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MRE11 inhibition highlights a replication stress-dependent vulnerability of MYCN-driven tumors

MRE11 is a component of the MRE11/RAD50/NBS1 (MRN) complex, whose activity is essential to control faithful DNA replication and to prevent accumulation of deleterious DNA double-strand breaks. In humans, hypomorphic mutations in these genes lead to DNA damage response (DDR)-defective and cancer-pron...

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Autores principales: Petroni, Marialaura, Sardina, Francesca, Infante, Paola, Bartolazzi, Armando, Locatelli, Erica, Fabretti, Francesca, Di Giulio, Stefano, Capalbo, Carlo, Cardinali, Beatrice, Coppa, Anna, Tessitore, Alessandra, Colicchia, Valeria, Sahùn Roncero, Maria, Belardinilli, Francesca, Di Marcotullio, Lucia, Soddu, Silvia, Comes Franchini, Mauro, Petricci, Elena, Gulino, Alberto, Giannini, Giuseppe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6117286/
https://www.ncbi.nlm.nih.gov/pubmed/30166519
http://dx.doi.org/10.1038/s41419-018-0924-z
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author Petroni, Marialaura
Sardina, Francesca
Infante, Paola
Bartolazzi, Armando
Locatelli, Erica
Fabretti, Francesca
Di Giulio, Stefano
Capalbo, Carlo
Cardinali, Beatrice
Coppa, Anna
Tessitore, Alessandra
Colicchia, Valeria
Sahùn Roncero, Maria
Belardinilli, Francesca
Di Marcotullio, Lucia
Soddu, Silvia
Comes Franchini, Mauro
Petricci, Elena
Gulino, Alberto
Giannini, Giuseppe
author_facet Petroni, Marialaura
Sardina, Francesca
Infante, Paola
Bartolazzi, Armando
Locatelli, Erica
Fabretti, Francesca
Di Giulio, Stefano
Capalbo, Carlo
Cardinali, Beatrice
Coppa, Anna
Tessitore, Alessandra
Colicchia, Valeria
Sahùn Roncero, Maria
Belardinilli, Francesca
Di Marcotullio, Lucia
Soddu, Silvia
Comes Franchini, Mauro
Petricci, Elena
Gulino, Alberto
Giannini, Giuseppe
author_sort Petroni, Marialaura
collection PubMed
description MRE11 is a component of the MRE11/RAD50/NBS1 (MRN) complex, whose activity is essential to control faithful DNA replication and to prevent accumulation of deleterious DNA double-strand breaks. In humans, hypomorphic mutations in these genes lead to DNA damage response (DDR)-defective and cancer-prone syndromes. Moreover, MRN complex dysfunction dramatically affects the nervous system, where MRE11 is required to restrain MYCN-dependent replication stress, during the rapid expansion of progenitor cells. MYCN activation, often due to genetic amplification, represents the driving oncogenic event for a number of human tumors, conferring bad prognosis and predicting very poor responses even to the most aggressive therapeutic protocols. This is prototypically exemplified by neuroblastoma, where MYCN amplification occurs in about 25% of the cases. Intriguingly, MRE11 is highly expressed and predicts bad prognosis in MYCN-amplified neuroblastoma. Due to the lack of direct means to target MYCN, we explored the possibility to trigger intolerable levels of replication stress-dependent DNA damage, by inhibiting MRE11 in MYCN-amplified preclinical models. Indeed, either MRE11 knockdown or its pharmacological inhibitor mirin induce accumulation of replication stress and DNA damage biomarkers in MYCN-amplified cells. The consequent DDR recruits p53 and promotes a p53-dependent cell death, as indicated by p53 loss- and gain-of-function experiments. Encapsulation of mirin in nanoparticles allowed its use on MYCN-amplified neuroblastoma xenografts in vivo, which resulted in a sharp impairment of tumor growth, associated with DDR activation, p53 accumulation, and cell death. Therefore, we propose that MRE11 inhibition might be an effective strategy to treat MYCN-amplified and p53 wild-type neuroblastoma, and suggest that targeting replication stress with appropriate tools should be further exploited to tackle MYCN-driven tumors.
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spelling pubmed-61172862018-08-31 MRE11 inhibition highlights a replication stress-dependent vulnerability of MYCN-driven tumors Petroni, Marialaura Sardina, Francesca Infante, Paola Bartolazzi, Armando Locatelli, Erica Fabretti, Francesca Di Giulio, Stefano Capalbo, Carlo Cardinali, Beatrice Coppa, Anna Tessitore, Alessandra Colicchia, Valeria Sahùn Roncero, Maria Belardinilli, Francesca Di Marcotullio, Lucia Soddu, Silvia Comes Franchini, Mauro Petricci, Elena Gulino, Alberto Giannini, Giuseppe Cell Death Dis Article MRE11 is a component of the MRE11/RAD50/NBS1 (MRN) complex, whose activity is essential to control faithful DNA replication and to prevent accumulation of deleterious DNA double-strand breaks. In humans, hypomorphic mutations in these genes lead to DNA damage response (DDR)-defective and cancer-prone syndromes. Moreover, MRN complex dysfunction dramatically affects the nervous system, where MRE11 is required to restrain MYCN-dependent replication stress, during the rapid expansion of progenitor cells. MYCN activation, often due to genetic amplification, represents the driving oncogenic event for a number of human tumors, conferring bad prognosis and predicting very poor responses even to the most aggressive therapeutic protocols. This is prototypically exemplified by neuroblastoma, where MYCN amplification occurs in about 25% of the cases. Intriguingly, MRE11 is highly expressed and predicts bad prognosis in MYCN-amplified neuroblastoma. Due to the lack of direct means to target MYCN, we explored the possibility to trigger intolerable levels of replication stress-dependent DNA damage, by inhibiting MRE11 in MYCN-amplified preclinical models. Indeed, either MRE11 knockdown or its pharmacological inhibitor mirin induce accumulation of replication stress and DNA damage biomarkers in MYCN-amplified cells. The consequent DDR recruits p53 and promotes a p53-dependent cell death, as indicated by p53 loss- and gain-of-function experiments. Encapsulation of mirin in nanoparticles allowed its use on MYCN-amplified neuroblastoma xenografts in vivo, which resulted in a sharp impairment of tumor growth, associated with DDR activation, p53 accumulation, and cell death. Therefore, we propose that MRE11 inhibition might be an effective strategy to treat MYCN-amplified and p53 wild-type neuroblastoma, and suggest that targeting replication stress with appropriate tools should be further exploited to tackle MYCN-driven tumors. Nature Publishing Group UK 2018-08-30 /pmc/articles/PMC6117286/ /pubmed/30166519 http://dx.doi.org/10.1038/s41419-018-0924-z Text en © The Author(s) 2018 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/.
spellingShingle Article
Petroni, Marialaura
Sardina, Francesca
Infante, Paola
Bartolazzi, Armando
Locatelli, Erica
Fabretti, Francesca
Di Giulio, Stefano
Capalbo, Carlo
Cardinali, Beatrice
Coppa, Anna
Tessitore, Alessandra
Colicchia, Valeria
Sahùn Roncero, Maria
Belardinilli, Francesca
Di Marcotullio, Lucia
Soddu, Silvia
Comes Franchini, Mauro
Petricci, Elena
Gulino, Alberto
Giannini, Giuseppe
MRE11 inhibition highlights a replication stress-dependent vulnerability of MYCN-driven tumors
title MRE11 inhibition highlights a replication stress-dependent vulnerability of MYCN-driven tumors
title_full MRE11 inhibition highlights a replication stress-dependent vulnerability of MYCN-driven tumors
title_fullStr MRE11 inhibition highlights a replication stress-dependent vulnerability of MYCN-driven tumors
title_full_unstemmed MRE11 inhibition highlights a replication stress-dependent vulnerability of MYCN-driven tumors
title_short MRE11 inhibition highlights a replication stress-dependent vulnerability of MYCN-driven tumors
title_sort mre11 inhibition highlights a replication stress-dependent vulnerability of mycn-driven tumors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6117286/
https://www.ncbi.nlm.nih.gov/pubmed/30166519
http://dx.doi.org/10.1038/s41419-018-0924-z
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