Hayat, A;
Carter, EP;
King, HW;
Ors, A;
Doe, A;
Teijeiro, SA;
Charrot, S;
Godinho, S;
Cutillas, P;
Mohammed, H;
et al.
Hayat, A; Carter, EP; King, HW; Ors, A; Doe, A; Teijeiro, SA; Charrot, S; Godinho, S; Cutillas, P; Mohammed, H; Grose, RP; Ficz, G
(2023)
Low HER2 expression in normal breast epithelium enables dedifferentiation and malignant transformation via chromatin opening.
Dis Model Mech, 16 (2).
dmm049894.
ISSN 1754-8411
https://doi.org/10.1242/dmm.049894
SGUL Authors: Hayat, Ateequllah
Abstract
Overexpression of the HER2 protein in breast cancer patients is a predictor of poor prognosis and resistance to therapies. We used an inducible breast cancer transformation system that allows investigation of early molecular changes. HER2 overexpression to similar levels as those observed in a subtype of HER2-positive breast cancer patients induced transformation of MCF10A cells and resulted in gross morphological changes, increased anchorage-independent growth of cells, and altered the transcriptional programme of genes associated with oncogenic transformation. Global phosphoproteomic analysis during HER2 induction predominantly detected an increase in protein phosphorylation. Intriguingly, this correlated with chromatin opening, as measured by ATAC-seq on acini isolated from 3D cell culture. HER2 overexpression resulted in opening of many distal regulatory regions and promoted reprogramming-associated heterogeneity. We found that a subset of cells acquired a dedifferentiated breast stem-like phenotype, making them likely candidates for malignant transformation. Our data show that this population of cells, which counterintuitively enriches for relatively low HER2 protein abundance and increased chromatin accessibility, possesses transformational drive, resulting in increased anchorage-independent growth in vitro compared to cells not displaying a stem-like phenotype.
Item Type: |
Article
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Additional Information: |
© 2023. Published by The Company of Biologists Ltd
This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed. |
Keywords: |
In vitro, Breast, Cancer, Chromatin, Epigenetics, Stem, Humans, Chromatin, Receptor, ErbB-2, Cell Proliferation, Cell Transformation, Neoplastic, Epithelium, Cell Line, Tumor, Gene Expression Regulation, Neoplastic, Epithelium, Cell Line, Tumor, Chromatin, Humans, Cell Transformation, Neoplastic, Receptor, erbB-2, Cell Proliferation, Gene Expression Regulation, Neoplastic, Breast, Cancer, Chromatin, Epigenetics, In vitro, Stem, 06 Biological Sciences, 11 Medical and Health Sciences, Developmental Biology |
SGUL Research Institute / Research Centre: |
Academic Structure > Institute of Medical, Biomedical and Allied Health Education (IMBE) |
Journal or Publication Title: |
Dis Model Mech |
ISSN: |
1754-8411 |
Language: |
eng |
Dates: |
Date | Event |
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1 February 2023 | Published | 6 January 2023 | Accepted |
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Publisher License: |
Creative Commons: Attribution 4.0 |
Projects: |
|
PubMed ID: |
36661191 |
Web of Science ID: |
WOS:000946455100007 |
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Go to PubMed abstract |
URI: |
https://openaccess.sgul.ac.uk/id/eprint/115331 |
Publisher's version: |
https://doi.org/10.1242/dmm.049894 |
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