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A p53-independent role of Mdm2 in estrogen-mediated activation of breast cancer cell proliferation

INTRODUCTION: Estrogen receptor positive breast cancers often have high levels of Mdm2. We investigated if estrogen signaling in such breast cancers occurred through an Mdm2 mediated pathway with subsequent inactivation of p53. METHODS: We examined the effect of long-term 17β-estradiol (E2) treatmen...

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Autores principales: Brekman, Angelika, Singh, Kathryn E, Polotskaia, Alla, Kundu, Nandini, Bargonetti, Jill
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3109566/
https://www.ncbi.nlm.nih.gov/pubmed/21223569
http://dx.doi.org/10.1186/bcr2804
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author Brekman, Angelika
Singh, Kathryn E
Polotskaia, Alla
Kundu, Nandini
Bargonetti, Jill
author_facet Brekman, Angelika
Singh, Kathryn E
Polotskaia, Alla
Kundu, Nandini
Bargonetti, Jill
author_sort Brekman, Angelika
collection PubMed
description INTRODUCTION: Estrogen receptor positive breast cancers often have high levels of Mdm2. We investigated if estrogen signaling in such breast cancers occurred through an Mdm2 mediated pathway with subsequent inactivation of p53. METHODS: We examined the effect of long-term 17β-estradiol (E2) treatment (five days) on the p53-Mdm2 pathway in estrogen receptor alpha (ERα) positive breast cancer cell lines that contain wild-type p53 (MCF-7 and ZR75-1). We assessed the influence of estrogen by examining cell proliferation changes, activation of transcription of p53 target genes, p53-chromatin interactions and cell cycle profile changes. To determine the effects of Mdm2 and p53 knockdown on the estrogen-mediated proliferation signals we generated MCF-7 cell lines with inducible shRNA for mdm2 or p53 and monitored their influence on estrogen-mediated outcomes. To further address the p53-independent effect of Mdm2 in ERα positive breast cancer we generated cell lines with inducible shRNA to mdm2 using the mutant p53 expressing cell line T-47D. RESULTS: Estrogen increased the Mdm2 protein level in MCF-7 cells without decreasing the p53 protein level. After estrogen treatment of MCF-7 cells, down-regulation of basal transcription of p53 target genes puma and p21 was observed. Estrogen treatment also down-regulated etoposide activated transcription of puma, but not p21. Mdm2 knockdown in MCF-7 cells increased p21 mRNA and protein, decreased cell growth in 3D matrigel and also decreased estrogen-induced cell proliferation in 2D culture. In contrast, knockdown of p53 had no effect on estrogen-induced cell proliferation. In T-47D cells with mutant p53, the knockdown of Mdm2 decreased estrogen-mediated cell proliferation but did not increase p21 protein. CONCLUSIONS: Estrogen-induced breast cancer cell proliferation required a p53-independent role of Mdm2. The combined influence of genetic and environmental factors on the tumor promoting effects of estrogen implicated Mdm2 as a strong contributor to the bypass of cell cycle checkpoints. The novel finding that p53 was not the key target of Mdm2 in the estrogen activation of cell proliferation could have great benefit for future Mdm2-targeted breast cancer therapies.
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spelling pubmed-31095662011-06-08 A p53-independent role of Mdm2 in estrogen-mediated activation of breast cancer cell proliferation Brekman, Angelika Singh, Kathryn E Polotskaia, Alla Kundu, Nandini Bargonetti, Jill Breast Cancer Res Research Article INTRODUCTION: Estrogen receptor positive breast cancers often have high levels of Mdm2. We investigated if estrogen signaling in such breast cancers occurred through an Mdm2 mediated pathway with subsequent inactivation of p53. METHODS: We examined the effect of long-term 17β-estradiol (E2) treatment (five days) on the p53-Mdm2 pathway in estrogen receptor alpha (ERα) positive breast cancer cell lines that contain wild-type p53 (MCF-7 and ZR75-1). We assessed the influence of estrogen by examining cell proliferation changes, activation of transcription of p53 target genes, p53-chromatin interactions and cell cycle profile changes. To determine the effects of Mdm2 and p53 knockdown on the estrogen-mediated proliferation signals we generated MCF-7 cell lines with inducible shRNA for mdm2 or p53 and monitored their influence on estrogen-mediated outcomes. To further address the p53-independent effect of Mdm2 in ERα positive breast cancer we generated cell lines with inducible shRNA to mdm2 using the mutant p53 expressing cell line T-47D. RESULTS: Estrogen increased the Mdm2 protein level in MCF-7 cells without decreasing the p53 protein level. After estrogen treatment of MCF-7 cells, down-regulation of basal transcription of p53 target genes puma and p21 was observed. Estrogen treatment also down-regulated etoposide activated transcription of puma, but not p21. Mdm2 knockdown in MCF-7 cells increased p21 mRNA and protein, decreased cell growth in 3D matrigel and also decreased estrogen-induced cell proliferation in 2D culture. In contrast, knockdown of p53 had no effect on estrogen-induced cell proliferation. In T-47D cells with mutant p53, the knockdown of Mdm2 decreased estrogen-mediated cell proliferation but did not increase p21 protein. CONCLUSIONS: Estrogen-induced breast cancer cell proliferation required a p53-independent role of Mdm2. The combined influence of genetic and environmental factors on the tumor promoting effects of estrogen implicated Mdm2 as a strong contributor to the bypass of cell cycle checkpoints. The novel finding that p53 was not the key target of Mdm2 in the estrogen activation of cell proliferation could have great benefit for future Mdm2-targeted breast cancer therapies. BioMed Central 2011 2011-01-11 /pmc/articles/PMC3109566/ /pubmed/21223569 http://dx.doi.org/10.1186/bcr2804 Text en Copyright ©2011 Brekman et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Brekman, Angelika
Singh, Kathryn E
Polotskaia, Alla
Kundu, Nandini
Bargonetti, Jill
A p53-independent role of Mdm2 in estrogen-mediated activation of breast cancer cell proliferation
title A p53-independent role of Mdm2 in estrogen-mediated activation of breast cancer cell proliferation
title_full A p53-independent role of Mdm2 in estrogen-mediated activation of breast cancer cell proliferation
title_fullStr A p53-independent role of Mdm2 in estrogen-mediated activation of breast cancer cell proliferation
title_full_unstemmed A p53-independent role of Mdm2 in estrogen-mediated activation of breast cancer cell proliferation
title_short A p53-independent role of Mdm2 in estrogen-mediated activation of breast cancer cell proliferation
title_sort p53-independent role of mdm2 in estrogen-mediated activation of breast cancer cell proliferation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3109566/
https://www.ncbi.nlm.nih.gov/pubmed/21223569
http://dx.doi.org/10.1186/bcr2804
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