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Macrophage-Elicited Loss of Estrogen Receptor Alpha in Breast Cancer Cells via Involvement of MAPK and c-Jun at the ESR1 Genomic Locus

Estrogen receptor alpha (ERα, ESR1) is a pivotal transcriptional regulator of breast cancer physiology and is targeted by endocrine therapies. Loss of ERα activity or expression is an indication of endocrine resistance and is associated with increased risk of tumor recurrence and worse prognosis. In...

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Autores principales: Stossi, Fabio, Madak-Erdoğan, Zeynep, Katzenellenbogen, Benita S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3223561/
https://www.ncbi.nlm.nih.gov/pubmed/21860415
http://dx.doi.org/10.1038/onc.2011.370
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author Stossi, Fabio
Madak-Erdoğan, Zeynep
Katzenellenbogen, Benita S.
author_facet Stossi, Fabio
Madak-Erdoğan, Zeynep
Katzenellenbogen, Benita S.
author_sort Stossi, Fabio
collection PubMed
description Estrogen receptor alpha (ERα, ESR1) is a pivotal transcriptional regulator of breast cancer physiology and is targeted by endocrine therapies. Loss of ERα activity or expression is an indication of endocrine resistance and is associated with increased risk of tumor recurrence and worse prognosis. In this study we sought to investigate whether elements of the tumor microenvironment, namely macrophages, would impact on ERα and we found that macrophage-derived factors caused loss of ERα expression in breast cancer cells. Conditioned media from macrophages caused activation of several intracellular pathways in breast cancer cells of which c-Src, PKC and MAPK were essential for loss of ERα expression. Moreover, a prolonged hyper-activation of MAPK was observed. The activation of this kinase cascade resulted in recruitment of Extracellular signal Regulated Kinase 2 (ERK2) directly to chromatin at the ESR1 gene locus in a process that was dependent upon activation and recruitment of the c-Jun transcription factor. Thus, we identify a novel mechanism for loss of ERα expression in breast cancer cells via macrophage activation of kinase cascades in the cancer cells causing transcriptional repression of the ESR1 gene by a direct chromatin action of a c-Jun/ERK2 complex. The findings in this study support an alternative mechanism, not intrinsic to the tumor cell but derived from the cross-talk with the tumor microenvironment, that could lead to endocrine resistance and might be targeted therapeutically to prevent loss of ERα expression in breast tumors.
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spelling pubmed-32235612012-10-05 Macrophage-Elicited Loss of Estrogen Receptor Alpha in Breast Cancer Cells via Involvement of MAPK and c-Jun at the ESR1 Genomic Locus Stossi, Fabio Madak-Erdoğan, Zeynep Katzenellenbogen, Benita S. Oncogene Article Estrogen receptor alpha (ERα, ESR1) is a pivotal transcriptional regulator of breast cancer physiology and is targeted by endocrine therapies. Loss of ERα activity or expression is an indication of endocrine resistance and is associated with increased risk of tumor recurrence and worse prognosis. In this study we sought to investigate whether elements of the tumor microenvironment, namely macrophages, would impact on ERα and we found that macrophage-derived factors caused loss of ERα expression in breast cancer cells. Conditioned media from macrophages caused activation of several intracellular pathways in breast cancer cells of which c-Src, PKC and MAPK were essential for loss of ERα expression. Moreover, a prolonged hyper-activation of MAPK was observed. The activation of this kinase cascade resulted in recruitment of Extracellular signal Regulated Kinase 2 (ERK2) directly to chromatin at the ESR1 gene locus in a process that was dependent upon activation and recruitment of the c-Jun transcription factor. Thus, we identify a novel mechanism for loss of ERα expression in breast cancer cells via macrophage activation of kinase cascades in the cancer cells causing transcriptional repression of the ESR1 gene by a direct chromatin action of a c-Jun/ERK2 complex. The findings in this study support an alternative mechanism, not intrinsic to the tumor cell but derived from the cross-talk with the tumor microenvironment, that could lead to endocrine resistance and might be targeted therapeutically to prevent loss of ERα expression in breast tumors. 2011-08-22 2012-04-05 /pmc/articles/PMC3223561/ /pubmed/21860415 http://dx.doi.org/10.1038/onc.2011.370 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Stossi, Fabio
Madak-Erdoğan, Zeynep
Katzenellenbogen, Benita S.
Macrophage-Elicited Loss of Estrogen Receptor Alpha in Breast Cancer Cells via Involvement of MAPK and c-Jun at the ESR1 Genomic Locus
title Macrophage-Elicited Loss of Estrogen Receptor Alpha in Breast Cancer Cells via Involvement of MAPK and c-Jun at the ESR1 Genomic Locus
title_full Macrophage-Elicited Loss of Estrogen Receptor Alpha in Breast Cancer Cells via Involvement of MAPK and c-Jun at the ESR1 Genomic Locus
title_fullStr Macrophage-Elicited Loss of Estrogen Receptor Alpha in Breast Cancer Cells via Involvement of MAPK and c-Jun at the ESR1 Genomic Locus
title_full_unstemmed Macrophage-Elicited Loss of Estrogen Receptor Alpha in Breast Cancer Cells via Involvement of MAPK and c-Jun at the ESR1 Genomic Locus
title_short Macrophage-Elicited Loss of Estrogen Receptor Alpha in Breast Cancer Cells via Involvement of MAPK and c-Jun at the ESR1 Genomic Locus
title_sort macrophage-elicited loss of estrogen receptor alpha in breast cancer cells via involvement of mapk and c-jun at the esr1 genomic locus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3223561/
https://www.ncbi.nlm.nih.gov/pubmed/21860415
http://dx.doi.org/10.1038/onc.2011.370
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