The ALPK1/TIFA/NF-κB axis links a bacterial carcinogen to R-loop-induced replication stress

The bacterial pathogen Helicobacter pylori is known for its ability to induce DNA double-strand breaks in the genome of its target cells. Here, we show that H. pylori-induced DNA damage and replication stress occurs in S-phase cells as a result of R-loop-mediated transcription/replication conflicts...

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Autores principales: Michael Bauer, Zuzana Nascakova, Anca-Irina Mihai, Phil F. Cheng, Mitchell P. Levesque, Simon Lampart, Robert Hurwitz, Lennart Pfannkuch, Jana Dobrovolna, Melanie Jacobs, Sina Bartfeld, Anders Dohlman, Xiling Shen, Alevtina A. Gall, Nina R. Salama, Antonia Töpfer, Achim Weber, Thomas F. Meyer, Pavel Janscak, Anne Müller
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/776595ded02849959ccfec289f6e8902
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spelling oai:doaj.org-article:776595ded02849959ccfec289f6e89022021-12-02T16:56:44ZThe ALPK1/TIFA/NF-κB axis links a bacterial carcinogen to R-loop-induced replication stress10.1038/s41467-020-18857-z2041-1723https://doaj.org/article/776595ded02849959ccfec289f6e89022020-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18857-zhttps://doaj.org/toc/2041-1723The bacterial pathogen Helicobacter pylori is known for its ability to induce DNA double-strand breaks in the genome of its target cells. Here, we show that H. pylori-induced DNA damage and replication stress occurs in S-phase cells as a result of R-loop-mediated transcription/replication conflicts that are triggered by activation of the ALPK1/TIFA/NF-κB signaling axis.Michael BauerZuzana NascakovaAnca-Irina MihaiPhil F. ChengMitchell P. LevesqueSimon LampartRobert HurwitzLennart PfannkuchJana DobrovolnaMelanie JacobsSina BartfeldAnders DohlmanXiling ShenAlevtina A. GallNina R. SalamaAntonia TöpferAchim WeberThomas F. MeyerPavel JanscakAnne MüllerNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-16 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Michael Bauer
Zuzana Nascakova
Anca-Irina Mihai
Phil F. Cheng
Mitchell P. Levesque
Simon Lampart
Robert Hurwitz
Lennart Pfannkuch
Jana Dobrovolna
Melanie Jacobs
Sina Bartfeld
Anders Dohlman
Xiling Shen
Alevtina A. Gall
Nina R. Salama
Antonia Töpfer
Achim Weber
Thomas F. Meyer
Pavel Janscak
Anne Müller
The ALPK1/TIFA/NF-κB axis links a bacterial carcinogen to R-loop-induced replication stress
description The bacterial pathogen Helicobacter pylori is known for its ability to induce DNA double-strand breaks in the genome of its target cells. Here, we show that H. pylori-induced DNA damage and replication stress occurs in S-phase cells as a result of R-loop-mediated transcription/replication conflicts that are triggered by activation of the ALPK1/TIFA/NF-κB signaling axis.
format article
author Michael Bauer
Zuzana Nascakova
Anca-Irina Mihai
Phil F. Cheng
Mitchell P. Levesque
Simon Lampart
Robert Hurwitz
Lennart Pfannkuch
Jana Dobrovolna
Melanie Jacobs
Sina Bartfeld
Anders Dohlman
Xiling Shen
Alevtina A. Gall
Nina R. Salama
Antonia Töpfer
Achim Weber
Thomas F. Meyer
Pavel Janscak
Anne Müller
author_facet Michael Bauer
Zuzana Nascakova
Anca-Irina Mihai
Phil F. Cheng
Mitchell P. Levesque
Simon Lampart
Robert Hurwitz
Lennart Pfannkuch
Jana Dobrovolna
Melanie Jacobs
Sina Bartfeld
Anders Dohlman
Xiling Shen
Alevtina A. Gall
Nina R. Salama
Antonia Töpfer
Achim Weber
Thomas F. Meyer
Pavel Janscak
Anne Müller
author_sort Michael Bauer
title The ALPK1/TIFA/NF-κB axis links a bacterial carcinogen to R-loop-induced replication stress
title_short The ALPK1/TIFA/NF-κB axis links a bacterial carcinogen to R-loop-induced replication stress
title_full The ALPK1/TIFA/NF-κB axis links a bacterial carcinogen to R-loop-induced replication stress
title_fullStr The ALPK1/TIFA/NF-κB axis links a bacterial carcinogen to R-loop-induced replication stress
title_full_unstemmed The ALPK1/TIFA/NF-κB axis links a bacterial carcinogen to R-loop-induced replication stress
title_sort alpk1/tifa/nf-κb axis links a bacterial carcinogen to r-loop-induced replication stress
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/776595ded02849959ccfec289f6e8902
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