Cargando…

ZIKA virus elicits P53 activation and genotoxic stress in human neural progenitors similar to mutations involved in severe forms of genetic microcephaly and p53

Epidemiological evidence from the current outbreak of Zika virus (ZIKV) and recent studies in animal models indicate a strong causal link between ZIKV and microcephaly. ZIKV infection induces cell-cycle arrest and apoptosis in proliferating neural progenitors. However, the mechanisms leading to thes...

Descripción completa

Detalles Bibliográficos
Autores principales: Ghouzzi, Vincent El, Bianchi, Federico T, Molineris, Ivan, Mounce, Bryan C, Berto, Gaia E, Rak, Malgorzata, Lebon, Sophie, Aubry, Laetitia, Tocco, Chiara, Gai, Marta, Chiotto, Alessandra MA, Sgrò, Francesco, Pallavicini, Gianmarco, Simon-Loriere, Etienne, Passemard, Sandrine, Vignuzzi, Marco, Gressens, Pierre, Di Cunto, Ferdinando
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5133962/
https://www.ncbi.nlm.nih.gov/pubmed/27787521
http://dx.doi.org/10.1038/cddis.2016.266
_version_ 1782471378233982976
author Ghouzzi, Vincent El
Bianchi, Federico T
Molineris, Ivan
Mounce, Bryan C
Berto, Gaia E
Rak, Malgorzata
Lebon, Sophie
Aubry, Laetitia
Tocco, Chiara
Gai, Marta
Chiotto, Alessandra MA
Sgrò, Francesco
Pallavicini, Gianmarco
Simon-Loriere, Etienne
Passemard, Sandrine
Vignuzzi, Marco
Gressens, Pierre
Di Cunto, Ferdinando
author_facet Ghouzzi, Vincent El
Bianchi, Federico T
Molineris, Ivan
Mounce, Bryan C
Berto, Gaia E
Rak, Malgorzata
Lebon, Sophie
Aubry, Laetitia
Tocco, Chiara
Gai, Marta
Chiotto, Alessandra MA
Sgrò, Francesco
Pallavicini, Gianmarco
Simon-Loriere, Etienne
Passemard, Sandrine
Vignuzzi, Marco
Gressens, Pierre
Di Cunto, Ferdinando
author_sort Ghouzzi, Vincent El
collection PubMed
description Epidemiological evidence from the current outbreak of Zika virus (ZIKV) and recent studies in animal models indicate a strong causal link between ZIKV and microcephaly. ZIKV infection induces cell-cycle arrest and apoptosis in proliferating neural progenitors. However, the mechanisms leading to these phenotypes are still largely obscure. In this report, we explored the possible similarities between transcriptional responses induced by ZIKV in human neural progenitors and those elicited by three different genetic mutations leading to severe forms of microcephaly in mice. We found that the strongest similarity between all these conditions is the activation of common P53 downstream genes. In agreement with these observations, we report that ZIKV infection increases total P53 levels and nuclear accumulation, as well as P53 Ser15 phosphorylation, correlated with genotoxic stress and apoptosis induction. Interestingly, increased P53 activation and apoptosis are induced not only in cells expressing high levels of viral antigens but also in cells showing low or undetectable levels of the same proteins. These results indicate that P53 activation is an early and specific event in ZIKV-infected cells, which could result from cell-autonomous and/or non-cell-autonomous mechanisms. Moreover, we highlight a small group of P53 effector proteins that could act as critical mediators, not only in ZIKV-induced microcephaly but also in many genetic microcephaly syndromes.
format Online
Article
Text
id pubmed-5133962
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-51339622016-12-16 ZIKA virus elicits P53 activation and genotoxic stress in human neural progenitors similar to mutations involved in severe forms of genetic microcephaly and p53 Ghouzzi, Vincent El Bianchi, Federico T Molineris, Ivan Mounce, Bryan C Berto, Gaia E Rak, Malgorzata Lebon, Sophie Aubry, Laetitia Tocco, Chiara Gai, Marta Chiotto, Alessandra MA Sgrò, Francesco Pallavicini, Gianmarco Simon-Loriere, Etienne Passemard, Sandrine Vignuzzi, Marco Gressens, Pierre Di Cunto, Ferdinando Cell Death Dis Original Article Epidemiological evidence from the current outbreak of Zika virus (ZIKV) and recent studies in animal models indicate a strong causal link between ZIKV and microcephaly. ZIKV infection induces cell-cycle arrest and apoptosis in proliferating neural progenitors. However, the mechanisms leading to these phenotypes are still largely obscure. In this report, we explored the possible similarities between transcriptional responses induced by ZIKV in human neural progenitors and those elicited by three different genetic mutations leading to severe forms of microcephaly in mice. We found that the strongest similarity between all these conditions is the activation of common P53 downstream genes. In agreement with these observations, we report that ZIKV infection increases total P53 levels and nuclear accumulation, as well as P53 Ser15 phosphorylation, correlated with genotoxic stress and apoptosis induction. Interestingly, increased P53 activation and apoptosis are induced not only in cells expressing high levels of viral antigens but also in cells showing low or undetectable levels of the same proteins. These results indicate that P53 activation is an early and specific event in ZIKV-infected cells, which could result from cell-autonomous and/or non-cell-autonomous mechanisms. Moreover, we highlight a small group of P53 effector proteins that could act as critical mediators, not only in ZIKV-induced microcephaly but also in many genetic microcephaly syndromes. Nature Publishing Group 2016-10 2016-10-27 /pmc/articles/PMC5133962/ /pubmed/27787521 http://dx.doi.org/10.1038/cddis.2016.266 Text en Copyright © 2016 The Author(s) http://creativecommons.org/licenses/by/4.0/ Cell Death and Disease is an open-access journal published by Nature Publishing Group. This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Original Article
Ghouzzi, Vincent El
Bianchi, Federico T
Molineris, Ivan
Mounce, Bryan C
Berto, Gaia E
Rak, Malgorzata
Lebon, Sophie
Aubry, Laetitia
Tocco, Chiara
Gai, Marta
Chiotto, Alessandra MA
Sgrò, Francesco
Pallavicini, Gianmarco
Simon-Loriere, Etienne
Passemard, Sandrine
Vignuzzi, Marco
Gressens, Pierre
Di Cunto, Ferdinando
ZIKA virus elicits P53 activation and genotoxic stress in human neural progenitors similar to mutations involved in severe forms of genetic microcephaly and p53
title ZIKA virus elicits P53 activation and genotoxic stress in human neural progenitors similar to mutations involved in severe forms of genetic microcephaly and p53
title_full ZIKA virus elicits P53 activation and genotoxic stress in human neural progenitors similar to mutations involved in severe forms of genetic microcephaly and p53
title_fullStr ZIKA virus elicits P53 activation and genotoxic stress in human neural progenitors similar to mutations involved in severe forms of genetic microcephaly and p53
title_full_unstemmed ZIKA virus elicits P53 activation and genotoxic stress in human neural progenitors similar to mutations involved in severe forms of genetic microcephaly and p53
title_short ZIKA virus elicits P53 activation and genotoxic stress in human neural progenitors similar to mutations involved in severe forms of genetic microcephaly and p53
title_sort zika virus elicits p53 activation and genotoxic stress in human neural progenitors similar to mutations involved in severe forms of genetic microcephaly and p53
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5133962/
https://www.ncbi.nlm.nih.gov/pubmed/27787521
http://dx.doi.org/10.1038/cddis.2016.266
work_keys_str_mv AT ghouzzivincentel zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT bianchifedericot zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT molinerisivan zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT mouncebryanc zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT bertogaiae zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT rakmalgorzata zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT lebonsophie zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT aubrylaetitia zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT toccochiara zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT gaimarta zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT chiottoalessandrama zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT sgrofrancesco zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT pallavicinigianmarco zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT simonloriereetienne zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT passemardsandrine zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT vignuzzimarco zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT gressenspierre zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53
AT dicuntoferdinando zikaviruselicitsp53activationandgenotoxicstressinhumanneuralprogenitorssimilartomutationsinvolvedinsevereformsofgeneticmicrocephalyandp53