Cargando…

HCV Defective Genomes Promote Persistent Infection by Modulating the Viral Life Cycle

Defective interfering (DI) RNAs have been detected in several human viruses. HCV in-frame deletions mutants (IFDMs), missing mainly the envelope proteins, have been found in patient sera and liver tissues. IFDMs replicate independently and can be trans-packaged into infectious virions in the presenc...

Descripción completa

Detalles Bibliográficos
Autores principales: Karamichali, Eirini, Chihab, Hajar, Kakkanas, Athanassios, Marchio, Agnes, Karamitros, Timokratis, Pogka, Vasiliki, Varaklioti, Agoritsa, Kalliaropoulos, Antonis, Martinez-Gonzales, Beatrice, Foka, Pelagia, Koskinas, Ioannis, Mentis, Andreas, Benjelloun, Soumaya, Pineau, Pascal, Georgopoulou, Urania
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6287115/
https://www.ncbi.nlm.nih.gov/pubmed/30559733
http://dx.doi.org/10.3389/fmicb.2018.02942
_version_ 1783379578564116480
author Karamichali, Eirini
Chihab, Hajar
Kakkanas, Athanassios
Marchio, Agnes
Karamitros, Timokratis
Pogka, Vasiliki
Varaklioti, Agoritsa
Kalliaropoulos, Antonis
Martinez-Gonzales, Beatrice
Foka, Pelagia
Koskinas, Ioannis
Mentis, Andreas
Benjelloun, Soumaya
Pineau, Pascal
Georgopoulou, Urania
author_facet Karamichali, Eirini
Chihab, Hajar
Kakkanas, Athanassios
Marchio, Agnes
Karamitros, Timokratis
Pogka, Vasiliki
Varaklioti, Agoritsa
Kalliaropoulos, Antonis
Martinez-Gonzales, Beatrice
Foka, Pelagia
Koskinas, Ioannis
Mentis, Andreas
Benjelloun, Soumaya
Pineau, Pascal
Georgopoulou, Urania
author_sort Karamichali, Eirini
collection PubMed
description Defective interfering (DI) RNAs have been detected in several human viruses. HCV in-frame deletions mutants (IFDMs), missing mainly the envelope proteins, have been found in patient sera and liver tissues. IFDMs replicate independently and can be trans-packaged into infectious virions in the presence of full length viral genome. So far, their biological role is unclear. In this study, we have isolated and cloned IFDMs from sera samples and liver tissues of patients infected with HCV genotypes 1b, 2a, and 3a. IFDMs were present in up to 26% of samples tested. Using the in vitro HCV cell culture system, co-expression of the wild type (wt) HCV replicon with HCV IFDMs RNA resulted in increased HCV replication. Additionally, co-transfection of the HCV full length genome RNA and a defective mutant missing the envelope region led to increased viral release, collectively suggesting an important biological role for IFDMs in the virus life cycle. Recently, exosomes, masters of intercellular communication, have been implicated in the transport of HCV viral genomes. We report for the first time that exosomal RNA isolated from HCV sera samples contains HCV defective genomes. We also demonstrate that inhibition of exosomal biogenesis and release influences HCV viral replication. Overall, we provide evidence that the presence of HCV IFDMs affects both viral replication and release. IFDMs exploit exosomes as means of transport, a way to evade the immune system, to spread more efficiently and possibly maintain persistent infection.
format Online
Article
Text
id pubmed-6287115
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-62871152018-12-17 HCV Defective Genomes Promote Persistent Infection by Modulating the Viral Life Cycle Karamichali, Eirini Chihab, Hajar Kakkanas, Athanassios Marchio, Agnes Karamitros, Timokratis Pogka, Vasiliki Varaklioti, Agoritsa Kalliaropoulos, Antonis Martinez-Gonzales, Beatrice Foka, Pelagia Koskinas, Ioannis Mentis, Andreas Benjelloun, Soumaya Pineau, Pascal Georgopoulou, Urania Front Microbiol Microbiology Defective interfering (DI) RNAs have been detected in several human viruses. HCV in-frame deletions mutants (IFDMs), missing mainly the envelope proteins, have been found in patient sera and liver tissues. IFDMs replicate independently and can be trans-packaged into infectious virions in the presence of full length viral genome. So far, their biological role is unclear. In this study, we have isolated and cloned IFDMs from sera samples and liver tissues of patients infected with HCV genotypes 1b, 2a, and 3a. IFDMs were present in up to 26% of samples tested. Using the in vitro HCV cell culture system, co-expression of the wild type (wt) HCV replicon with HCV IFDMs RNA resulted in increased HCV replication. Additionally, co-transfection of the HCV full length genome RNA and a defective mutant missing the envelope region led to increased viral release, collectively suggesting an important biological role for IFDMs in the virus life cycle. Recently, exosomes, masters of intercellular communication, have been implicated in the transport of HCV viral genomes. We report for the first time that exosomal RNA isolated from HCV sera samples contains HCV defective genomes. We also demonstrate that inhibition of exosomal biogenesis and release influences HCV viral replication. Overall, we provide evidence that the presence of HCV IFDMs affects both viral replication and release. IFDMs exploit exosomes as means of transport, a way to evade the immune system, to spread more efficiently and possibly maintain persistent infection. Frontiers Media S.A. 2018-12-03 /pmc/articles/PMC6287115/ /pubmed/30559733 http://dx.doi.org/10.3389/fmicb.2018.02942 Text en Copyright © 2018 Karamichali, Chihab, Kakkanas, Marchio, Karamitros, Pogka, Varaklioti, Kalliaropoulos, Martinez-Gonzales, Foka, Koskinas, Mentis, Benjelloun, Pineau and Georgopoulou. 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 Microbiology
Karamichali, Eirini
Chihab, Hajar
Kakkanas, Athanassios
Marchio, Agnes
Karamitros, Timokratis
Pogka, Vasiliki
Varaklioti, Agoritsa
Kalliaropoulos, Antonis
Martinez-Gonzales, Beatrice
Foka, Pelagia
Koskinas, Ioannis
Mentis, Andreas
Benjelloun, Soumaya
Pineau, Pascal
Georgopoulou, Urania
HCV Defective Genomes Promote Persistent Infection by Modulating the Viral Life Cycle
title HCV Defective Genomes Promote Persistent Infection by Modulating the Viral Life Cycle
title_full HCV Defective Genomes Promote Persistent Infection by Modulating the Viral Life Cycle
title_fullStr HCV Defective Genomes Promote Persistent Infection by Modulating the Viral Life Cycle
title_full_unstemmed HCV Defective Genomes Promote Persistent Infection by Modulating the Viral Life Cycle
title_short HCV Defective Genomes Promote Persistent Infection by Modulating the Viral Life Cycle
title_sort hcv defective genomes promote persistent infection by modulating the viral life cycle
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6287115/
https://www.ncbi.nlm.nih.gov/pubmed/30559733
http://dx.doi.org/10.3389/fmicb.2018.02942
work_keys_str_mv AT karamichalieirini hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle
AT chihabhajar hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle
AT kakkanasathanassios hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle
AT marchioagnes hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle
AT karamitrostimokratis hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle
AT pogkavasiliki hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle
AT varakliotiagoritsa hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle
AT kalliaropoulosantonis hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle
AT martinezgonzalesbeatrice hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle
AT fokapelagia hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle
AT koskinasioannis hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle
AT mentisandreas hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle
AT benjellounsoumaya hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle
AT pineaupascal hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle
AT georgopoulouurania hcvdefectivegenomespromotepersistentinfectionbymodulatingthevirallifecycle