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Hepatitis C Virus Controls Interferon Production through PKR Activation

Hepatitis C virus is a poor inducer of interferon (IFN), although its structured viral RNA can bind the RNA helicase RIG-I, and activate the IFN-induction pathway. Low IFN induction has been attributed to HCV NS3/4A protease-mediated cleavage of the mitochondria-adapter MAVS. Here, we have investiga...

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Autores principales: Arnaud, Noëlla, Dabo, Stéphanie, Maillard, Patrick, Budkowska, Agata, Kalliampakou, Katerina I., Mavromara, Penelope, Garcin, Dominique, Hugon, Jacques, Gatignol, Anne, Akazawa, Daisuke, Wakita, Takaji, Meurs, Eliane F.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2868028/
https://www.ncbi.nlm.nih.gov/pubmed/20485506
http://dx.doi.org/10.1371/journal.pone.0010575
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author Arnaud, Noëlla
Dabo, Stéphanie
Maillard, Patrick
Budkowska, Agata
Kalliampakou, Katerina I.
Mavromara, Penelope
Garcin, Dominique
Hugon, Jacques
Gatignol, Anne
Akazawa, Daisuke
Wakita, Takaji
Meurs, Eliane F.
author_facet Arnaud, Noëlla
Dabo, Stéphanie
Maillard, Patrick
Budkowska, Agata
Kalliampakou, Katerina I.
Mavromara, Penelope
Garcin, Dominique
Hugon, Jacques
Gatignol, Anne
Akazawa, Daisuke
Wakita, Takaji
Meurs, Eliane F.
author_sort Arnaud, Noëlla
collection PubMed
description Hepatitis C virus is a poor inducer of interferon (IFN), although its structured viral RNA can bind the RNA helicase RIG-I, and activate the IFN-induction pathway. Low IFN induction has been attributed to HCV NS3/4A protease-mediated cleavage of the mitochondria-adapter MAVS. Here, we have investigated the early events of IFN induction upon HCV infection, using the cell-cultured HCV JFH1 strain and the new HCV-permissive hepatoma-derived Huh7.25.CD81 cell subclone. These cells depend on ectopic expression of the RIG-I ubiquitinating enzyme TRIM25 to induce IFN through the RIG-I/MAVS pathway. We observed induction of IFN during the first 12 hrs of HCV infection, after which a decline occurred which was more abrupt at the protein than at the RNA level, revealing a novel HCV-mediated control of IFN induction at the level of translation. The cellular protein kinase PKR is an important regulator of translation, through the phosphorylation of its substrate the eIF2α initiation factor. A comparison of the expression of luciferase placed under the control of an eIF2α-dependent (IRES(EMCV)) or independent (IRES(HCV)) RNA showed a specific HCV-mediated inhibition of eIF2α-dependent translation. We demonstrated that HCV infection triggers the phosphorylation of both PKR and eIF2α at 12 and 15 hrs post-infection. PKR silencing, as well as treatment with PKR pharmacological inhibitors, restored IFN induction in JFH1-infected cells, at least until 18 hrs post-infection, at which time a decrease in IFN expression could be attributed to NS3/4A-mediated MAVS cleavage. Importantly, both PKR silencing and PKR inhibitors led to inhibition of HCV yields in cells that express functional RIG-I/MAVS. In conclusion, here we provide the first evidence that HCV uses PKR to restrain its ability to induce IFN through the RIG-I/MAVS pathway. This opens up new possibilities to assay PKR chemical inhibitors for their potential to boost innate immunity in HCV infection.
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spelling pubmed-28680282010-05-19 Hepatitis C Virus Controls Interferon Production through PKR Activation Arnaud, Noëlla Dabo, Stéphanie Maillard, Patrick Budkowska, Agata Kalliampakou, Katerina I. Mavromara, Penelope Garcin, Dominique Hugon, Jacques Gatignol, Anne Akazawa, Daisuke Wakita, Takaji Meurs, Eliane F. PLoS One Research Article Hepatitis C virus is a poor inducer of interferon (IFN), although its structured viral RNA can bind the RNA helicase RIG-I, and activate the IFN-induction pathway. Low IFN induction has been attributed to HCV NS3/4A protease-mediated cleavage of the mitochondria-adapter MAVS. Here, we have investigated the early events of IFN induction upon HCV infection, using the cell-cultured HCV JFH1 strain and the new HCV-permissive hepatoma-derived Huh7.25.CD81 cell subclone. These cells depend on ectopic expression of the RIG-I ubiquitinating enzyme TRIM25 to induce IFN through the RIG-I/MAVS pathway. We observed induction of IFN during the first 12 hrs of HCV infection, after which a decline occurred which was more abrupt at the protein than at the RNA level, revealing a novel HCV-mediated control of IFN induction at the level of translation. The cellular protein kinase PKR is an important regulator of translation, through the phosphorylation of its substrate the eIF2α initiation factor. A comparison of the expression of luciferase placed under the control of an eIF2α-dependent (IRES(EMCV)) or independent (IRES(HCV)) RNA showed a specific HCV-mediated inhibition of eIF2α-dependent translation. We demonstrated that HCV infection triggers the phosphorylation of both PKR and eIF2α at 12 and 15 hrs post-infection. PKR silencing, as well as treatment with PKR pharmacological inhibitors, restored IFN induction in JFH1-infected cells, at least until 18 hrs post-infection, at which time a decrease in IFN expression could be attributed to NS3/4A-mediated MAVS cleavage. Importantly, both PKR silencing and PKR inhibitors led to inhibition of HCV yields in cells that express functional RIG-I/MAVS. In conclusion, here we provide the first evidence that HCV uses PKR to restrain its ability to induce IFN through the RIG-I/MAVS pathway. This opens up new possibilities to assay PKR chemical inhibitors for their potential to boost innate immunity in HCV infection. Public Library of Science 2010-05-11 /pmc/articles/PMC2868028/ /pubmed/20485506 http://dx.doi.org/10.1371/journal.pone.0010575 Text en Arnaud 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Arnaud, Noëlla
Dabo, Stéphanie
Maillard, Patrick
Budkowska, Agata
Kalliampakou, Katerina I.
Mavromara, Penelope
Garcin, Dominique
Hugon, Jacques
Gatignol, Anne
Akazawa, Daisuke
Wakita, Takaji
Meurs, Eliane F.
Hepatitis C Virus Controls Interferon Production through PKR Activation
title Hepatitis C Virus Controls Interferon Production through PKR Activation
title_full Hepatitis C Virus Controls Interferon Production through PKR Activation
title_fullStr Hepatitis C Virus Controls Interferon Production through PKR Activation
title_full_unstemmed Hepatitis C Virus Controls Interferon Production through PKR Activation
title_short Hepatitis C Virus Controls Interferon Production through PKR Activation
title_sort hepatitis c virus controls interferon production through pkr activation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2868028/
https://www.ncbi.nlm.nih.gov/pubmed/20485506
http://dx.doi.org/10.1371/journal.pone.0010575
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