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Pea3 Transcription Factors and Wnt1-Induced Mouse Mammary Neoplasia

The role of the PEA3 subfamily of Ets transcription factors in breast neoplasia is controversial. Although overexpression of PEA3 (E1AF/ETV4), and of the related factors ERM (ETV5) and ER81 (ETV1), have been observed in human and mouse breast tumors, PEA3 factors have also been ascribed a tumor supp...

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Autores principales: Baker, Rebecca, Kent, Claire V., Silbermann, Rachel A., Hassell, John A., Young, Lawrence J. T., Howe, Louise R.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2809747/
https://www.ncbi.nlm.nih.gov/pubmed/20107508
http://dx.doi.org/10.1371/journal.pone.0008854
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author Baker, Rebecca
Kent, Claire V.
Silbermann, Rachel A.
Hassell, John A.
Young, Lawrence J. T.
Howe, Louise R.
author_facet Baker, Rebecca
Kent, Claire V.
Silbermann, Rachel A.
Hassell, John A.
Young, Lawrence J. T.
Howe, Louise R.
author_sort Baker, Rebecca
collection PubMed
description The role of the PEA3 subfamily of Ets transcription factors in breast neoplasia is controversial. Although overexpression of PEA3 (E1AF/ETV4), and of the related factors ERM (ETV5) and ER81 (ETV1), have been observed in human and mouse breast tumors, PEA3 factors have also been ascribed a tumor suppressor function. Here, we utilized the MMTV/Wnt1 mouse strain to further interrogate the role of PEA3 transcription factors in mammary tumorigenesis based on our previous observation that Pea3 is highly expressed in MMTV/Wnt1 mammary tumors. Pea3 expression in mouse mammary tissues was visualized using a Pea3(NLSlacZ) reporter strain. In normal mammary glands, Pea3 expression is predominantly confined to myoepithelial cells. Wnt1 transgene expression induced marked amplification of this cell compartment in nontumorous mammary glands, accompanied by an apparent increase in Pea3 expression. The pattern of Pea3 expression in MMTV/Wnt1 mammary glands recapitulated the cellular profile of activated β-catenin/TCF signaling, which was visualized using both β-catenin immunohistochemistry and the β-catenin/TCF-responsive reporter Axin2(NLSlacZ). To test the requirement for PEA3 factors in Wnt1-induced tumorigenesis, we employed a mammary-targeted dominant negative PEA3 transgene, ΔNPEA3En. Expression of ΔNPEA3En delayed early-onset tumor formation in MMTV/Wnt1 virgin females (P = 0.03), suggesting a requirement for PEA3 factor function for Wnt1-driven tumor formation. Consistent with this observation, expression of the ΔNPEA3En transgene was profoundly reduced in mammary tumors compared to nontumorous mammary glands from bigenic MMTV/Wnt1, MMTV/ΔNPEA3En mice (P = 0.01). Our data provide the first description of Wnt1-mediated expansion of the Pea3-expressing myoepithelial compartment in nontumorous mammary glands. Consistent with this observation, mammary myoepithelium was selectively responsive to Wnt1. Together these data suggest the MMTV/Wnt1 strain as a potential model of basal breast cancer. Furthermore, this study provides evidence for a protumorigenic role of PEA3 factors in breast neoplasia, and supports targeting the PEA3 transcription factor family in breast cancer.
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spelling pubmed-28097472010-01-28 Pea3 Transcription Factors and Wnt1-Induced Mouse Mammary Neoplasia Baker, Rebecca Kent, Claire V. Silbermann, Rachel A. Hassell, John A. Young, Lawrence J. T. Howe, Louise R. PLoS One Research Article The role of the PEA3 subfamily of Ets transcription factors in breast neoplasia is controversial. Although overexpression of PEA3 (E1AF/ETV4), and of the related factors ERM (ETV5) and ER81 (ETV1), have been observed in human and mouse breast tumors, PEA3 factors have also been ascribed a tumor suppressor function. Here, we utilized the MMTV/Wnt1 mouse strain to further interrogate the role of PEA3 transcription factors in mammary tumorigenesis based on our previous observation that Pea3 is highly expressed in MMTV/Wnt1 mammary tumors. Pea3 expression in mouse mammary tissues was visualized using a Pea3(NLSlacZ) reporter strain. In normal mammary glands, Pea3 expression is predominantly confined to myoepithelial cells. Wnt1 transgene expression induced marked amplification of this cell compartment in nontumorous mammary glands, accompanied by an apparent increase in Pea3 expression. The pattern of Pea3 expression in MMTV/Wnt1 mammary glands recapitulated the cellular profile of activated β-catenin/TCF signaling, which was visualized using both β-catenin immunohistochemistry and the β-catenin/TCF-responsive reporter Axin2(NLSlacZ). To test the requirement for PEA3 factors in Wnt1-induced tumorigenesis, we employed a mammary-targeted dominant negative PEA3 transgene, ΔNPEA3En. Expression of ΔNPEA3En delayed early-onset tumor formation in MMTV/Wnt1 virgin females (P = 0.03), suggesting a requirement for PEA3 factor function for Wnt1-driven tumor formation. Consistent with this observation, expression of the ΔNPEA3En transgene was profoundly reduced in mammary tumors compared to nontumorous mammary glands from bigenic MMTV/Wnt1, MMTV/ΔNPEA3En mice (P = 0.01). Our data provide the first description of Wnt1-mediated expansion of the Pea3-expressing myoepithelial compartment in nontumorous mammary glands. Consistent with this observation, mammary myoepithelium was selectively responsive to Wnt1. Together these data suggest the MMTV/Wnt1 strain as a potential model of basal breast cancer. Furthermore, this study provides evidence for a protumorigenic role of PEA3 factors in breast neoplasia, and supports targeting the PEA3 transcription factor family in breast cancer. Public Library of Science 2010-01-22 /pmc/articles/PMC2809747/ /pubmed/20107508 http://dx.doi.org/10.1371/journal.pone.0008854 Text en Baker et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Baker, Rebecca
Kent, Claire V.
Silbermann, Rachel A.
Hassell, John A.
Young, Lawrence J. T.
Howe, Louise R.
Pea3 Transcription Factors and Wnt1-Induced Mouse Mammary Neoplasia
title Pea3 Transcription Factors and Wnt1-Induced Mouse Mammary Neoplasia
title_full Pea3 Transcription Factors and Wnt1-Induced Mouse Mammary Neoplasia
title_fullStr Pea3 Transcription Factors and Wnt1-Induced Mouse Mammary Neoplasia
title_full_unstemmed Pea3 Transcription Factors and Wnt1-Induced Mouse Mammary Neoplasia
title_short Pea3 Transcription Factors and Wnt1-Induced Mouse Mammary Neoplasia
title_sort pea3 transcription factors and wnt1-induced mouse mammary neoplasia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2809747/
https://www.ncbi.nlm.nih.gov/pubmed/20107508
http://dx.doi.org/10.1371/journal.pone.0008854
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