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ATG9A Is Overexpressed in Triple Negative Breast Cancer and Its In Vitro Extinction Leads to the Inhibition of Pro-Cancer Phenotypes

Early detection and targeted treatments have led to a significant decrease in mortality linked to breast cancer (BC), however, important issues need to be addressed in the future. One of them will be to find new triple negative breast cancer (TNBC) therapeutic strategies, since none are currently ef...

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Autores principales: Claude-Taupin, Aurore, Fonderflick, Leïla, Gauthier, Thierry, Mansi, Laura, Pallandre, Jean-René, Borg, Christophe, Perez, Valérie, Monnien, Franck, Algros, Marie-Paule, Vigneron, Marc, Adami, Pascale, Delage-Mourroux, Régis, Peixoto, Paul, Herfs, Michael, Boyer-Guittaut, Michaël, Hervouet, Eric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6316331/
https://www.ncbi.nlm.nih.gov/pubmed/30563263
http://dx.doi.org/10.3390/cells7120248
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author Claude-Taupin, Aurore
Fonderflick, Leïla
Gauthier, Thierry
Mansi, Laura
Pallandre, Jean-René
Borg, Christophe
Perez, Valérie
Monnien, Franck
Algros, Marie-Paule
Vigneron, Marc
Adami, Pascale
Delage-Mourroux, Régis
Peixoto, Paul
Herfs, Michael
Boyer-Guittaut, Michaël
Hervouet, Eric
author_facet Claude-Taupin, Aurore
Fonderflick, Leïla
Gauthier, Thierry
Mansi, Laura
Pallandre, Jean-René
Borg, Christophe
Perez, Valérie
Monnien, Franck
Algros, Marie-Paule
Vigneron, Marc
Adami, Pascale
Delage-Mourroux, Régis
Peixoto, Paul
Herfs, Michael
Boyer-Guittaut, Michaël
Hervouet, Eric
author_sort Claude-Taupin, Aurore
collection PubMed
description Early detection and targeted treatments have led to a significant decrease in mortality linked to breast cancer (BC), however, important issues need to be addressed in the future. One of them will be to find new triple negative breast cancer (TNBC) therapeutic strategies, since none are currently efficiently targeting this subtype of BC. Since numerous studies have reported the possibility of targeting the autophagy pathway to treat or limit cancer progression, we analyzed the expression of six autophagy genes (ATG9A, ATG9B, BECLIN1, LC3B, NIX and P62/SQSTM1) in breast cancer tissue, and compared their expression with healthy adjacent tissue. In our study, we observed an increase in ATG9A mRNA expression in TNBC samples from our breast cancer cohort. We also showed that this increase of the transcript was confirmed at the protein level on paraffin-embedded tissues. To corroborate these in vivo data, we designed shRNA- and CRISPR/Cas9-driven inhibition of ATG9A expression in the triple negative breast cancer cell line MDA-MB-436, in order to determine its role in the regulation of cancer phenotypes. We found that ATG9A inhibition led to an inhibition of in vitro cancer features, suggesting that ATG9A can be considered as a new marker of TNBC and might be considered in the future as a target to develop new specific TNBC therapies.
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spelling pubmed-63163312019-01-09 ATG9A Is Overexpressed in Triple Negative Breast Cancer and Its In Vitro Extinction Leads to the Inhibition of Pro-Cancer Phenotypes Claude-Taupin, Aurore Fonderflick, Leïla Gauthier, Thierry Mansi, Laura Pallandre, Jean-René Borg, Christophe Perez, Valérie Monnien, Franck Algros, Marie-Paule Vigneron, Marc Adami, Pascale Delage-Mourroux, Régis Peixoto, Paul Herfs, Michael Boyer-Guittaut, Michaël Hervouet, Eric Cells Article Early detection and targeted treatments have led to a significant decrease in mortality linked to breast cancer (BC), however, important issues need to be addressed in the future. One of them will be to find new triple negative breast cancer (TNBC) therapeutic strategies, since none are currently efficiently targeting this subtype of BC. Since numerous studies have reported the possibility of targeting the autophagy pathway to treat or limit cancer progression, we analyzed the expression of six autophagy genes (ATG9A, ATG9B, BECLIN1, LC3B, NIX and P62/SQSTM1) in breast cancer tissue, and compared their expression with healthy adjacent tissue. In our study, we observed an increase in ATG9A mRNA expression in TNBC samples from our breast cancer cohort. We also showed that this increase of the transcript was confirmed at the protein level on paraffin-embedded tissues. To corroborate these in vivo data, we designed shRNA- and CRISPR/Cas9-driven inhibition of ATG9A expression in the triple negative breast cancer cell line MDA-MB-436, in order to determine its role in the regulation of cancer phenotypes. We found that ATG9A inhibition led to an inhibition of in vitro cancer features, suggesting that ATG9A can be considered as a new marker of TNBC and might be considered in the future as a target to develop new specific TNBC therapies. MDPI 2018-12-06 /pmc/articles/PMC6316331/ /pubmed/30563263 http://dx.doi.org/10.3390/cells7120248 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Claude-Taupin, Aurore
Fonderflick, Leïla
Gauthier, Thierry
Mansi, Laura
Pallandre, Jean-René
Borg, Christophe
Perez, Valérie
Monnien, Franck
Algros, Marie-Paule
Vigneron, Marc
Adami, Pascale
Delage-Mourroux, Régis
Peixoto, Paul
Herfs, Michael
Boyer-Guittaut, Michaël
Hervouet, Eric
ATG9A Is Overexpressed in Triple Negative Breast Cancer and Its In Vitro Extinction Leads to the Inhibition of Pro-Cancer Phenotypes
title ATG9A Is Overexpressed in Triple Negative Breast Cancer and Its In Vitro Extinction Leads to the Inhibition of Pro-Cancer Phenotypes
title_full ATG9A Is Overexpressed in Triple Negative Breast Cancer and Its In Vitro Extinction Leads to the Inhibition of Pro-Cancer Phenotypes
title_fullStr ATG9A Is Overexpressed in Triple Negative Breast Cancer and Its In Vitro Extinction Leads to the Inhibition of Pro-Cancer Phenotypes
title_full_unstemmed ATG9A Is Overexpressed in Triple Negative Breast Cancer and Its In Vitro Extinction Leads to the Inhibition of Pro-Cancer Phenotypes
title_short ATG9A Is Overexpressed in Triple Negative Breast Cancer and Its In Vitro Extinction Leads to the Inhibition of Pro-Cancer Phenotypes
title_sort atg9a is overexpressed in triple negative breast cancer and its in vitro extinction leads to the inhibition of pro-cancer phenotypes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6316331/
https://www.ncbi.nlm.nih.gov/pubmed/30563263
http://dx.doi.org/10.3390/cells7120248
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