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USF1 defect drives p53 degradation during Helicobacter pylori infection and accelerates gastric carcinogenesis

OBJECTIVE: Helicobacter pylori (Hp) is a major risk factor for gastric cancer (GC). Hp promotes DNA damage and proteasomal degradation of p53, the guardian of genome stability. Hp reduces the expression of the transcription factor USF1 shown to stabilise p53 in response to genotoxic stress. We inves...

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Autores principales: Costa, Lionel, Corre, Sébastien, Michel, Valérie, Le Luel, Krysten, Fernandes, Julien, Ziveri, Jason, Jouvion, Gregory, Danckaert, Anne, Mouchet, Nicolas, Da Silva Barreira, David, Torres, Javier, Camorlinga, Margarita, D'Elios, Mario Milco, Fiette, Laurence, De Reuse, Hilde, Galibert, Marie-Dominique, Touati, Eliette
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BMJ Publishing Group 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7456735/
https://www.ncbi.nlm.nih.gov/pubmed/31822580
http://dx.doi.org/10.1136/gutjnl-2019-318640
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author Costa, Lionel
Corre, Sébastien
Michel, Valérie
Le Luel, Krysten
Fernandes, Julien
Ziveri, Jason
Jouvion, Gregory
Danckaert, Anne
Mouchet, Nicolas
Da Silva Barreira, David
Torres, Javier
Camorlinga, Margarita
D'Elios, Mario Milco
Fiette, Laurence
De Reuse, Hilde
Galibert, Marie-Dominique
Touati, Eliette
author_facet Costa, Lionel
Corre, Sébastien
Michel, Valérie
Le Luel, Krysten
Fernandes, Julien
Ziveri, Jason
Jouvion, Gregory
Danckaert, Anne
Mouchet, Nicolas
Da Silva Barreira, David
Torres, Javier
Camorlinga, Margarita
D'Elios, Mario Milco
Fiette, Laurence
De Reuse, Hilde
Galibert, Marie-Dominique
Touati, Eliette
author_sort Costa, Lionel
collection PubMed
description OBJECTIVE: Helicobacter pylori (Hp) is a major risk factor for gastric cancer (GC). Hp promotes DNA damage and proteasomal degradation of p53, the guardian of genome stability. Hp reduces the expression of the transcription factor USF1 shown to stabilise p53 in response to genotoxic stress. We investigated whether Hp-mediated USF1 deregulation impacts p53-response and consequently genetic instability. We also explored in vivo the role of USF1 in gastric carcinogenesis. DESIGN: Human gastric epithelial cell lines were infected with Hp7.13, exposed or not to a DNA-damaging agent camptothecin (CPT), to mimic a genetic instability context. We quantified the expression of USF1, p53 and their target genes, we determined their subcellular localisation by immunofluorescence and examined USF1/p53 interaction. Usf1 (-/-) and INS-GAS mice were used to strengthen the findings in vivo and patient data examined for clinical relevance. RESULTS: In vivo we revealed the dominant role of USF1 in protecting gastric cells against Hp-induced carcinogenesis and its impact on p53 levels. In vitro, Hp delocalises USF1 into foci close to cell membranes. Hp prevents USF1/p53 nuclear built up and relocates these complexes in the cytoplasm, thereby impairing their transcriptional function. Hp also inhibits CPT-induced USF1/p53 nuclear complexes, exacerbating CPT-dependent DNA damaging effects. CONCLUSION: Our data reveal that the depletion of USF1 and its de-localisation in the vicinity of cell membranes are essential events associated to the genotoxic activity of Hp infection, thus promoting gastric carcinogenesis. These findings are also of clinical relevance, supporting USF1 expression as a potential marker of GC susceptibility.
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spelling pubmed-74567352020-09-04 USF1 defect drives p53 degradation during Helicobacter pylori infection and accelerates gastric carcinogenesis Costa, Lionel Corre, Sébastien Michel, Valérie Le Luel, Krysten Fernandes, Julien Ziveri, Jason Jouvion, Gregory Danckaert, Anne Mouchet, Nicolas Da Silva Barreira, David Torres, Javier Camorlinga, Margarita D'Elios, Mario Milco Fiette, Laurence De Reuse, Hilde Galibert, Marie-Dominique Touati, Eliette Gut Helicobacter Pylori OBJECTIVE: Helicobacter pylori (Hp) is a major risk factor for gastric cancer (GC). Hp promotes DNA damage and proteasomal degradation of p53, the guardian of genome stability. Hp reduces the expression of the transcription factor USF1 shown to stabilise p53 in response to genotoxic stress. We investigated whether Hp-mediated USF1 deregulation impacts p53-response and consequently genetic instability. We also explored in vivo the role of USF1 in gastric carcinogenesis. DESIGN: Human gastric epithelial cell lines were infected with Hp7.13, exposed or not to a DNA-damaging agent camptothecin (CPT), to mimic a genetic instability context. We quantified the expression of USF1, p53 and their target genes, we determined their subcellular localisation by immunofluorescence and examined USF1/p53 interaction. Usf1 (-/-) and INS-GAS mice were used to strengthen the findings in vivo and patient data examined for clinical relevance. RESULTS: In vivo we revealed the dominant role of USF1 in protecting gastric cells against Hp-induced carcinogenesis and its impact on p53 levels. In vitro, Hp delocalises USF1 into foci close to cell membranes. Hp prevents USF1/p53 nuclear built up and relocates these complexes in the cytoplasm, thereby impairing their transcriptional function. Hp also inhibits CPT-induced USF1/p53 nuclear complexes, exacerbating CPT-dependent DNA damaging effects. CONCLUSION: Our data reveal that the depletion of USF1 and its de-localisation in the vicinity of cell membranes are essential events associated to the genotoxic activity of Hp infection, thus promoting gastric carcinogenesis. These findings are also of clinical relevance, supporting USF1 expression as a potential marker of GC susceptibility. BMJ Publishing Group 2020-09 2019-12-10 /pmc/articles/PMC7456735/ /pubmed/31822580 http://dx.doi.org/10.1136/gutjnl-2019-318640 Text en © Author(s) (or their employer(s)) 2020. Re-use permitted under CC BY-NC. No commercial re-use. See rights and permissions. Published by BMJ. http://creativecommons.org/licenses/by-nc/4.0/This is an open access article distributed in accordance with the Creative Commons Attribution Non Commercial (CC BY-NC 4.0) license, which permits others to distribute, remix, adapt, build upon this work non-commercially, and license their derivative works on different terms, provided the original work is properly cited, appropriate credit is given, any changes made indicated, and the use is non-commercial. See: http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Helicobacter Pylori
Costa, Lionel
Corre, Sébastien
Michel, Valérie
Le Luel, Krysten
Fernandes, Julien
Ziveri, Jason
Jouvion, Gregory
Danckaert, Anne
Mouchet, Nicolas
Da Silva Barreira, David
Torres, Javier
Camorlinga, Margarita
D'Elios, Mario Milco
Fiette, Laurence
De Reuse, Hilde
Galibert, Marie-Dominique
Touati, Eliette
USF1 defect drives p53 degradation during Helicobacter pylori infection and accelerates gastric carcinogenesis
title USF1 defect drives p53 degradation during Helicobacter pylori infection and accelerates gastric carcinogenesis
title_full USF1 defect drives p53 degradation during Helicobacter pylori infection and accelerates gastric carcinogenesis
title_fullStr USF1 defect drives p53 degradation during Helicobacter pylori infection and accelerates gastric carcinogenesis
title_full_unstemmed USF1 defect drives p53 degradation during Helicobacter pylori infection and accelerates gastric carcinogenesis
title_short USF1 defect drives p53 degradation during Helicobacter pylori infection and accelerates gastric carcinogenesis
title_sort usf1 defect drives p53 degradation during helicobacter pylori infection and accelerates gastric carcinogenesis
topic Helicobacter Pylori
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7456735/
https://www.ncbi.nlm.nih.gov/pubmed/31822580
http://dx.doi.org/10.1136/gutjnl-2019-318640
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