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Bcl-xL mediates therapeutic resistance of a mesenchymal breast cancer cell subpopulation
The transition from an epithelial to a mesenchymal phenotype (EMT) confers increased invasiveness and clonogenic potential to tumor cells. We used a breast epithelium-derived cell culture model to evaluate the impact of EMT on the cellular sensitivity towards chemotherapeutics and apoptotic stimuli....
Autores principales: | , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Impact Journals LLC
2014
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4322974/ https://www.ncbi.nlm.nih.gov/pubmed/25473892 |
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author | Keitel, Ulrike Scheel, Andreas Thomale, Jürgen Halpape, Rovena Kaulfuß, Silke Scheel, Christina Dobbelstein, Matthias |
author_facet | Keitel, Ulrike Scheel, Andreas Thomale, Jürgen Halpape, Rovena Kaulfuß, Silke Scheel, Christina Dobbelstein, Matthias |
author_sort | Keitel, Ulrike |
collection | PubMed |
description | The transition from an epithelial to a mesenchymal phenotype (EMT) confers increased invasiveness and clonogenic potential to tumor cells. We used a breast epithelium-derived cell culture model to evaluate the impact of EMT on the cellular sensitivity towards chemotherapeutics and apoptotic stimuli. Cells that had passed through an EMT acquired resistance towards chemotherapeutics and death ligands. Mechanistically, we found that the levels of the apoptosis inhibitor Bcl-xL were strongly enhanced in mesenchymal versus epithelial cells, whereas the pro-apoptotic proteins Bim and Puma were diminished. Clinical samples from breast cancer showed enhanced Bcl-xL staining in cells that had dispersed into the desmoplastic stroma, as compared to cells that were part of large tumor cell aggregates, suggesting increased Bcl-xL expression when cells invade the stroma. Bcl-xL was necessary for apoptotic resistance in mesenchymal cells, and its expression was sufficient to confer such resistance to epithelial cells. To antagonize Bcl-xL, BH3-mimetics were used. They successfully interfered with the proliferation and survival of mesenchymal cells, and also inhibited the growth of xenograft tumors raised from the mesenchymal subpopulation. We conclude that enhanced Bcl-xL levels confer resistance to cells upon EMT, and that Bcl-xL represents a promising target for therapy directed against invasive cancer cells. |
format | Online Article Text |
id | pubmed-4322974 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | Impact Journals LLC |
record_format | MEDLINE/PubMed |
spelling | pubmed-43229742015-02-10 Bcl-xL mediates therapeutic resistance of a mesenchymal breast cancer cell subpopulation Keitel, Ulrike Scheel, Andreas Thomale, Jürgen Halpape, Rovena Kaulfuß, Silke Scheel, Christina Dobbelstein, Matthias Oncotarget Priority Research Paper The transition from an epithelial to a mesenchymal phenotype (EMT) confers increased invasiveness and clonogenic potential to tumor cells. We used a breast epithelium-derived cell culture model to evaluate the impact of EMT on the cellular sensitivity towards chemotherapeutics and apoptotic stimuli. Cells that had passed through an EMT acquired resistance towards chemotherapeutics and death ligands. Mechanistically, we found that the levels of the apoptosis inhibitor Bcl-xL were strongly enhanced in mesenchymal versus epithelial cells, whereas the pro-apoptotic proteins Bim and Puma were diminished. Clinical samples from breast cancer showed enhanced Bcl-xL staining in cells that had dispersed into the desmoplastic stroma, as compared to cells that were part of large tumor cell aggregates, suggesting increased Bcl-xL expression when cells invade the stroma. Bcl-xL was necessary for apoptotic resistance in mesenchymal cells, and its expression was sufficient to confer such resistance to epithelial cells. To antagonize Bcl-xL, BH3-mimetics were used. They successfully interfered with the proliferation and survival of mesenchymal cells, and also inhibited the growth of xenograft tumors raised from the mesenchymal subpopulation. We conclude that enhanced Bcl-xL levels confer resistance to cells upon EMT, and that Bcl-xL represents a promising target for therapy directed against invasive cancer cells. Impact Journals LLC 2014-11-28 /pmc/articles/PMC4322974/ /pubmed/25473892 Text en Copyright: © 2014 Keitel et al. http://creativecommons.org/licenses/by/2.5/ 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 credited |
spellingShingle | Priority Research Paper Keitel, Ulrike Scheel, Andreas Thomale, Jürgen Halpape, Rovena Kaulfuß, Silke Scheel, Christina Dobbelstein, Matthias Bcl-xL mediates therapeutic resistance of a mesenchymal breast cancer cell subpopulation |
title | Bcl-xL mediates therapeutic resistance of a mesenchymal breast cancer cell subpopulation |
title_full | Bcl-xL mediates therapeutic resistance of a mesenchymal breast cancer cell subpopulation |
title_fullStr | Bcl-xL mediates therapeutic resistance of a mesenchymal breast cancer cell subpopulation |
title_full_unstemmed | Bcl-xL mediates therapeutic resistance of a mesenchymal breast cancer cell subpopulation |
title_short | Bcl-xL mediates therapeutic resistance of a mesenchymal breast cancer cell subpopulation |
title_sort | bcl-xl mediates therapeutic resistance of a mesenchymal breast cancer cell subpopulation |
topic | Priority Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4322974/ https://www.ncbi.nlm.nih.gov/pubmed/25473892 |
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