU, LI, XU, LI-HUA, YI, WEI, TAO, YA-LAN, TU, ZI-WEI, LI, MAN-ZHI, ZENG, MU-SHENG, XIA, YUN-FEI
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3583403/
https://www.ncbi.nlm.nih.gov/pubmed/22209830
http://dx.doi.org/10.3892/or.2011.1615
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author LIU, ZHI-GANG
LIU, LI
XU, LI-HUA
YI, WEI
TAO, YA-LAN
TU, ZI-WEI
LI, MAN-ZHI
ZENG, MU-SHENG
XIA, YUN-FEI
author_facet LIU, ZHI-GANG
LIU, LI
XU, LI-HUA
YI, WEI
TAO, YA-LAN
TU, ZI-WEI
LI, MAN-ZHI
ZENG, MU-SHENG
XIA, YUN-FEI
author_sort LIU, ZHI-GANG
collection PubMed
description Bmi-1, a member of the polycomb family, it is involved in self renewal of stem cells and functions as an oncogene in many malignant human cancer types. Recent studies have demonstrated that Bmi-1 is a predictive factor for poor patient prognosis. However, the underlying mechanisms of radioresistance mediated by Bmi-1 are poorly understood. In this study, the dose-survival relationship was analyzed using a clonogenic survival assay and combined radiation treatment with Bmi-1 overexpression or silencing. DNA double-strand break (DSB) and repair was assessed by immunofluorescence staining of γH2AX foci. In addition, mitochondrial membrane potential was detected between Bmi-1 knockdown and control MCF-7 cells after irradiation. Apoptosis and cell cycle were evaluated by flow cytometry. We found that exposure of MCF-7 cells overexpressing Bmi-1 to ionizing radiation resulted in dramatically enhanced survival relative to control cells, whereas cells with silenced Bmi-1 showed markedly reduced survival. Bmi-1 inhibition significantly increased DSBs and decreased DSB repair. Furthermore, Bmi-1 knockdown induced loss of mitochondrial membrane potential and enhanced apoptosis by up-regulating p53, p21, Bax expression and down-regulating p-AKT and Bcl-2 expression. These results indicate that Bmi-1 may play an important role in radiosensitivity, and the suppression of its expression might be a potential therapeutic target for breast cancer.
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spelling pubmed-35834032013-02-28 Bmi-1 induces radioresistance in MCF-7 mammary carcinoma cells LIU, ZHI-GANG LIU, LI XU, LI-HUA YI, WEI TAO, YA-LAN TU, ZI-WEI LI, MAN-ZHI ZENG, MU-SHENG XIA, YUN-FEI Oncol Rep Articles Bmi-1, a member of the polycomb family, it is involved in self renewal of stem cells and functions as an oncogene in many malignant human cancer types. Recent studies have demonstrated that Bmi-1 is a predictive factor for poor patient prognosis. However, the underlying mechanisms of radioresistance mediated by Bmi-1 are poorly understood. In this study, the dose-survival relationship was analyzed using a clonogenic survival assay and combined radiation treatment with Bmi-1 overexpression or silencing. DNA double-strand break (DSB) and repair was assessed by immunofluorescence staining of γH2AX foci. In addition, mitochondrial membrane potential was detected between Bmi-1 knockdown and control MCF-7 cells after irradiation. Apoptosis and cell cycle were evaluated by flow cytometry. We found that exposure of MCF-7 cells overexpressing Bmi-1 to ionizing radiation resulted in dramatically enhanced survival relative to control cells, whereas cells with silenced Bmi-1 showed markedly reduced survival. Bmi-1 inhibition significantly increased DSBs and decreased DSB repair. Furthermore, Bmi-1 knockdown induced loss of mitochondrial membrane potential and enhanced apoptosis by up-regulating p53, p21, Bax expression and down-regulating p-AKT and Bcl-2 expression. These results indicate that Bmi-1 may play an important role in radiosensitivity, and the suppression of its expression might be a potential therapeutic target for breast cancer. D.A. Spandidos 2011-12-30 2012-04 /pmc/articles/PMC3583403/ /pubmed/22209830 http://dx.doi.org/10.3892/or.2011.1615 Text en Copyright © 2012, Spandidos Publications http://creativecommons.org/licenses/by/3.0 This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Articles
LIU, ZHI-GANG
LIU, LI
XU, LI-HUA
YI, WEI
TAO, YA-LAN
TU, ZI-WEI
LI, MAN-ZHI
ZENG, MU-SHENG
XIA, YUN-FEI
Bmi-1 induces radioresistance in MCF-7 mammary carcinoma cells
title Bmi-1 induces radioresistance in MCF-7 mammary carcinoma cells
title_full Bmi-1 induces radioresistance in MCF-7 mammary carcinoma cells
title_fullStr Bmi-1 induces radioresistance in MCF-7 mammary carcinoma cells
title_full_unstemmed Bmi-1 induces radioresistance in MCF-7 mammary carcinoma cells
title_short Bmi-1 induces radioresistance in MCF-7 mammary carcinoma cells
title_sort bmi-1 induces radioresistance in mcf-7 mammary carcinoma cells
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3583403/
https://www.ncbi.nlm.nih.gov/pubmed/22209830
http://dx.doi.org/10.3892/or.2011.1615
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