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The Ability to Generate Senescent Progeny as a Mechanism Underlying Breast Cancer Cell Heterogeneity

BACKGROUND: Breast cancer is a remarkably heterogeneous disease. Luminal, basal-like, “normal-like”, and ERBB2+ subgroups were identified and were shown to have different prognoses. The mechanisms underlying this heterogeneity are poorly understood. In our study, we explored the role of cellular dif...

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Autores principales: Mumcuoglu, Mine, Bagislar, Sevgi, Yuzugullu, Haluk, Alotaibi, Hani, Senturk, Serif, Telkoparan, Pelin, Gur-Dedeoglu, Bala, Cingoz, Burcu, Bozkurt, Betul, Tazebay, Uygar H., Yulug, Isik G., Akcali, K. Can, Ozturk, Mehmet
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2891998/
https://www.ncbi.nlm.nih.gov/pubmed/20585577
http://dx.doi.org/10.1371/journal.pone.0011288
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author Mumcuoglu, Mine
Bagislar, Sevgi
Yuzugullu, Haluk
Alotaibi, Hani
Senturk, Serif
Telkoparan, Pelin
Gur-Dedeoglu, Bala
Cingoz, Burcu
Bozkurt, Betul
Tazebay, Uygar H.
Yulug, Isik G.
Akcali, K. Can
Ozturk, Mehmet
author_facet Mumcuoglu, Mine
Bagislar, Sevgi
Yuzugullu, Haluk
Alotaibi, Hani
Senturk, Serif
Telkoparan, Pelin
Gur-Dedeoglu, Bala
Cingoz, Burcu
Bozkurt, Betul
Tazebay, Uygar H.
Yulug, Isik G.
Akcali, K. Can
Ozturk, Mehmet
author_sort Mumcuoglu, Mine
collection PubMed
description BACKGROUND: Breast cancer is a remarkably heterogeneous disease. Luminal, basal-like, “normal-like”, and ERBB2+ subgroups were identified and were shown to have different prognoses. The mechanisms underlying this heterogeneity are poorly understood. In our study, we explored the role of cellular differentiation and senescence as a potential cause of heterogeneity. METHODOLOGY/PRINCIPAL FINDINGS: A panel of breast cancer cell lines, isogenic clones, and breast tumors were used. Based on their ability to generate senescent progeny under low-density clonogenic conditions, we classified breast cancer cell lines as senescent cell progenitor (SCP) and immortal cell progenitor (ICP) subtypes. All SCP cell lines expressed estrogen receptor (ER). Loss of ER expression combined with the accumulation of p21(Cip1) correlated with senescence in these cell lines. p21(Cip1) knockdown, estrogen-mediated ER activation or ectopic ER overexpression protected cells against senescence. In contrast, tamoxifen triggered a robust senescence response. As ER expression has been linked to luminal differentiation, we compared the differentiation status of SCP and ICP cell lines using stem/progenitor, luminal, and myoepithelial markers. The SCP cells produced CD24+ or ER+ luminal-like and ASMA+ myoepithelial-like progeny, in addition to CD44+ stem/progenitor-like cells. In contrast, ICP cell lines acted as differentiation-defective stem/progenitor cells. Some ICP cell lines generated only CD44+/CD24-/ER-/ASMA- progenitor/stem-like cells, and others also produced CD24+/ER- luminal-like, but not ASMA+ myoepithelial-like cells. Furthermore, gene expression profiles clustered SCP cell lines with luminal A and “normal-like” tumors, and ICP cell lines with luminal B and basal-like tumors. The ICP cells displayed higher tumorigenicity in immunodeficient mice. CONCLUSIONS/SIGNIFICANCE: Luminal A and “normal-like” breast cancer cell lines were able to generate luminal-like and myoepithelial-like progeny undergoing senescence arrest. In contrast, luminal B/basal-like cell lines acted as stem/progenitor cells with defective differentiation capacities. Our findings suggest that the malignancy of breast tumors is directly correlated with stem/progenitor phenotypes and poor differentiation potential.
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spelling pubmed-28919982010-06-28 The Ability to Generate Senescent Progeny as a Mechanism Underlying Breast Cancer Cell Heterogeneity Mumcuoglu, Mine Bagislar, Sevgi Yuzugullu, Haluk Alotaibi, Hani Senturk, Serif Telkoparan, Pelin Gur-Dedeoglu, Bala Cingoz, Burcu Bozkurt, Betul Tazebay, Uygar H. Yulug, Isik G. Akcali, K. Can Ozturk, Mehmet PLoS One Research Article BACKGROUND: Breast cancer is a remarkably heterogeneous disease. Luminal, basal-like, “normal-like”, and ERBB2+ subgroups were identified and were shown to have different prognoses. The mechanisms underlying this heterogeneity are poorly understood. In our study, we explored the role of cellular differentiation and senescence as a potential cause of heterogeneity. METHODOLOGY/PRINCIPAL FINDINGS: A panel of breast cancer cell lines, isogenic clones, and breast tumors were used. Based on their ability to generate senescent progeny under low-density clonogenic conditions, we classified breast cancer cell lines as senescent cell progenitor (SCP) and immortal cell progenitor (ICP) subtypes. All SCP cell lines expressed estrogen receptor (ER). Loss of ER expression combined with the accumulation of p21(Cip1) correlated with senescence in these cell lines. p21(Cip1) knockdown, estrogen-mediated ER activation or ectopic ER overexpression protected cells against senescence. In contrast, tamoxifen triggered a robust senescence response. As ER expression has been linked to luminal differentiation, we compared the differentiation status of SCP and ICP cell lines using stem/progenitor, luminal, and myoepithelial markers. The SCP cells produced CD24+ or ER+ luminal-like and ASMA+ myoepithelial-like progeny, in addition to CD44+ stem/progenitor-like cells. In contrast, ICP cell lines acted as differentiation-defective stem/progenitor cells. Some ICP cell lines generated only CD44+/CD24-/ER-/ASMA- progenitor/stem-like cells, and others also produced CD24+/ER- luminal-like, but not ASMA+ myoepithelial-like cells. Furthermore, gene expression profiles clustered SCP cell lines with luminal A and “normal-like” tumors, and ICP cell lines with luminal B and basal-like tumors. The ICP cells displayed higher tumorigenicity in immunodeficient mice. CONCLUSIONS/SIGNIFICANCE: Luminal A and “normal-like” breast cancer cell lines were able to generate luminal-like and myoepithelial-like progeny undergoing senescence arrest. In contrast, luminal B/basal-like cell lines acted as stem/progenitor cells with defective differentiation capacities. Our findings suggest that the malignancy of breast tumors is directly correlated with stem/progenitor phenotypes and poor differentiation potential. Public Library of Science 2010-06-24 /pmc/articles/PMC2891998/ /pubmed/20585577 http://dx.doi.org/10.1371/journal.pone.0011288 Text en Mumcuoglu 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
Mumcuoglu, Mine
Bagislar, Sevgi
Yuzugullu, Haluk
Alotaibi, Hani
Senturk, Serif
Telkoparan, Pelin
Gur-Dedeoglu, Bala
Cingoz, Burcu
Bozkurt, Betul
Tazebay, Uygar H.
Yulug, Isik G.
Akcali, K. Can
Ozturk, Mehmet
The Ability to Generate Senescent Progeny as a Mechanism Underlying Breast Cancer Cell Heterogeneity
title The Ability to Generate Senescent Progeny as a Mechanism Underlying Breast Cancer Cell Heterogeneity
title_full The Ability to Generate Senescent Progeny as a Mechanism Underlying Breast Cancer Cell Heterogeneity
title_fullStr The Ability to Generate Senescent Progeny as a Mechanism Underlying Breast Cancer Cell Heterogeneity
title_full_unstemmed The Ability to Generate Senescent Progeny as a Mechanism Underlying Breast Cancer Cell Heterogeneity
title_short The Ability to Generate Senescent Progeny as a Mechanism Underlying Breast Cancer Cell Heterogeneity
title_sort ability to generate senescent progeny as a mechanism underlying breast cancer cell heterogeneity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2891998/
https://www.ncbi.nlm.nih.gov/pubmed/20585577
http://dx.doi.org/10.1371/journal.pone.0011288
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