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1.
Oncogene ; 32(33): 3886-95, 2013 Aug 15.
Article in English | MEDLINE | ID: mdl-22986524

ABSTRACT

The mechanisms regulating breast cancer differentiation state are poorly understood. Of particular interest are molecular regulators controlling the highly aggressive and poorly differentiated traits of basal-like breast carcinomas. Here we show that the Polycomb factor EZH2 maintains the differentiation state of basal-like breast cancer cells, and promotes the expression of progenitor associated and basal-lineage genes. Specifically, EZH2 regulates the composition of basal-like breast cancer cell populations by promoting a 'bi-lineage' differentiation state, in which cells co-express basal- and luminal-lineage markers. We show that human basal-like breast cancers contain a subpopulation of bi-lineage cells, and that EZH2-deficient cells give rise to tumors with a decreased proportion of such cells. Bi-lineage cells express genes that are active in normal luminal progenitors, and possess increased colony-formation capacity, consistent with a primitive differentiation state. We found that GATA3, a driver of luminal differentiation, performs a function opposite to EZH2, acting to suppress bi-lineage identity and luminal-progenitor gene expression. GATA3 levels increase upon EZH2 silencing, mediating a decrease in bi-lineage cell numbers. Our findings reveal a novel role for EZH2 in controlling basal-like breast cancer differentiation state and intra-tumoral cell composition.


Subject(s)
Breast Neoplasms/genetics , Breast Neoplasms/metabolism , Breast Neoplasms/pathology , Cell Differentiation/physiology , Cell Lineage/physiology , Gene Expression Regulation, Neoplastic/physiology , Polycomb Repressive Complex 2/genetics , Animals , Blotting, Western , Cell Line, Tumor , Enhancer of Zeste Homolog 2 Protein , Female , Flow Cytometry , Humans , Immunohistochemistry , Mice , Mice, Inbred NOD , Mice, SCID , Oligonucleotide Array Sequence Analysis , Polycomb Repressive Complex 2/metabolism , Reverse Transcriptase Polymerase Chain Reaction , Transcriptome , Transplantation, Heterologous
2.
Oncogene ; 31(7): 907-17, 2012 Feb 16.
Article in English | MEDLINE | ID: mdl-21743488

ABSTRACT

A large fraction of ductal carcinoma in situ (DCIS), a non-invasive precursor lesion of invasive breast cancer, overexpresses the HER2/neu oncogene. The ducts of DCIS are abnormally filled with cells that evade apoptosis, but the underlying mechanisms remain incompletely understood. We overexpressed HER2 in mammary epithelial cells and observed growth factor-independent proliferation. When grown in extracellular matrix as three-dimensional spheroids, control cells developed a hollow lumen, but HER2-overexpressing cells populated the lumen by evading apoptosis. We demonstrate that HER2 overexpression in this cellular model of DCIS drives transcriptional upregulation of multiple components of the Notch survival pathway. Importantly, luminal filling required upregulation of a signaling pathway comprising Notch3, its cleaved intracellular domain and the transcriptional regulator HES1, resulting in elevated levels of c-MYC and cyclin D1. In line with HER2-Notch3 collaboration, drugs intercepting either arm reverted the DCIS-like phenotype. In addition, we report upregulation of Notch3 in hyperplastic lesions of HER2 transgenic animals, as well as an association between HER2 levels and expression levels of components of the Notch pathway in tumor specimens of breast cancer patients. Therefore, it is conceivable that the integration of the Notch and HER2 signaling pathways contributes to the pathophysiology of DCIS.


Subject(s)
Breast Neoplasms/genetics , Carcinoma, Intraductal, Noninfiltrating/genetics , Receptor, ErbB-2/genetics , Receptors, Notch/genetics , Animals , Breast Neoplasms/metabolism , Carcinoma, Intraductal, Noninfiltrating/metabolism , Cell Line , Cell Proliferation , Epidermal Growth Factor/pharmacology , Epithelial Cells/drug effects , Epithelial Cells/metabolism , Female , Gene Expression Profiling , Green Fluorescent Proteins/genetics , Green Fluorescent Proteins/metabolism , HEK293 Cells , Humans , Immunoblotting , Mammary Glands, Human/cytology , Mammary Glands, Human/metabolism , Mice , Mice, Transgenic , Microscopy, Confocal , Models, Biological , Oligonucleotide Array Sequence Analysis , RNA Interference , Receptor, ErbB-2/metabolism , Receptor, Notch3 , Receptors, Notch/metabolism , Reverse Transcriptase Polymerase Chain Reaction , Signal Transduction/genetics , Transfection
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