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Multi-Level Control of the ATM/ATR-CHK1 Axis by the Transcription Factor E4F1 in Triple-Negative Breast Cancer

E4F1 is essential for early embryonic mouse development and for controlling the balance between proliferation and survival of actively dividing cells. We previously reported that E4F1 is essential for the survival of murine p53-deficient cancer cells by controlling the expression of genes involved i...

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Autores principales: Batnini, Kalil, Houles, Thibault, Kirsh, Olivier, Du Manoir, Stanislas, Zaroual, Mehdi, Delpech, Hélène, Fallet, Chloé, Lacroix, Matthieu, Le Cam, Laurent, Theillet, Charles, Sardet, Claude, Rodier, Geneviève
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9409040/
https://www.ncbi.nlm.nih.gov/pubmed/36012478
http://dx.doi.org/10.3390/ijms23169217
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author Batnini, Kalil
Houles, Thibault
Kirsh, Olivier
Du Manoir, Stanislas
Zaroual, Mehdi
Delpech, Hélène
Fallet, Chloé
Lacroix, Matthieu
Le Cam, Laurent
Theillet, Charles
Sardet, Claude
Rodier, Geneviève
author_facet Batnini, Kalil
Houles, Thibault
Kirsh, Olivier
Du Manoir, Stanislas
Zaroual, Mehdi
Delpech, Hélène
Fallet, Chloé
Lacroix, Matthieu
Le Cam, Laurent
Theillet, Charles
Sardet, Claude
Rodier, Geneviève
author_sort Batnini, Kalil
collection PubMed
description E4F1 is essential for early embryonic mouse development and for controlling the balance between proliferation and survival of actively dividing cells. We previously reported that E4F1 is essential for the survival of murine p53-deficient cancer cells by controlling the expression of genes involved in mitochondria functions and metabolism, and in cell-cycle checkpoints, including CHEK1, a major component of the DNA damage and replication stress responses. Here, combining ChIP-Seq and RNA-Seq approaches, we identified the transcriptional program directly controlled by E4F1 in Human Triple-Negative Breast Cancer cells (TNBC). E4F1 binds and regulates a limited list of direct target genes (57 genes) in these cells, including the human CHEK1 gene and, surprisingly, also two other genes encoding post-transcriptional regulators of the ATM/ATR-CHK1 axis, namely, the TTT complex component TTI2 and the phosphatase PPP5C, that are essential for the folding and stability, and the signaling of ATM/ATR kinases, respectively. Importantly, E4F1 also binds the promoter of these genes in vivo in Primary Derived Xenograft (PDX) of human TNBC. Consequently, the protein levels and signaling of CHK1 but also of ATM/ATR kinases are strongly downregulated in E4F1-depleted TNBC cells resulting in a deficiency of the DNA damage and replicative stress response in these cells. The E4F1-depleted cells fail to arrest into S-phase upon treatment with the replication-stalling agent Gemcitabine, and are highly sensitized to this drug, as well as to other DNA-damaging agents, such as Cisplatin. Altogether, our data indicate that in breast cancer cells the ATM/ATR-CHK1 signaling pathway and DNA damage-stress response are tightly controlled at the transcriptional and post-transcriptional level by E4F1.
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spelling pubmed-94090402022-08-26 Multi-Level Control of the ATM/ATR-CHK1 Axis by the Transcription Factor E4F1 in Triple-Negative Breast Cancer Batnini, Kalil Houles, Thibault Kirsh, Olivier Du Manoir, Stanislas Zaroual, Mehdi Delpech, Hélène Fallet, Chloé Lacroix, Matthieu Le Cam, Laurent Theillet, Charles Sardet, Claude Rodier, Geneviève Int J Mol Sci Article E4F1 is essential for early embryonic mouse development and for controlling the balance between proliferation and survival of actively dividing cells. We previously reported that E4F1 is essential for the survival of murine p53-deficient cancer cells by controlling the expression of genes involved in mitochondria functions and metabolism, and in cell-cycle checkpoints, including CHEK1, a major component of the DNA damage and replication stress responses. Here, combining ChIP-Seq and RNA-Seq approaches, we identified the transcriptional program directly controlled by E4F1 in Human Triple-Negative Breast Cancer cells (TNBC). E4F1 binds and regulates a limited list of direct target genes (57 genes) in these cells, including the human CHEK1 gene and, surprisingly, also two other genes encoding post-transcriptional regulators of the ATM/ATR-CHK1 axis, namely, the TTT complex component TTI2 and the phosphatase PPP5C, that are essential for the folding and stability, and the signaling of ATM/ATR kinases, respectively. Importantly, E4F1 also binds the promoter of these genes in vivo in Primary Derived Xenograft (PDX) of human TNBC. Consequently, the protein levels and signaling of CHK1 but also of ATM/ATR kinases are strongly downregulated in E4F1-depleted TNBC cells resulting in a deficiency of the DNA damage and replicative stress response in these cells. The E4F1-depleted cells fail to arrest into S-phase upon treatment with the replication-stalling agent Gemcitabine, and are highly sensitized to this drug, as well as to other DNA-damaging agents, such as Cisplatin. Altogether, our data indicate that in breast cancer cells the ATM/ATR-CHK1 signaling pathway and DNA damage-stress response are tightly controlled at the transcriptional and post-transcriptional level by E4F1. MDPI 2022-08-16 /pmc/articles/PMC9409040/ /pubmed/36012478 http://dx.doi.org/10.3390/ijms23169217 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Batnini, Kalil
Houles, Thibault
Kirsh, Olivier
Du Manoir, Stanislas
Zaroual, Mehdi
Delpech, Hélène
Fallet, Chloé
Lacroix, Matthieu
Le Cam, Laurent
Theillet, Charles
Sardet, Claude
Rodier, Geneviève
Multi-Level Control of the ATM/ATR-CHK1 Axis by the Transcription Factor E4F1 in Triple-Negative Breast Cancer
title Multi-Level Control of the ATM/ATR-CHK1 Axis by the Transcription Factor E4F1 in Triple-Negative Breast Cancer
title_full Multi-Level Control of the ATM/ATR-CHK1 Axis by the Transcription Factor E4F1 in Triple-Negative Breast Cancer
title_fullStr Multi-Level Control of the ATM/ATR-CHK1 Axis by the Transcription Factor E4F1 in Triple-Negative Breast Cancer
title_full_unstemmed Multi-Level Control of the ATM/ATR-CHK1 Axis by the Transcription Factor E4F1 in Triple-Negative Breast Cancer
title_short Multi-Level Control of the ATM/ATR-CHK1 Axis by the Transcription Factor E4F1 in Triple-Negative Breast Cancer
title_sort multi-level control of the atm/atr-chk1 axis by the transcription factor e4f1 in triple-negative breast cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9409040/
https://www.ncbi.nlm.nih.gov/pubmed/36012478
http://dx.doi.org/10.3390/ijms23169217
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