ATM orchestrates the DNA-damage response to counter toxic non-homologous end-joining at broken replication forks

Mutations in the ATM tumor suppressor gene confer hypersensitivity to DNA-damaging chemotherapeutic agents. Here, the authors provide evidence that these hypersensitivities reflect a crucial role for ATM at damaged replication forks being to prevent toxic DNA end-joining leading to chromosome fusion...

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Autores principales: Gabriel Balmus, Domenic Pilger, Julia Coates, Mukerrem Demir, Matylda Sczaniecka-Clift, Ana C. Barros, Michael Woods, Beiyuan Fu, Fengtang Yang, Elisabeth Chen, Matthias Ostermaier, Tatjana Stankovic, Hannes Ponstingl, Mareike Herzog, Kosuke Yusa, Francisco Munoz Martinez, Stephen T. Durant, Yaron Galanty, Petra Beli, David J. Adams, Allan Bradley, Emmanouil Metzakopian, Josep V. Forment, Stephen P. Jackson
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/c403db6b24d849f3aa73ce7778708c4a
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spelling oai:doaj.org-article:c403db6b24d849f3aa73ce7778708c4a2021-12-02T17:01:31ZATM orchestrates the DNA-damage response to counter toxic non-homologous end-joining at broken replication forks10.1038/s41467-018-07729-22041-1723https://doaj.org/article/c403db6b24d849f3aa73ce7778708c4a2019-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-07729-2https://doaj.org/toc/2041-1723Mutations in the ATM tumor suppressor gene confer hypersensitivity to DNA-damaging chemotherapeutic agents. Here, the authors provide evidence that these hypersensitivities reflect a crucial role for ATM at damaged replication forks being to prevent toxic DNA end-joining leading to chromosome fusions and cell death.Gabriel BalmusDomenic PilgerJulia CoatesMukerrem DemirMatylda Sczaniecka-CliftAna C. BarrosMichael WoodsBeiyuan FuFengtang YangElisabeth ChenMatthias OstermaierTatjana StankovicHannes PonstinglMareike HerzogKosuke YusaFrancisco Munoz MartinezStephen T. DurantYaron GalantyPetra BeliDavid J. AdamsAllan BradleyEmmanouil MetzakopianJosep V. FormentStephen P. JacksonNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-18 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Gabriel Balmus
Domenic Pilger
Julia Coates
Mukerrem Demir
Matylda Sczaniecka-Clift
Ana C. Barros
Michael Woods
Beiyuan Fu
Fengtang Yang
Elisabeth Chen
Matthias Ostermaier
Tatjana Stankovic
Hannes Ponstingl
Mareike Herzog
Kosuke Yusa
Francisco Munoz Martinez
Stephen T. Durant
Yaron Galanty
Petra Beli
David J. Adams
Allan Bradley
Emmanouil Metzakopian
Josep V. Forment
Stephen P. Jackson
ATM orchestrates the DNA-damage response to counter toxic non-homologous end-joining at broken replication forks
description Mutations in the ATM tumor suppressor gene confer hypersensitivity to DNA-damaging chemotherapeutic agents. Here, the authors provide evidence that these hypersensitivities reflect a crucial role for ATM at damaged replication forks being to prevent toxic DNA end-joining leading to chromosome fusions and cell death.
format article
author Gabriel Balmus
Domenic Pilger
Julia Coates
Mukerrem Demir
Matylda Sczaniecka-Clift
Ana C. Barros
Michael Woods
Beiyuan Fu
Fengtang Yang
Elisabeth Chen
Matthias Ostermaier
Tatjana Stankovic
Hannes Ponstingl
Mareike Herzog
Kosuke Yusa
Francisco Munoz Martinez
Stephen T. Durant
Yaron Galanty
Petra Beli
David J. Adams
Allan Bradley
Emmanouil Metzakopian
Josep V. Forment
Stephen P. Jackson
author_facet Gabriel Balmus
Domenic Pilger
Julia Coates
Mukerrem Demir
Matylda Sczaniecka-Clift
Ana C. Barros
Michael Woods
Beiyuan Fu
Fengtang Yang
Elisabeth Chen
Matthias Ostermaier
Tatjana Stankovic
Hannes Ponstingl
Mareike Herzog
Kosuke Yusa
Francisco Munoz Martinez
Stephen T. Durant
Yaron Galanty
Petra Beli
David J. Adams
Allan Bradley
Emmanouil Metzakopian
Josep V. Forment
Stephen P. Jackson
author_sort Gabriel Balmus
title ATM orchestrates the DNA-damage response to counter toxic non-homologous end-joining at broken replication forks
title_short ATM orchestrates the DNA-damage response to counter toxic non-homologous end-joining at broken replication forks
title_full ATM orchestrates the DNA-damage response to counter toxic non-homologous end-joining at broken replication forks
title_fullStr ATM orchestrates the DNA-damage response to counter toxic non-homologous end-joining at broken replication forks
title_full_unstemmed ATM orchestrates the DNA-damage response to counter toxic non-homologous end-joining at broken replication forks
title_sort atm orchestrates the dna-damage response to counter toxic non-homologous end-joining at broken replication forks
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/c403db6b24d849f3aa73ce7778708c4a
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