Cargando…

The CDT of Helicobacter hepaticus induces pro-survival autophagy and nucleoplasmic reticulum formation concentrating the RNA binding proteins UNR/CSDE1 and P62/SQSTM1

Humans are frequently exposed to bacterial genotoxins of the gut microbiota, such as colibactin and cytolethal distending toxin (CDT). In the present study, whole genome microarray-based identification of differentially expressed genes was performed in vitro on HT29 intestinal cells while following...

Descripción completa

Detalles Bibliográficos
Autores principales: He, Wencan, Azzi-Martin, Lamia, Velasco, Valérie, Lehours, Philippe, Dubus, Pierre, Djavaheri-Mergny, Mojgan, Ménard, Armelle
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7963068/
https://www.ncbi.nlm.nih.gov/pubmed/33662035
http://dx.doi.org/10.1371/journal.ppat.1009320
_version_ 1783665568602128384
author He, Wencan
Azzi-Martin, Lamia
Velasco, Valérie
Lehours, Philippe
Dubus, Pierre
Djavaheri-Mergny, Mojgan
Ménard, Armelle
author_facet He, Wencan
Azzi-Martin, Lamia
Velasco, Valérie
Lehours, Philippe
Dubus, Pierre
Djavaheri-Mergny, Mojgan
Ménard, Armelle
author_sort He, Wencan
collection PubMed
description Humans are frequently exposed to bacterial genotoxins of the gut microbiota, such as colibactin and cytolethal distending toxin (CDT). In the present study, whole genome microarray-based identification of differentially expressed genes was performed in vitro on HT29 intestinal cells while following the ectopic expression of the active CdtB subunit of Helicobacter hepaticus CDT. Microarray data showed a CdtB-dependent upregulation of transcripts involved in positive regulation of autophagy concomitant with the downregulation of transcripts involved in negative regulation of autophagy. CdtB promotes the activation of autophagy in intestinal and hepatic cell lines. Experiments with cells lacking autophagy related genes, ATG5 and ATG7 infected with CDT- and colibactin-producing bacteria revealed that autophagy protects cells against the genotoxin-induced apoptotic cell death. Autophagy induction could also be associated with nucleoplasmic reticulum (NR) formation following DNA damage induced by these bacterial genotoxins. In addition, both genotoxins promote the accumulation of the autophagic receptor P62/SQSTM1 aggregates, which colocalized with foci concentrating the RNA binding protein UNR/CSDE1. Some of these aggregates were deeply invaginated in NR in distended nuclei together or in the vicinity of UNR-rich foci. Interestingly, micronuclei-like structures and some vesicles containing chromatin and γH2AX foci were found surrounded with P62/SQSTM1 and/or the autophagosome marker LC3. This study suggests that autophagy and P62/SQSTM1 regulate the abundance of micronuclei-like structures and are involved in cell survival following the DNA damage induced by CDT and colibactin. Similar effects were observed in response to DNA damaging chemotherapeutic agents, offering new insights into the context of resistance of cancer cells to therapies inducing DNA damage.
format Online
Article
Text
id pubmed-7963068
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-79630682021-03-26 The CDT of Helicobacter hepaticus induces pro-survival autophagy and nucleoplasmic reticulum formation concentrating the RNA binding proteins UNR/CSDE1 and P62/SQSTM1 He, Wencan Azzi-Martin, Lamia Velasco, Valérie Lehours, Philippe Dubus, Pierre Djavaheri-Mergny, Mojgan Ménard, Armelle PLoS Pathog Research Article Humans are frequently exposed to bacterial genotoxins of the gut microbiota, such as colibactin and cytolethal distending toxin (CDT). In the present study, whole genome microarray-based identification of differentially expressed genes was performed in vitro on HT29 intestinal cells while following the ectopic expression of the active CdtB subunit of Helicobacter hepaticus CDT. Microarray data showed a CdtB-dependent upregulation of transcripts involved in positive regulation of autophagy concomitant with the downregulation of transcripts involved in negative regulation of autophagy. CdtB promotes the activation of autophagy in intestinal and hepatic cell lines. Experiments with cells lacking autophagy related genes, ATG5 and ATG7 infected with CDT- and colibactin-producing bacteria revealed that autophagy protects cells against the genotoxin-induced apoptotic cell death. Autophagy induction could also be associated with nucleoplasmic reticulum (NR) formation following DNA damage induced by these bacterial genotoxins. In addition, both genotoxins promote the accumulation of the autophagic receptor P62/SQSTM1 aggregates, which colocalized with foci concentrating the RNA binding protein UNR/CSDE1. Some of these aggregates were deeply invaginated in NR in distended nuclei together or in the vicinity of UNR-rich foci. Interestingly, micronuclei-like structures and some vesicles containing chromatin and γH2AX foci were found surrounded with P62/SQSTM1 and/or the autophagosome marker LC3. This study suggests that autophagy and P62/SQSTM1 regulate the abundance of micronuclei-like structures and are involved in cell survival following the DNA damage induced by CDT and colibactin. Similar effects were observed in response to DNA damaging chemotherapeutic agents, offering new insights into the context of resistance of cancer cells to therapies inducing DNA damage. Public Library of Science 2021-03-04 /pmc/articles/PMC7963068/ /pubmed/33662035 http://dx.doi.org/10.1371/journal.ppat.1009320 Text en © 2021 He et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
He, Wencan
Azzi-Martin, Lamia
Velasco, Valérie
Lehours, Philippe
Dubus, Pierre
Djavaheri-Mergny, Mojgan
Ménard, Armelle
The CDT of Helicobacter hepaticus induces pro-survival autophagy and nucleoplasmic reticulum formation concentrating the RNA binding proteins UNR/CSDE1 and P62/SQSTM1
title The CDT of Helicobacter hepaticus induces pro-survival autophagy and nucleoplasmic reticulum formation concentrating the RNA binding proteins UNR/CSDE1 and P62/SQSTM1
title_full The CDT of Helicobacter hepaticus induces pro-survival autophagy and nucleoplasmic reticulum formation concentrating the RNA binding proteins UNR/CSDE1 and P62/SQSTM1
title_fullStr The CDT of Helicobacter hepaticus induces pro-survival autophagy and nucleoplasmic reticulum formation concentrating the RNA binding proteins UNR/CSDE1 and P62/SQSTM1
title_full_unstemmed The CDT of Helicobacter hepaticus induces pro-survival autophagy and nucleoplasmic reticulum formation concentrating the RNA binding proteins UNR/CSDE1 and P62/SQSTM1
title_short The CDT of Helicobacter hepaticus induces pro-survival autophagy and nucleoplasmic reticulum formation concentrating the RNA binding proteins UNR/CSDE1 and P62/SQSTM1
title_sort cdt of helicobacter hepaticus induces pro-survival autophagy and nucleoplasmic reticulum formation concentrating the rna binding proteins unr/csde1 and p62/sqstm1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7963068/
https://www.ncbi.nlm.nih.gov/pubmed/33662035
http://dx.doi.org/10.1371/journal.ppat.1009320
work_keys_str_mv AT hewencan thecdtofhelicobacterhepaticusinducesprosurvivalautophagyandnucleoplasmicreticulumformationconcentratingthernabindingproteinsunrcsde1andp62sqstm1
AT azzimartinlamia thecdtofhelicobacterhepaticusinducesprosurvivalautophagyandnucleoplasmicreticulumformationconcentratingthernabindingproteinsunrcsde1andp62sqstm1
AT velascovalerie thecdtofhelicobacterhepaticusinducesprosurvivalautophagyandnucleoplasmicreticulumformationconcentratingthernabindingproteinsunrcsde1andp62sqstm1
AT lehoursphilippe thecdtofhelicobacterhepaticusinducesprosurvivalautophagyandnucleoplasmicreticulumformationconcentratingthernabindingproteinsunrcsde1andp62sqstm1
AT dubuspierre thecdtofhelicobacterhepaticusinducesprosurvivalautophagyandnucleoplasmicreticulumformationconcentratingthernabindingproteinsunrcsde1andp62sqstm1
AT djavaherimergnymojgan thecdtofhelicobacterhepaticusinducesprosurvivalautophagyandnucleoplasmicreticulumformationconcentratingthernabindingproteinsunrcsde1andp62sqstm1
AT menardarmelle thecdtofhelicobacterhepaticusinducesprosurvivalautophagyandnucleoplasmicreticulumformationconcentratingthernabindingproteinsunrcsde1andp62sqstm1
AT hewencan cdtofhelicobacterhepaticusinducesprosurvivalautophagyandnucleoplasmicreticulumformationconcentratingthernabindingproteinsunrcsde1andp62sqstm1
AT azzimartinlamia cdtofhelicobacterhepaticusinducesprosurvivalautophagyandnucleoplasmicreticulumformationconcentratingthernabindingproteinsunrcsde1andp62sqstm1
AT velascovalerie cdtofhelicobacterhepaticusinducesprosurvivalautophagyandnucleoplasmicreticulumformationconcentratingthernabindingproteinsunrcsde1andp62sqstm1
AT lehoursphilippe cdtofhelicobacterhepaticusinducesprosurvivalautophagyandnucleoplasmicreticulumformationconcentratingthernabindingproteinsunrcsde1andp62sqstm1
AT dubuspierre cdtofhelicobacterhepaticusinducesprosurvivalautophagyandnucleoplasmicreticulumformationconcentratingthernabindingproteinsunrcsde1andp62sqstm1
AT djavaherimergnymojgan cdtofhelicobacterhepaticusinducesprosurvivalautophagyandnucleoplasmicreticulumformationconcentratingthernabindingproteinsunrcsde1andp62sqstm1
AT menardarmelle cdtofhelicobacterhepaticusinducesprosurvivalautophagyandnucleoplasmicreticulumformationconcentratingthernabindingproteinsunrcsde1andp62sqstm1