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Effective targeting of breast cancer stem cells by combined inhibition of Sam68 and Rad51

Breast cancer (BC) is the second cause of cancer-related deceases in the worldwide female population. Despite the successful treatment advances, 25% of BC develops resistance to current therapeutic regimens, thereby remaining a major hurdle for patient management. Current therapies, targeting the mo...

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Autores principales: Turdo, Alice, Gaggianesi, Miriam, Di Franco, Simone, Veschi, Veronica, D’Accardo, Caterina, Porcelli, Gaetana, Lo Iacono, Melania, Pillitteri, Irene, Verona, Francesco, Militello, Gabriella, Zippo, Alessio, Poli, Vittoria, Fagnocchi, Luca, Beyes, Sven, Stella, Stefania, Lattanzio, Rossano, Faldetta, Naida, Lentini, Vincenzo L., Porcasi, Rossana, Pistone, Giuseppe, Bongiorno, Maria Rita, Stassi, Giorgio, De Maria, Ruggero, Todaro, Matilde
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8993694/
https://www.ncbi.nlm.nih.gov/pubmed/35217791
http://dx.doi.org/10.1038/s41388-022-02239-4
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author Turdo, Alice
Gaggianesi, Miriam
Di Franco, Simone
Veschi, Veronica
D’Accardo, Caterina
Porcelli, Gaetana
Lo Iacono, Melania
Pillitteri, Irene
Verona, Francesco
Militello, Gabriella
Zippo, Alessio
Poli, Vittoria
Fagnocchi, Luca
Beyes, Sven
Stella, Stefania
Lattanzio, Rossano
Faldetta, Naida
Lentini, Vincenzo L.
Porcasi, Rossana
Pistone, Giuseppe
Bongiorno, Maria Rita
Stassi, Giorgio
De Maria, Ruggero
Todaro, Matilde
author_facet Turdo, Alice
Gaggianesi, Miriam
Di Franco, Simone
Veschi, Veronica
D’Accardo, Caterina
Porcelli, Gaetana
Lo Iacono, Melania
Pillitteri, Irene
Verona, Francesco
Militello, Gabriella
Zippo, Alessio
Poli, Vittoria
Fagnocchi, Luca
Beyes, Sven
Stella, Stefania
Lattanzio, Rossano
Faldetta, Naida
Lentini, Vincenzo L.
Porcasi, Rossana
Pistone, Giuseppe
Bongiorno, Maria Rita
Stassi, Giorgio
De Maria, Ruggero
Todaro, Matilde
author_sort Turdo, Alice
collection PubMed
description Breast cancer (BC) is the second cause of cancer-related deceases in the worldwide female population. Despite the successful treatment advances, 25% of BC develops resistance to current therapeutic regimens, thereby remaining a major hurdle for patient management. Current therapies, targeting the molecular events underpinning the adaptive resistance, still require effort to improve BC treatment. Using BC sphere cells (BCSphCs) as a model, here we showed that BC stem-like cells express high levels of Myc, which requires the presence of the multifunctional DNA/RNA binding protein Sam68 for the DNA-damage repair. Analysis of a cohort of BC patients displayed that Sam68 is an independent negative factor correlated with the progression of the disease. Genetic inhibition of Sam68 caused a defect in PARP-induced PAR chain synthesis upon DNA-damaging insults, resulting in cell death of TNBC cells. In contrast, BC stem-like cells were able to survive due to an upregulation of Rad51. Importantly, the inhibition of Rad51 showed synthetic lethal effect with the silencing of Sam68, hampering the cell viability of patient-derived BCSphCs and stabilizing the growth of tumor xenografts, including those TNBC carrying BRCA mutation. Moreover, the analysis of Myc, Sam68 and Rad51 expression demarcated a signature of a poor outcome in a large cohort of BC patients. Thus, our findings suggest the importance of targeting Sam68-PARP1 axis and Rad51 as potential therapeutic candidates to counteract the expansion of BC cells with an aggressive phenotype.
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spelling pubmed-89936942022-04-22 Effective targeting of breast cancer stem cells by combined inhibition of Sam68 and Rad51 Turdo, Alice Gaggianesi, Miriam Di Franco, Simone Veschi, Veronica D’Accardo, Caterina Porcelli, Gaetana Lo Iacono, Melania Pillitteri, Irene Verona, Francesco Militello, Gabriella Zippo, Alessio Poli, Vittoria Fagnocchi, Luca Beyes, Sven Stella, Stefania Lattanzio, Rossano Faldetta, Naida Lentini, Vincenzo L. Porcasi, Rossana Pistone, Giuseppe Bongiorno, Maria Rita Stassi, Giorgio De Maria, Ruggero Todaro, Matilde Oncogene Article Breast cancer (BC) is the second cause of cancer-related deceases in the worldwide female population. Despite the successful treatment advances, 25% of BC develops resistance to current therapeutic regimens, thereby remaining a major hurdle for patient management. Current therapies, targeting the molecular events underpinning the adaptive resistance, still require effort to improve BC treatment. Using BC sphere cells (BCSphCs) as a model, here we showed that BC stem-like cells express high levels of Myc, which requires the presence of the multifunctional DNA/RNA binding protein Sam68 for the DNA-damage repair. Analysis of a cohort of BC patients displayed that Sam68 is an independent negative factor correlated with the progression of the disease. Genetic inhibition of Sam68 caused a defect in PARP-induced PAR chain synthesis upon DNA-damaging insults, resulting in cell death of TNBC cells. In contrast, BC stem-like cells were able to survive due to an upregulation of Rad51. Importantly, the inhibition of Rad51 showed synthetic lethal effect with the silencing of Sam68, hampering the cell viability of patient-derived BCSphCs and stabilizing the growth of tumor xenografts, including those TNBC carrying BRCA mutation. Moreover, the analysis of Myc, Sam68 and Rad51 expression demarcated a signature of a poor outcome in a large cohort of BC patients. Thus, our findings suggest the importance of targeting Sam68-PARP1 axis and Rad51 as potential therapeutic candidates to counteract the expansion of BC cells with an aggressive phenotype. Nature Publishing Group UK 2022-02-25 2022 /pmc/articles/PMC8993694/ /pubmed/35217791 http://dx.doi.org/10.1038/s41388-022-02239-4 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Turdo, Alice
Gaggianesi, Miriam
Di Franco, Simone
Veschi, Veronica
D’Accardo, Caterina
Porcelli, Gaetana
Lo Iacono, Melania
Pillitteri, Irene
Verona, Francesco
Militello, Gabriella
Zippo, Alessio
Poli, Vittoria
Fagnocchi, Luca
Beyes, Sven
Stella, Stefania
Lattanzio, Rossano
Faldetta, Naida
Lentini, Vincenzo L.
Porcasi, Rossana
Pistone, Giuseppe
Bongiorno, Maria Rita
Stassi, Giorgio
De Maria, Ruggero
Todaro, Matilde
Effective targeting of breast cancer stem cells by combined inhibition of Sam68 and Rad51
title Effective targeting of breast cancer stem cells by combined inhibition of Sam68 and Rad51
title_full Effective targeting of breast cancer stem cells by combined inhibition of Sam68 and Rad51
title_fullStr Effective targeting of breast cancer stem cells by combined inhibition of Sam68 and Rad51
title_full_unstemmed Effective targeting of breast cancer stem cells by combined inhibition of Sam68 and Rad51
title_short Effective targeting of breast cancer stem cells by combined inhibition of Sam68 and Rad51
title_sort effective targeting of breast cancer stem cells by combined inhibition of sam68 and rad51
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8993694/
https://www.ncbi.nlm.nih.gov/pubmed/35217791
http://dx.doi.org/10.1038/s41388-022-02239-4
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