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LINC01605 Is a Novel Target of Mutant p53 in Breast and Ovarian Cancer Cell Lines

TP53 is the most frequently mutated gene in human cancers. Most TP53 genomic alterations are missense mutations, which cause a loss of its tumour suppressor functions while providing mutant p53 (mut_p53) with oncogenic features (gain-of-function). Loss of p53 tumour suppressor functions alters the t...

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Autores principales: Coan, Michela, Toso, Martina, Cesaratto, Laura, Rigo, Ilenia, Borgna, Silvia, Dalla Pietà, Anna, Zandonà, Luigi, Iuri, Lorenzo, Zucchetto, Antonella, Piazza, Carla, Baldassarre, Gustavo, Spizzo, Riccardo, Nicoloso, Milena Sabrina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10531163/
https://www.ncbi.nlm.nih.gov/pubmed/37762037
http://dx.doi.org/10.3390/ijms241813736
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author Coan, Michela
Toso, Martina
Cesaratto, Laura
Rigo, Ilenia
Borgna, Silvia
Dalla Pietà, Anna
Zandonà, Luigi
Iuri, Lorenzo
Zucchetto, Antonella
Piazza, Carla
Baldassarre, Gustavo
Spizzo, Riccardo
Nicoloso, Milena Sabrina
author_facet Coan, Michela
Toso, Martina
Cesaratto, Laura
Rigo, Ilenia
Borgna, Silvia
Dalla Pietà, Anna
Zandonà, Luigi
Iuri, Lorenzo
Zucchetto, Antonella
Piazza, Carla
Baldassarre, Gustavo
Spizzo, Riccardo
Nicoloso, Milena Sabrina
author_sort Coan, Michela
collection PubMed
description TP53 is the most frequently mutated gene in human cancers. Most TP53 genomic alterations are missense mutations, which cause a loss of its tumour suppressor functions while providing mutant p53 (mut_p53) with oncogenic features (gain-of-function). Loss of p53 tumour suppressor functions alters the transcription of both protein-coding and non-protein-coding genes. Gain-of-function of mut_p53 triggers modification in gene expression as well; however, the impact of mut_p53 on the transcription of the non-protein-coding genes and whether these non-protein-coding genes affect oncogenic properties of cancer cell lines are not fully explored. In this study, we suggested that LINC01605 (also known as lincDUSP) is a long non-coding RNA regulated by mut_p53 and proved that mut_p53 directly regulates LINC01605 by binding to an enhancer region downstream of the LINC01605 locus. We also showed that the loss or downregulation of LINC01605 impairs cell migration in a breast cancer cell line. Eventually, by performing a combined analysis of RNA-seq data generated in mut_TP53-silenced and LINC01605 knockout cells, we showed that LINC01605 and mut_p53 share common gene pathways. Overall, our findings underline the importance of ncRNAs in the mut_p53 network in breast and ovarian cancer cell lines and in particular the importance of LINC01605 in mut_p53 pro-migratory pathways.
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spelling pubmed-105311632023-09-28 LINC01605 Is a Novel Target of Mutant p53 in Breast and Ovarian Cancer Cell Lines Coan, Michela Toso, Martina Cesaratto, Laura Rigo, Ilenia Borgna, Silvia Dalla Pietà, Anna Zandonà, Luigi Iuri, Lorenzo Zucchetto, Antonella Piazza, Carla Baldassarre, Gustavo Spizzo, Riccardo Nicoloso, Milena Sabrina Int J Mol Sci Article TP53 is the most frequently mutated gene in human cancers. Most TP53 genomic alterations are missense mutations, which cause a loss of its tumour suppressor functions while providing mutant p53 (mut_p53) with oncogenic features (gain-of-function). Loss of p53 tumour suppressor functions alters the transcription of both protein-coding and non-protein-coding genes. Gain-of-function of mut_p53 triggers modification in gene expression as well; however, the impact of mut_p53 on the transcription of the non-protein-coding genes and whether these non-protein-coding genes affect oncogenic properties of cancer cell lines are not fully explored. In this study, we suggested that LINC01605 (also known as lincDUSP) is a long non-coding RNA regulated by mut_p53 and proved that mut_p53 directly regulates LINC01605 by binding to an enhancer region downstream of the LINC01605 locus. We also showed that the loss or downregulation of LINC01605 impairs cell migration in a breast cancer cell line. Eventually, by performing a combined analysis of RNA-seq data generated in mut_TP53-silenced and LINC01605 knockout cells, we showed that LINC01605 and mut_p53 share common gene pathways. Overall, our findings underline the importance of ncRNAs in the mut_p53 network in breast and ovarian cancer cell lines and in particular the importance of LINC01605 in mut_p53 pro-migratory pathways. MDPI 2023-09-06 /pmc/articles/PMC10531163/ /pubmed/37762037 http://dx.doi.org/10.3390/ijms241813736 Text en © 2023 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
Coan, Michela
Toso, Martina
Cesaratto, Laura
Rigo, Ilenia
Borgna, Silvia
Dalla Pietà, Anna
Zandonà, Luigi
Iuri, Lorenzo
Zucchetto, Antonella
Piazza, Carla
Baldassarre, Gustavo
Spizzo, Riccardo
Nicoloso, Milena Sabrina
LINC01605 Is a Novel Target of Mutant p53 in Breast and Ovarian Cancer Cell Lines
title LINC01605 Is a Novel Target of Mutant p53 in Breast and Ovarian Cancer Cell Lines
title_full LINC01605 Is a Novel Target of Mutant p53 in Breast and Ovarian Cancer Cell Lines
title_fullStr LINC01605 Is a Novel Target of Mutant p53 in Breast and Ovarian Cancer Cell Lines
title_full_unstemmed LINC01605 Is a Novel Target of Mutant p53 in Breast and Ovarian Cancer Cell Lines
title_short LINC01605 Is a Novel Target of Mutant p53 in Breast and Ovarian Cancer Cell Lines
title_sort linc01605 is a novel target of mutant p53 in breast and ovarian cancer cell lines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10531163/
https://www.ncbi.nlm.nih.gov/pubmed/37762037
http://dx.doi.org/10.3390/ijms241813736
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