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RUNX2 correlates with subtype-specific breast cancer in a human tissue microarray, and ectopic expression of Runx2 perturbs differentiation in the mouse mammary gland

RUNX2, a master regulator of osteogenesis, is oncogenic in the lymphoid lineage; however, little is known about its role in epithelial cancers. Upregulation of RUNX2 in cell lines correlates with increased invasiveness and the capacity to form osteolytic disease in models of breast and prostate canc...

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Autores principales: McDonald, Laura, Ferrari, Nicola, Terry, Anne, Bell, Margaret, Mohammed, Zahra M., Orange, Clare, Jenkins, Alma, Muller, William J., Gusterson, Barry A., Neil, James C., Edwards, Joanne, Morris, Joanna S., Cameron, Ewan R., Blyth, Karen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Limited 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4007404/
https://www.ncbi.nlm.nih.gov/pubmed/24626992
http://dx.doi.org/10.1242/dmm.015040
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author McDonald, Laura
Ferrari, Nicola
Terry, Anne
Bell, Margaret
Mohammed, Zahra M.
Orange, Clare
Jenkins, Alma
Muller, William J.
Gusterson, Barry A.
Neil, James C.
Edwards, Joanne
Morris, Joanna S.
Cameron, Ewan R.
Blyth, Karen
author_facet McDonald, Laura
Ferrari, Nicola
Terry, Anne
Bell, Margaret
Mohammed, Zahra M.
Orange, Clare
Jenkins, Alma
Muller, William J.
Gusterson, Barry A.
Neil, James C.
Edwards, Joanne
Morris, Joanna S.
Cameron, Ewan R.
Blyth, Karen
author_sort McDonald, Laura
collection PubMed
description RUNX2, a master regulator of osteogenesis, is oncogenic in the lymphoid lineage; however, little is known about its role in epithelial cancers. Upregulation of RUNX2 in cell lines correlates with increased invasiveness and the capacity to form osteolytic disease in models of breast and prostate cancer. However, most studies have analysed the effects of this gene in a limited number of cell lines and its role in primary breast cancer has not been resolved. Using a human tumour tissue microarray, we show that high RUNX2 expression is significantly associated with oestrogen receptor (ER)/progesterone receptor (PR)/HER2-negative breast cancers and that patients with high RUNX2 expression have a poorer survival rate than those with negative or low expression. We confirm RUNX2 as a gene that has a potentially important functional role in triple-negative breast cancer. To investigate the role of this gene in breast cancer, we made a transgenic model in which Runx2 is specifically expressed in murine mammary epithelium under the control of the mouse mammary tumour virus (MMTV) promoter. We show that ectopic Runx2 perturbs normal development in pubertal and lactating animals, delaying ductal elongation and inhibiting lobular alveolar differentiation. We also show that the Runx2 transgene elicits age-related, pre-neoplastic changes in the mammary epithelium of older transgenic animals, suggesting that elevated RUNX2 expression renders such tissue more susceptible to oncogenic changes and providing further evidence that this gene might have an important, context-dependent role in breast cancer.
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spelling pubmed-40074042014-05-14 RUNX2 correlates with subtype-specific breast cancer in a human tissue microarray, and ectopic expression of Runx2 perturbs differentiation in the mouse mammary gland McDonald, Laura Ferrari, Nicola Terry, Anne Bell, Margaret Mohammed, Zahra M. Orange, Clare Jenkins, Alma Muller, William J. Gusterson, Barry A. Neil, James C. Edwards, Joanne Morris, Joanna S. Cameron, Ewan R. Blyth, Karen Dis Model Mech Research Article RUNX2, a master regulator of osteogenesis, is oncogenic in the lymphoid lineage; however, little is known about its role in epithelial cancers. Upregulation of RUNX2 in cell lines correlates with increased invasiveness and the capacity to form osteolytic disease in models of breast and prostate cancer. However, most studies have analysed the effects of this gene in a limited number of cell lines and its role in primary breast cancer has not been resolved. Using a human tumour tissue microarray, we show that high RUNX2 expression is significantly associated with oestrogen receptor (ER)/progesterone receptor (PR)/HER2-negative breast cancers and that patients with high RUNX2 expression have a poorer survival rate than those with negative or low expression. We confirm RUNX2 as a gene that has a potentially important functional role in triple-negative breast cancer. To investigate the role of this gene in breast cancer, we made a transgenic model in which Runx2 is specifically expressed in murine mammary epithelium under the control of the mouse mammary tumour virus (MMTV) promoter. We show that ectopic Runx2 perturbs normal development in pubertal and lactating animals, delaying ductal elongation and inhibiting lobular alveolar differentiation. We also show that the Runx2 transgene elicits age-related, pre-neoplastic changes in the mammary epithelium of older transgenic animals, suggesting that elevated RUNX2 expression renders such tissue more susceptible to oncogenic changes and providing further evidence that this gene might have an important, context-dependent role in breast cancer. The Company of Biologists Limited 2014-05 2014-03-13 /pmc/articles/PMC4007404/ /pubmed/24626992 http://dx.doi.org/10.1242/dmm.015040 Text en © 2014. Published by The Company of Biologists Ltd This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
McDonald, Laura
Ferrari, Nicola
Terry, Anne
Bell, Margaret
Mohammed, Zahra M.
Orange, Clare
Jenkins, Alma
Muller, William J.
Gusterson, Barry A.
Neil, James C.
Edwards, Joanne
Morris, Joanna S.
Cameron, Ewan R.
Blyth, Karen
RUNX2 correlates with subtype-specific breast cancer in a human tissue microarray, and ectopic expression of Runx2 perturbs differentiation in the mouse mammary gland
title RUNX2 correlates with subtype-specific breast cancer in a human tissue microarray, and ectopic expression of Runx2 perturbs differentiation in the mouse mammary gland
title_full RUNX2 correlates with subtype-specific breast cancer in a human tissue microarray, and ectopic expression of Runx2 perturbs differentiation in the mouse mammary gland
title_fullStr RUNX2 correlates with subtype-specific breast cancer in a human tissue microarray, and ectopic expression of Runx2 perturbs differentiation in the mouse mammary gland
title_full_unstemmed RUNX2 correlates with subtype-specific breast cancer in a human tissue microarray, and ectopic expression of Runx2 perturbs differentiation in the mouse mammary gland
title_short RUNX2 correlates with subtype-specific breast cancer in a human tissue microarray, and ectopic expression of Runx2 perturbs differentiation in the mouse mammary gland
title_sort runx2 correlates with subtype-specific breast cancer in a human tissue microarray, and ectopic expression of runx2 perturbs differentiation in the mouse mammary gland
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4007404/
https://www.ncbi.nlm.nih.gov/pubmed/24626992
http://dx.doi.org/10.1242/dmm.015040
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