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PARP targeting counteracts gliomagenesis through induction of mitotic catastrophe and aggravation of deficiency in homologous recombination in PTEN-mutant glioma

Glioblastoma multiforme (GBM) is the most common primary brain tumour in adults and one of the most aggressive cancers. PARP-1 is a nuclear protein involved in multiple facets of DNA repair and transcriptional regulation. In this study we dissected the action of PARP inhibition in different GBM cell...

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Autores principales: Majuelos-Melguizo, Jara, Rodríguez, María Isabel, López-Jiménez, Laura, Rodríguez-Vargas, Jose M., Martí Martín-Consuegra, Juan M., Serrano-Sáenz, Santiago, Gavard, Julie, Mariano Ruiz de Almodóvar, J, Javier Oliver, F
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4467115/
https://www.ncbi.nlm.nih.gov/pubmed/25576921
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author Majuelos-Melguizo, Jara
Rodríguez, María Isabel
López-Jiménez, Laura
Rodríguez-Vargas, Jose M.
Martí Martín-Consuegra, Juan M.
Serrano-Sáenz, Santiago
Gavard, Julie
Mariano Ruiz de Almodóvar, J
Javier Oliver, F
author_facet Majuelos-Melguizo, Jara
Rodríguez, María Isabel
López-Jiménez, Laura
Rodríguez-Vargas, Jose M.
Martí Martín-Consuegra, Juan M.
Serrano-Sáenz, Santiago
Gavard, Julie
Mariano Ruiz de Almodóvar, J
Javier Oliver, F
author_sort Majuelos-Melguizo, Jara
collection PubMed
description Glioblastoma multiforme (GBM) is the most common primary brain tumour in adults and one of the most aggressive cancers. PARP-1 is a nuclear protein involved in multiple facets of DNA repair and transcriptional regulation. In this study we dissected the action of PARP inhibition in different GBM cell lines with either functional or mutated PTEN that confers resistance to diverse therapies. In PTEN mutant cells, PARP inhibition induced a severe genomic instability, exacerbated homologous recombination repair (HR) deficiency and down-regulated the Spindle Assembly Checkpoint (SAC) factor BUBR1, leading to mitotic catastrophe (MC). EGFR gene amplification also represents a signature of genetic abnormality in GBM. To more effectively target GBM cells, co-treatment with a PARP inhibitor and an EGFR blocker, erlotinib, resulted in a strong suppression of ERK1/2 activation and in vivo the combined effect elicited a robust reduction in tumour development. In conclusion, PARP inhibition targets PTEN-deficient GBM cells through accentuation of SAC repression and aggravation of HR deficiency, leading to the induction of genomic instability and eventually deriving to mitotic catastrophe (MC); the inhibition of PARP and co-treatment with an inhibitor of pro-survival pathways strongly retarded in vivo gliomagenesis.
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spelling pubmed-44671152015-06-22 PARP targeting counteracts gliomagenesis through induction of mitotic catastrophe and aggravation of deficiency in homologous recombination in PTEN-mutant glioma Majuelos-Melguizo, Jara Rodríguez, María Isabel López-Jiménez, Laura Rodríguez-Vargas, Jose M. Martí Martín-Consuegra, Juan M. Serrano-Sáenz, Santiago Gavard, Julie Mariano Ruiz de Almodóvar, J Javier Oliver, F Oncotarget Research Paper Glioblastoma multiforme (GBM) is the most common primary brain tumour in adults and one of the most aggressive cancers. PARP-1 is a nuclear protein involved in multiple facets of DNA repair and transcriptional regulation. In this study we dissected the action of PARP inhibition in different GBM cell lines with either functional or mutated PTEN that confers resistance to diverse therapies. In PTEN mutant cells, PARP inhibition induced a severe genomic instability, exacerbated homologous recombination repair (HR) deficiency and down-regulated the Spindle Assembly Checkpoint (SAC) factor BUBR1, leading to mitotic catastrophe (MC). EGFR gene amplification also represents a signature of genetic abnormality in GBM. To more effectively target GBM cells, co-treatment with a PARP inhibitor and an EGFR blocker, erlotinib, resulted in a strong suppression of ERK1/2 activation and in vivo the combined effect elicited a robust reduction in tumour development. In conclusion, PARP inhibition targets PTEN-deficient GBM cells through accentuation of SAC repression and aggravation of HR deficiency, leading to the induction of genomic instability and eventually deriving to mitotic catastrophe (MC); the inhibition of PARP and co-treatment with an inhibitor of pro-survival pathways strongly retarded in vivo gliomagenesis. Impact Journals LLC 2014-12-11 /pmc/articles/PMC4467115/ /pubmed/25576921 Text en Copyright: © 2015 Majuelos-Melguizo et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Majuelos-Melguizo, Jara
Rodríguez, María Isabel
López-Jiménez, Laura
Rodríguez-Vargas, Jose M.
Martí Martín-Consuegra, Juan M.
Serrano-Sáenz, Santiago
Gavard, Julie
Mariano Ruiz de Almodóvar, J
Javier Oliver, F
PARP targeting counteracts gliomagenesis through induction of mitotic catastrophe and aggravation of deficiency in homologous recombination in PTEN-mutant glioma
title PARP targeting counteracts gliomagenesis through induction of mitotic catastrophe and aggravation of deficiency in homologous recombination in PTEN-mutant glioma
title_full PARP targeting counteracts gliomagenesis through induction of mitotic catastrophe and aggravation of deficiency in homologous recombination in PTEN-mutant glioma
title_fullStr PARP targeting counteracts gliomagenesis through induction of mitotic catastrophe and aggravation of deficiency in homologous recombination in PTEN-mutant glioma
title_full_unstemmed PARP targeting counteracts gliomagenesis through induction of mitotic catastrophe and aggravation of deficiency in homologous recombination in PTEN-mutant glioma
title_short PARP targeting counteracts gliomagenesis through induction of mitotic catastrophe and aggravation of deficiency in homologous recombination in PTEN-mutant glioma
title_sort parp targeting counteracts gliomagenesis through induction of mitotic catastrophe and aggravation of deficiency in homologous recombination in pten-mutant glioma
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4467115/
https://www.ncbi.nlm.nih.gov/pubmed/25576921
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