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Id Proteins Promote a Cancer Stem Cell Phenotype in Mouse Models of Triple Negative Breast Cancer via Negative Regulation of Robo1

Breast cancers display phenotypic and functional heterogeneity and several lines of evidence support the existence of cancer stem cells (CSCs) in certain breast cancers, a minor population of cells capable of tumor initiation and metastatic dissemination. Identifying factors that regulate the CSC ph...

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Autores principales: Teo, Wee S., Holliday, Holly, Karthikeyan, Nitheesh, Cazet, Aurélie S., Roden, Daniel L., Harvey, Kate, Konrad, Christina Valbirk, Murali, Reshma, Varghese, Binitha Anu, Thankamony, Archana P., Chan, Chia-Ling, McFarland, Andrea, Junankar, Simon, Ye, Sunny, Yang, Jessica, Nikolic, Iva, Shah, Jaynish S., Baker, Laura A., Millar, Ewan K. A., Naylor, Matthew J., Ormandy, Christopher J., Lakhani, Sunil R., Kaplan, Warren, Mellick, Albert S., O'Toole, Sandra A., Swarbrick, Alexander, Nair, Radhika
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7380117/
https://www.ncbi.nlm.nih.gov/pubmed/32766238
http://dx.doi.org/10.3389/fcell.2020.00552
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author Teo, Wee S.
Holliday, Holly
Karthikeyan, Nitheesh
Cazet, Aurélie S.
Roden, Daniel L.
Harvey, Kate
Konrad, Christina Valbirk
Murali, Reshma
Varghese, Binitha Anu
Thankamony, Archana P.
Chan, Chia-Ling
McFarland, Andrea
Junankar, Simon
Ye, Sunny
Yang, Jessica
Nikolic, Iva
Shah, Jaynish S.
Baker, Laura A.
Millar, Ewan K. A.
Naylor, Matthew J.
Ormandy, Christopher J.
Lakhani, Sunil R.
Kaplan, Warren
Mellick, Albert S.
O'Toole, Sandra A.
Swarbrick, Alexander
Nair, Radhika
author_facet Teo, Wee S.
Holliday, Holly
Karthikeyan, Nitheesh
Cazet, Aurélie S.
Roden, Daniel L.
Harvey, Kate
Konrad, Christina Valbirk
Murali, Reshma
Varghese, Binitha Anu
Thankamony, Archana P.
Chan, Chia-Ling
McFarland, Andrea
Junankar, Simon
Ye, Sunny
Yang, Jessica
Nikolic, Iva
Shah, Jaynish S.
Baker, Laura A.
Millar, Ewan K. A.
Naylor, Matthew J.
Ormandy, Christopher J.
Lakhani, Sunil R.
Kaplan, Warren
Mellick, Albert S.
O'Toole, Sandra A.
Swarbrick, Alexander
Nair, Radhika
author_sort Teo, Wee S.
collection PubMed
description Breast cancers display phenotypic and functional heterogeneity and several lines of evidence support the existence of cancer stem cells (CSCs) in certain breast cancers, a minor population of cells capable of tumor initiation and metastatic dissemination. Identifying factors that regulate the CSC phenotype is therefore important for developing strategies to treat metastatic disease. The Inhibitor of Differentiation Protein 1 (Id1) and its closely related family member Inhibitor of Differentiation 3 (Id3) (collectively termed Id) are expressed by a diversity of stem cells and are required for metastatic dissemination in experimental models of breast cancer. In this study, we show that ID1 is expressed in rare neoplastic cells within ER-negative breast cancers. To address the function of Id1 expressing cells within tumors, we developed independent murine models of Triple Negative Breast Cancer (TNBC) in which a genetic reporter permitted the prospective isolation of Id1(+) cells. Id1(+) cells are enriched for self-renewal in tumorsphere assays in vitro and for tumor initiation in vivo. Conversely, depletion of Id1 and Id3 in the 4T1 murine model of TNBC demonstrates that Id1/3 are required for cell proliferation and self-renewal in vitro, as well as primary tumor growth and metastatic colonization of the lung in vivo. Using combined bioinformatic analysis, we have defined a novel mechanism of Id protein function via negative regulation of the Roundabout Axon Guidance Receptor Homolog 1 (Robo1) leading to activation of a Myc transcriptional programme.
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spelling pubmed-73801172020-08-05 Id Proteins Promote a Cancer Stem Cell Phenotype in Mouse Models of Triple Negative Breast Cancer via Negative Regulation of Robo1 Teo, Wee S. Holliday, Holly Karthikeyan, Nitheesh Cazet, Aurélie S. Roden, Daniel L. Harvey, Kate Konrad, Christina Valbirk Murali, Reshma Varghese, Binitha Anu Thankamony, Archana P. Chan, Chia-Ling McFarland, Andrea Junankar, Simon Ye, Sunny Yang, Jessica Nikolic, Iva Shah, Jaynish S. Baker, Laura A. Millar, Ewan K. A. Naylor, Matthew J. Ormandy, Christopher J. Lakhani, Sunil R. Kaplan, Warren Mellick, Albert S. O'Toole, Sandra A. Swarbrick, Alexander Nair, Radhika Front Cell Dev Biol Cell and Developmental Biology Breast cancers display phenotypic and functional heterogeneity and several lines of evidence support the existence of cancer stem cells (CSCs) in certain breast cancers, a minor population of cells capable of tumor initiation and metastatic dissemination. Identifying factors that regulate the CSC phenotype is therefore important for developing strategies to treat metastatic disease. The Inhibitor of Differentiation Protein 1 (Id1) and its closely related family member Inhibitor of Differentiation 3 (Id3) (collectively termed Id) are expressed by a diversity of stem cells and are required for metastatic dissemination in experimental models of breast cancer. In this study, we show that ID1 is expressed in rare neoplastic cells within ER-negative breast cancers. To address the function of Id1 expressing cells within tumors, we developed independent murine models of Triple Negative Breast Cancer (TNBC) in which a genetic reporter permitted the prospective isolation of Id1(+) cells. Id1(+) cells are enriched for self-renewal in tumorsphere assays in vitro and for tumor initiation in vivo. Conversely, depletion of Id1 and Id3 in the 4T1 murine model of TNBC demonstrates that Id1/3 are required for cell proliferation and self-renewal in vitro, as well as primary tumor growth and metastatic colonization of the lung in vivo. Using combined bioinformatic analysis, we have defined a novel mechanism of Id protein function via negative regulation of the Roundabout Axon Guidance Receptor Homolog 1 (Robo1) leading to activation of a Myc transcriptional programme. Frontiers Media S.A. 2020-07-17 /pmc/articles/PMC7380117/ /pubmed/32766238 http://dx.doi.org/10.3389/fcell.2020.00552 Text en Copyright © 2020 Teo, Holliday, Karthikeyan, Cazet, Roden, Harvey, Konrad, Murali, Varghese, Thankamony, Chan, McFarland, Junankar, Ye, Yang, Nikolic, Shah, Baker, Millar, Naylor, Ormandy, Lakhani, Kaplan, Mellick, O'Toole, Swarbrick and Nair. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Teo, Wee S.
Holliday, Holly
Karthikeyan, Nitheesh
Cazet, Aurélie S.
Roden, Daniel L.
Harvey, Kate
Konrad, Christina Valbirk
Murali, Reshma
Varghese, Binitha Anu
Thankamony, Archana P.
Chan, Chia-Ling
McFarland, Andrea
Junankar, Simon
Ye, Sunny
Yang, Jessica
Nikolic, Iva
Shah, Jaynish S.
Baker, Laura A.
Millar, Ewan K. A.
Naylor, Matthew J.
Ormandy, Christopher J.
Lakhani, Sunil R.
Kaplan, Warren
Mellick, Albert S.
O'Toole, Sandra A.
Swarbrick, Alexander
Nair, Radhika
Id Proteins Promote a Cancer Stem Cell Phenotype in Mouse Models of Triple Negative Breast Cancer via Negative Regulation of Robo1
title Id Proteins Promote a Cancer Stem Cell Phenotype in Mouse Models of Triple Negative Breast Cancer via Negative Regulation of Robo1
title_full Id Proteins Promote a Cancer Stem Cell Phenotype in Mouse Models of Triple Negative Breast Cancer via Negative Regulation of Robo1
title_fullStr Id Proteins Promote a Cancer Stem Cell Phenotype in Mouse Models of Triple Negative Breast Cancer via Negative Regulation of Robo1
title_full_unstemmed Id Proteins Promote a Cancer Stem Cell Phenotype in Mouse Models of Triple Negative Breast Cancer via Negative Regulation of Robo1
title_short Id Proteins Promote a Cancer Stem Cell Phenotype in Mouse Models of Triple Negative Breast Cancer via Negative Regulation of Robo1
title_sort id proteins promote a cancer stem cell phenotype in mouse models of triple negative breast cancer via negative regulation of robo1
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7380117/
https://www.ncbi.nlm.nih.gov/pubmed/32766238
http://dx.doi.org/10.3389/fcell.2020.00552
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