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Common Dysregulation of Innate Immunity Pathways in Human Primary Astrocytes Infected With Chikungunya, Mayaro, Oropouche, and Zika Viruses

Arboviruses pose a major threat throughout the world and represent a great burden in tropical countries of South America. Although generally associated with moderate febrile illness, in more severe cases they can lead to neurological outcomes, such as encephalitis, Guillain-Barré syndrome, and Conge...

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Autores principales: Geddes, Victor Emmanuel Viana, Brustolini, Otávio José Bernardes, Cavalcante, Liliane Tavares de Faria, Moreira, Filipe Romero Rebello, de Castro, Fernando Luz, Guimarães, Ana Paula de Campos, Gerber, Alexandra Lehmkuhl, Figueiredo, Camila Menezes, Diniz, Luan Pereira, Neto, Eurico de Arruda, Tanuri, Amilcar, Souza, Renan Pedra, Assunção-Miranda, Iranaia, Alves-Leon, Soniza Vieira, Romão, Luciana Ferreira, de Souza, Jorge Paes Barreto Marcondes, de Vasconcelos, Ana Tereza Ribeiro, de Aguiar, Renato Santana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8006316/
https://www.ncbi.nlm.nih.gov/pubmed/33791243
http://dx.doi.org/10.3389/fcimb.2021.641261
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author Geddes, Victor Emmanuel Viana
Brustolini, Otávio José Bernardes
Cavalcante, Liliane Tavares de Faria
Moreira, Filipe Romero Rebello
de Castro, Fernando Luz
Guimarães, Ana Paula de Campos
Gerber, Alexandra Lehmkuhl
Figueiredo, Camila Menezes
Diniz, Luan Pereira
Neto, Eurico de Arruda
Tanuri, Amilcar
Souza, Renan Pedra
Assunção-Miranda, Iranaia
Alves-Leon, Soniza Vieira
Romão, Luciana Ferreira
de Souza, Jorge Paes Barreto Marcondes
de Vasconcelos, Ana Tereza Ribeiro
de Aguiar, Renato Santana
author_facet Geddes, Victor Emmanuel Viana
Brustolini, Otávio José Bernardes
Cavalcante, Liliane Tavares de Faria
Moreira, Filipe Romero Rebello
de Castro, Fernando Luz
Guimarães, Ana Paula de Campos
Gerber, Alexandra Lehmkuhl
Figueiredo, Camila Menezes
Diniz, Luan Pereira
Neto, Eurico de Arruda
Tanuri, Amilcar
Souza, Renan Pedra
Assunção-Miranda, Iranaia
Alves-Leon, Soniza Vieira
Romão, Luciana Ferreira
de Souza, Jorge Paes Barreto Marcondes
de Vasconcelos, Ana Tereza Ribeiro
de Aguiar, Renato Santana
author_sort Geddes, Victor Emmanuel Viana
collection PubMed
description Arboviruses pose a major threat throughout the world and represent a great burden in tropical countries of South America. Although generally associated with moderate febrile illness, in more severe cases they can lead to neurological outcomes, such as encephalitis, Guillain-Barré syndrome, and Congenital Syndromes. In this context astrocytes play a central role in production of inflammatory cytokines, regulation of extracellular matrix, and control of glutamate driven neurotoxicity in the central nervous system. Here, we presented a comprehensive genome-wide transcriptome analysis of human primary astrocytes infected with Chikungunya, Mayaro, Oropouche, or Zika viruses. Analyses of differentially expressed genes (DEGs), pathway enrichment, and interactomes have shown that Alphaviruses up-regulated genes related to elastic fiber formation and N-glycosylation of glycoproteins, with down-regulation of cell cycle and DNA stability and chromosome maintenance genes. In contrast, Oropouche virus up-regulated cell cycle and DNA maintenance and condensation pathways while down-regulated extracellular matrix, collagen metabolism, glutamate and ion transporters pathways. Zika virus infection only up-regulated eukaryotic translation machinery while down-regulated interferon pathways. Reactome and integration analysis revealed a common signature in down-regulation of innate immune response, antiviral response, and inflammatory cytokines associated to interferon pathway for all arboviruses tested. Validation of interferon stimulated genes by reverse transcriptase quantitative polymerase chain reaction (RT-qPCR) corroborated our transcriptome findings. Altogether, our results showed a co-evolution in the mechanisms involved in the escape of arboviruses to antiviral immune response mediated by the interferon (IFN) pathway.
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spelling pubmed-80063162021-03-30 Common Dysregulation of Innate Immunity Pathways in Human Primary Astrocytes Infected With Chikungunya, Mayaro, Oropouche, and Zika Viruses Geddes, Victor Emmanuel Viana Brustolini, Otávio José Bernardes Cavalcante, Liliane Tavares de Faria Moreira, Filipe Romero Rebello de Castro, Fernando Luz Guimarães, Ana Paula de Campos Gerber, Alexandra Lehmkuhl Figueiredo, Camila Menezes Diniz, Luan Pereira Neto, Eurico de Arruda Tanuri, Amilcar Souza, Renan Pedra Assunção-Miranda, Iranaia Alves-Leon, Soniza Vieira Romão, Luciana Ferreira de Souza, Jorge Paes Barreto Marcondes de Vasconcelos, Ana Tereza Ribeiro de Aguiar, Renato Santana Front Cell Infect Microbiol Cellular and Infection Microbiology Arboviruses pose a major threat throughout the world and represent a great burden in tropical countries of South America. Although generally associated with moderate febrile illness, in more severe cases they can lead to neurological outcomes, such as encephalitis, Guillain-Barré syndrome, and Congenital Syndromes. In this context astrocytes play a central role in production of inflammatory cytokines, regulation of extracellular matrix, and control of glutamate driven neurotoxicity in the central nervous system. Here, we presented a comprehensive genome-wide transcriptome analysis of human primary astrocytes infected with Chikungunya, Mayaro, Oropouche, or Zika viruses. Analyses of differentially expressed genes (DEGs), pathway enrichment, and interactomes have shown that Alphaviruses up-regulated genes related to elastic fiber formation and N-glycosylation of glycoproteins, with down-regulation of cell cycle and DNA stability and chromosome maintenance genes. In contrast, Oropouche virus up-regulated cell cycle and DNA maintenance and condensation pathways while down-regulated extracellular matrix, collagen metabolism, glutamate and ion transporters pathways. Zika virus infection only up-regulated eukaryotic translation machinery while down-regulated interferon pathways. Reactome and integration analysis revealed a common signature in down-regulation of innate immune response, antiviral response, and inflammatory cytokines associated to interferon pathway for all arboviruses tested. Validation of interferon stimulated genes by reverse transcriptase quantitative polymerase chain reaction (RT-qPCR) corroborated our transcriptome findings. Altogether, our results showed a co-evolution in the mechanisms involved in the escape of arboviruses to antiviral immune response mediated by the interferon (IFN) pathway. Frontiers Media S.A. 2021-03-15 /pmc/articles/PMC8006316/ /pubmed/33791243 http://dx.doi.org/10.3389/fcimb.2021.641261 Text en Copyright © 2021 Geddes, Brustolini, Cavalcante, Moreira, de Castro, Guimarães, Gerber, Figueiredo, Diniz, Neto, Tanuri, Souza, Assunção-Miranda, Alves-Leon, Romão, de Souza, de Vasconcelos and de Aguiar http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cellular and Infection Microbiology
Geddes, Victor Emmanuel Viana
Brustolini, Otávio José Bernardes
Cavalcante, Liliane Tavares de Faria
Moreira, Filipe Romero Rebello
de Castro, Fernando Luz
Guimarães, Ana Paula de Campos
Gerber, Alexandra Lehmkuhl
Figueiredo, Camila Menezes
Diniz, Luan Pereira
Neto, Eurico de Arruda
Tanuri, Amilcar
Souza, Renan Pedra
Assunção-Miranda, Iranaia
Alves-Leon, Soniza Vieira
Romão, Luciana Ferreira
de Souza, Jorge Paes Barreto Marcondes
de Vasconcelos, Ana Tereza Ribeiro
de Aguiar, Renato Santana
Common Dysregulation of Innate Immunity Pathways in Human Primary Astrocytes Infected With Chikungunya, Mayaro, Oropouche, and Zika Viruses
title Common Dysregulation of Innate Immunity Pathways in Human Primary Astrocytes Infected With Chikungunya, Mayaro, Oropouche, and Zika Viruses
title_full Common Dysregulation of Innate Immunity Pathways in Human Primary Astrocytes Infected With Chikungunya, Mayaro, Oropouche, and Zika Viruses
title_fullStr Common Dysregulation of Innate Immunity Pathways in Human Primary Astrocytes Infected With Chikungunya, Mayaro, Oropouche, and Zika Viruses
title_full_unstemmed Common Dysregulation of Innate Immunity Pathways in Human Primary Astrocytes Infected With Chikungunya, Mayaro, Oropouche, and Zika Viruses
title_short Common Dysregulation of Innate Immunity Pathways in Human Primary Astrocytes Infected With Chikungunya, Mayaro, Oropouche, and Zika Viruses
title_sort common dysregulation of innate immunity pathways in human primary astrocytes infected with chikungunya, mayaro, oropouche, and zika viruses
topic Cellular and Infection Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8006316/
https://www.ncbi.nlm.nih.gov/pubmed/33791243
http://dx.doi.org/10.3389/fcimb.2021.641261
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