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ELF5 Suppresses Estrogen Sensitivity and Underpins the Acquisition of Antiestrogen Resistance in Luminal Breast Cancer

We have previously shown that during pregnancy the E-twenty-six (ETS) transcription factor ELF5 directs the differentiation of mammary progenitor cells toward the estrogen receptor (ER)-negative and milk producing cell lineage, raising the possibility that ELF5 may suppress the estrogen sensitivity...

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Autores principales: Kalyuga, Maria, Gallego-Ortega, David, Lee, Heather J., Roden, Daniel L., Cowley, Mark J., Caldon, C. Elizabeth, Stone, Andrew, Allerdice, Stephanie L., Valdes-Mora, Fatima, Launchbury, Rosalind, Statham, Aaron L., Armstrong, Nicola, Alles, M. Chehani, Young, Adelaide, Egger, Andrea, Au, Wendy, Piggin, Catherine L., Evans, Cara J., Ledger, Anita, Brummer, Tilman, Oakes, Samantha R., Kaplan, Warren, Gee, Julia M. W., Nicholson, Robert I., Sutherland, Robert L., Swarbrick, Alexander, Naylor, Matthew J., Clark, Susan J., Carroll, Jason S., Ormandy, Christopher J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3531499/
https://www.ncbi.nlm.nih.gov/pubmed/23300383
http://dx.doi.org/10.1371/journal.pbio.1001461
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author Kalyuga, Maria
Gallego-Ortega, David
Lee, Heather J.
Roden, Daniel L.
Cowley, Mark J.
Caldon, C. Elizabeth
Stone, Andrew
Allerdice, Stephanie L.
Valdes-Mora, Fatima
Launchbury, Rosalind
Statham, Aaron L.
Armstrong, Nicola
Alles, M. Chehani
Young, Adelaide
Egger, Andrea
Au, Wendy
Piggin, Catherine L.
Evans, Cara J.
Ledger, Anita
Brummer, Tilman
Oakes, Samantha R.
Kaplan, Warren
Gee, Julia M. W.
Nicholson, Robert I.
Sutherland, Robert L.
Swarbrick, Alexander
Naylor, Matthew J.
Clark, Susan J.
Carroll, Jason S.
Ormandy, Christopher J.
author_facet Kalyuga, Maria
Gallego-Ortega, David
Lee, Heather J.
Roden, Daniel L.
Cowley, Mark J.
Caldon, C. Elizabeth
Stone, Andrew
Allerdice, Stephanie L.
Valdes-Mora, Fatima
Launchbury, Rosalind
Statham, Aaron L.
Armstrong, Nicola
Alles, M. Chehani
Young, Adelaide
Egger, Andrea
Au, Wendy
Piggin, Catherine L.
Evans, Cara J.
Ledger, Anita
Brummer, Tilman
Oakes, Samantha R.
Kaplan, Warren
Gee, Julia M. W.
Nicholson, Robert I.
Sutherland, Robert L.
Swarbrick, Alexander
Naylor, Matthew J.
Clark, Susan J.
Carroll, Jason S.
Ormandy, Christopher J.
author_sort Kalyuga, Maria
collection PubMed
description We have previously shown that during pregnancy the E-twenty-six (ETS) transcription factor ELF5 directs the differentiation of mammary progenitor cells toward the estrogen receptor (ER)-negative and milk producing cell lineage, raising the possibility that ELF5 may suppress the estrogen sensitivity of breast cancers. To test this we constructed inducible models of ELF5 expression in ER positive luminal breast cancer cells and interrogated them using transcript profiling and chromatin immunoprecipitation of DNA followed by DNA sequencing (ChIP-Seq). ELF5 suppressed ER and FOXA1 expression and broadly suppressed ER-driven patterns of gene expression including sets of genes distinguishing the luminal molecular subtype. Direct transcriptional targets of ELF5, which included FOXA1, EGFR, and MYC, accurately classified a large cohort of breast cancers into their intrinsic molecular subtypes, predicted ER status with high precision, and defined groups with differential prognosis. Knockdown of ELF5 in basal breast cancer cell lines suppressed basal patterns of gene expression and produced a shift in molecular subtype toward the claudin-low and normal-like groups. Luminal breast cancer cells that acquired resistance to the antiestrogen Tamoxifen showed greatly elevated levels of ELF5 and its transcriptional signature, and became dependent on ELF5 for proliferation, compared to the parental cells. Thus ELF5 provides a key transcriptional determinant of breast cancer molecular subtype by suppression of estrogen sensitivity in luminal breast cancer cells and promotion of basal characteristics in basal breast cancer cells, an action that may be utilised to acquire antiestrogen resistance.
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spelling pubmed-35314992013-01-08 ELF5 Suppresses Estrogen Sensitivity and Underpins the Acquisition of Antiestrogen Resistance in Luminal Breast Cancer Kalyuga, Maria Gallego-Ortega, David Lee, Heather J. Roden, Daniel L. Cowley, Mark J. Caldon, C. Elizabeth Stone, Andrew Allerdice, Stephanie L. Valdes-Mora, Fatima Launchbury, Rosalind Statham, Aaron L. Armstrong, Nicola Alles, M. Chehani Young, Adelaide Egger, Andrea Au, Wendy Piggin, Catherine L. Evans, Cara J. Ledger, Anita Brummer, Tilman Oakes, Samantha R. Kaplan, Warren Gee, Julia M. W. Nicholson, Robert I. Sutherland, Robert L. Swarbrick, Alexander Naylor, Matthew J. Clark, Susan J. Carroll, Jason S. Ormandy, Christopher J. PLoS Biol Research Article We have previously shown that during pregnancy the E-twenty-six (ETS) transcription factor ELF5 directs the differentiation of mammary progenitor cells toward the estrogen receptor (ER)-negative and milk producing cell lineage, raising the possibility that ELF5 may suppress the estrogen sensitivity of breast cancers. To test this we constructed inducible models of ELF5 expression in ER positive luminal breast cancer cells and interrogated them using transcript profiling and chromatin immunoprecipitation of DNA followed by DNA sequencing (ChIP-Seq). ELF5 suppressed ER and FOXA1 expression and broadly suppressed ER-driven patterns of gene expression including sets of genes distinguishing the luminal molecular subtype. Direct transcriptional targets of ELF5, which included FOXA1, EGFR, and MYC, accurately classified a large cohort of breast cancers into their intrinsic molecular subtypes, predicted ER status with high precision, and defined groups with differential prognosis. Knockdown of ELF5 in basal breast cancer cell lines suppressed basal patterns of gene expression and produced a shift in molecular subtype toward the claudin-low and normal-like groups. Luminal breast cancer cells that acquired resistance to the antiestrogen Tamoxifen showed greatly elevated levels of ELF5 and its transcriptional signature, and became dependent on ELF5 for proliferation, compared to the parental cells. Thus ELF5 provides a key transcriptional determinant of breast cancer molecular subtype by suppression of estrogen sensitivity in luminal breast cancer cells and promotion of basal characteristics in basal breast cancer cells, an action that may be utilised to acquire antiestrogen resistance. Public Library of Science 2012-12-27 /pmc/articles/PMC3531499/ /pubmed/23300383 http://dx.doi.org/10.1371/journal.pbio.1001461 Text en © 2012 Kalyuga 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
Kalyuga, Maria
Gallego-Ortega, David
Lee, Heather J.
Roden, Daniel L.
Cowley, Mark J.
Caldon, C. Elizabeth
Stone, Andrew
Allerdice, Stephanie L.
Valdes-Mora, Fatima
Launchbury, Rosalind
Statham, Aaron L.
Armstrong, Nicola
Alles, M. Chehani
Young, Adelaide
Egger, Andrea
Au, Wendy
Piggin, Catherine L.
Evans, Cara J.
Ledger, Anita
Brummer, Tilman
Oakes, Samantha R.
Kaplan, Warren
Gee, Julia M. W.
Nicholson, Robert I.
Sutherland, Robert L.
Swarbrick, Alexander
Naylor, Matthew J.
Clark, Susan J.
Carroll, Jason S.
Ormandy, Christopher J.
ELF5 Suppresses Estrogen Sensitivity and Underpins the Acquisition of Antiestrogen Resistance in Luminal Breast Cancer
title ELF5 Suppresses Estrogen Sensitivity and Underpins the Acquisition of Antiestrogen Resistance in Luminal Breast Cancer
title_full ELF5 Suppresses Estrogen Sensitivity and Underpins the Acquisition of Antiestrogen Resistance in Luminal Breast Cancer
title_fullStr ELF5 Suppresses Estrogen Sensitivity and Underpins the Acquisition of Antiestrogen Resistance in Luminal Breast Cancer
title_full_unstemmed ELF5 Suppresses Estrogen Sensitivity and Underpins the Acquisition of Antiestrogen Resistance in Luminal Breast Cancer
title_short ELF5 Suppresses Estrogen Sensitivity and Underpins the Acquisition of Antiestrogen Resistance in Luminal Breast Cancer
title_sort elf5 suppresses estrogen sensitivity and underpins the acquisition of antiestrogen resistance in luminal breast cancer
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3531499/
https://www.ncbi.nlm.nih.gov/pubmed/23300383
http://dx.doi.org/10.1371/journal.pbio.1001461
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