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Systematic functional perturbations uncover a prognostic genetic network driving human breast cancer

Prognostic classifiers conceivably comprise biomarker genes that functionally contribute to the oncogenic and metastatic properties of cancer, but this has not been investigated systematically. The transcription factor Fra-1 not only has an essential role in breast cancer, but also drives the expres...

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Autores principales: Gallenne, Tristan, Ross, Kenneth N., Visser, Nils L., Salony, Desmet, Christophe J., Wittner, Ben S., Wessels, Lodewyk F.A., Ramaswamy, Sridhar, Peeper, Daniel S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5400527/
https://www.ncbi.nlm.nih.gov/pubmed/28411283
http://dx.doi.org/10.18632/oncotarget.16244
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author Gallenne, Tristan
Ross, Kenneth N.
Visser, Nils L.
Salony,
Desmet, Christophe J.
Wittner, Ben S.
Wessels, Lodewyk F.A.
Ramaswamy, Sridhar
Peeper, Daniel S.
author_facet Gallenne, Tristan
Ross, Kenneth N.
Visser, Nils L.
Salony,
Desmet, Christophe J.
Wittner, Ben S.
Wessels, Lodewyk F.A.
Ramaswamy, Sridhar
Peeper, Daniel S.
author_sort Gallenne, Tristan
collection PubMed
description Prognostic classifiers conceivably comprise biomarker genes that functionally contribute to the oncogenic and metastatic properties of cancer, but this has not been investigated systematically. The transcription factor Fra-1 not only has an essential role in breast cancer, but also drives the expression of a highly prognostic gene set. Here, we systematically perturbed the function of 31 individual Fra-1-dependent poor-prognosis genes and examined their impact on breast cancer growth in vivo. We find that stable shRNA depletion of each of nine individual signature genes strongly inhibits breast cancer growth and aggressiveness. Several factors within this nine-gene set regulate each others expression, suggesting that together they form a network. The nine-gene set is regulated by estrogen, ERBB2 and EGF signaling, all established breast cancer factors. We also uncover three transcription factors, MYC, E2F1 and TP53, which act alongside Fra-1 at the core of this network. ChIP-Seq analysis reveals that a substantial number of genes are bound, and regulated, by all four transcription factors. The nine-gene set retains significant prognostic power and includes several potential therapeutic targets, including the bifunctional enzyme PAICS, which catalyzes purine biosynthesis. Depletion of PAICS largely cancelled breast cancer expansion, exemplifying a prognostic gene with breast cancer activity. Our data uncover a core genetic and prognostic network driving human breast cancer. We propose that pharmacological inhibition of components within this network, such as PAICS, may be used in conjunction with the Fra-1 prognostic classifier towards personalized management of poor prognosis breast cancer.
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spelling pubmed-54005272017-05-03 Systematic functional perturbations uncover a prognostic genetic network driving human breast cancer Gallenne, Tristan Ross, Kenneth N. Visser, Nils L. Salony, Desmet, Christophe J. Wittner, Ben S. Wessels, Lodewyk F.A. Ramaswamy, Sridhar Peeper, Daniel S. Oncotarget Priority Research Paper Prognostic classifiers conceivably comprise biomarker genes that functionally contribute to the oncogenic and metastatic properties of cancer, but this has not been investigated systematically. The transcription factor Fra-1 not only has an essential role in breast cancer, but also drives the expression of a highly prognostic gene set. Here, we systematically perturbed the function of 31 individual Fra-1-dependent poor-prognosis genes and examined their impact on breast cancer growth in vivo. We find that stable shRNA depletion of each of nine individual signature genes strongly inhibits breast cancer growth and aggressiveness. Several factors within this nine-gene set regulate each others expression, suggesting that together they form a network. The nine-gene set is regulated by estrogen, ERBB2 and EGF signaling, all established breast cancer factors. We also uncover three transcription factors, MYC, E2F1 and TP53, which act alongside Fra-1 at the core of this network. ChIP-Seq analysis reveals that a substantial number of genes are bound, and regulated, by all four transcription factors. The nine-gene set retains significant prognostic power and includes several potential therapeutic targets, including the bifunctional enzyme PAICS, which catalyzes purine biosynthesis. Depletion of PAICS largely cancelled breast cancer expansion, exemplifying a prognostic gene with breast cancer activity. Our data uncover a core genetic and prognostic network driving human breast cancer. We propose that pharmacological inhibition of components within this network, such as PAICS, may be used in conjunction with the Fra-1 prognostic classifier towards personalized management of poor prognosis breast cancer. Impact Journals LLC 2017-03-15 /pmc/articles/PMC5400527/ /pubmed/28411283 http://dx.doi.org/10.18632/oncotarget.16244 Text en Copyright: © 2017 Gallenne et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Priority Research Paper
Gallenne, Tristan
Ross, Kenneth N.
Visser, Nils L.
Salony,
Desmet, Christophe J.
Wittner, Ben S.
Wessels, Lodewyk F.A.
Ramaswamy, Sridhar
Peeper, Daniel S.
Systematic functional perturbations uncover a prognostic genetic network driving human breast cancer
title Systematic functional perturbations uncover a prognostic genetic network driving human breast cancer
title_full Systematic functional perturbations uncover a prognostic genetic network driving human breast cancer
title_fullStr Systematic functional perturbations uncover a prognostic genetic network driving human breast cancer
title_full_unstemmed Systematic functional perturbations uncover a prognostic genetic network driving human breast cancer
title_short Systematic functional perturbations uncover a prognostic genetic network driving human breast cancer
title_sort systematic functional perturbations uncover a prognostic genetic network driving human breast cancer
topic Priority Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5400527/
https://www.ncbi.nlm.nih.gov/pubmed/28411283
http://dx.doi.org/10.18632/oncotarget.16244
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