Literature DB >> 26411687

H. pylori-Induced DNA Strand Breaks Are Introduced by Nucleotide Excision Repair Endonucleases and Promote NF-κB Target Gene Expression.

Mara L Hartung1, Dorothea C Gruber1, Katrin N Koch1, Livia Grüter1, Hubert Rehrauer2, Nicole Tegtmeyer3, Steffen Backert3, Anne Müller4.   

Abstract

The human bacterial pathogen Helicobacter pylori exhibits genotoxic properties that promote gastric carcinogenesis. H. pylori introduces DNA double strand breaks (DSBs) in epithelial cells that trigger host cell DNA repair efforts. Here, we show that H. pylori-induced DSBs are repaired via error-prone, potentially mutagenic non-homologous end-joining. A genome-wide screen for factors contributing to DSB induction revealed a critical role for the H. pylori type IV secretion system (T4SS). Inhibition of transcription, as well as NF-κB/RelA-specific RNAi, abrogates DSB formation. DSB induction further requires β1-integrin signaling. DSBs are introduced by the nucleotide excision repair endonucleases XPF and XPG, which, together with RelA, are recruited to chromatin in a highly coordinated, T4SS-dependent manner. Interestingly, XPF/XPG-mediated DNA DSBs promote NF-κB target gene transactivation and host cell survival. In summary, H. pylori induces XPF/XPG-mediated DNA damage through activation of the T4SS/β1-integrin signaling axis, which promotes NF-κB target gene expression and host cell survival.
Copyright © 2015 The Authors. Published by Elsevier Inc. All rights reserved.

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Year:  2015        PMID: 26411687     DOI: 10.1016/j.celrep.2015.08.074

Source DB:  PubMed          Journal:  Cell Rep            Impact factor:   9.423


  35 in total

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Journal:  Nat Rev Microbiol       Date:  2017-01-03       Impact factor: 60.633

2.  Mutagenicity of Helicobacter hepaticus infection in the lower bowel mucosa of 129/SvEv Rag2-/- Il10-/- gpt delta mice is influenced by sex.

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Journal:  Int J Cancer       Date:  2019-05-07       Impact factor: 7.396

Review 3.  Subversion of host genome integrity by bacterial pathogens.

Authors:  Cindrilla Chumduri; Rajendra Kumar Gurumurthy; Rike Zietlow; Thomas F Meyer
Journal:  Nat Rev Mol Cell Biol       Date:  2016-08-18       Impact factor: 94.444

4.  Inhibition of polarity-regulating kinase PAR1b contributes to Helicobacter pylori inflicted DNA Double Strand Breaks in gastric cells.

Authors:  Andrea Zamperone; David Cohen; Markus Stein; Charlotte Viard; Anne Müsch
Journal:  Cell Cycle       Date:  2019-01-13       Impact factor: 4.534

Review 5.  Control of structure-specific endonucleases to maintain genome stability.

Authors:  Pierre-Marie Dehé; Pierre-Henri L Gaillard
Journal:  Nat Rev Mol Cell Biol       Date:  2017-03-22       Impact factor: 94.444

6.  Helicobacter pylori infection promotes Aquaporin 3 expression via the ROS-HIF-1α-AQP3-ROS loop in stomach mucosa: a potential novel mechanism for cancer pathogenesis.

Authors:  Jianfei Wen; Yao Wang; Cheng Gao; Guoxin Zhang; Qiang You; Weiming Zhang; Zhihong Zhang; Shoulin Wang; Guangyong Peng; Lizong Shen
Journal:  Oncogene       Date:  2018-03-22       Impact factor: 9.867

Review 7.  Molecular mechanisms of gastric cancer initiation and progression by Helicobacter pylori.

Authors:  Stephanie L Servetas; Dacie R Bridge; D Scott Merrell
Journal:  Curr Opin Infect Dis       Date:  2016-06       Impact factor: 4.915

Review 8.  When Genome Maintenance Goes Badly Awry.

Authors:  Elizabeth M Kass; Mary Ellen Moynahan; Maria Jasin
Journal:  Mol Cell       Date:  2016-06-02       Impact factor: 17.970

9.  H. pylori infection alters repair of DNA double-strand breaks via SNHG17.

Authors:  Taotao Han; Xiaohui Jing; Jiayu Bao; Lianmei Zhao; Aidong Zhang; Renling Miao; Hui Guo; Baoguo Zhou; Shang Zhang; Jiazeng Sun; Juan Shi
Journal:  J Clin Invest       Date:  2020-07-01       Impact factor: 14.808

Review 10.  The COSMIC Cancer Gene Census: describing genetic dysfunction across all human cancers.

Authors:  Zbyslaw Sondka; Sally Bamford; Charlotte G Cole; Sari A Ward; Ian Dunham; Simon A Forbes
Journal:  Nat Rev Cancer       Date:  2018-11       Impact factor: 60.716

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