Cargando…

Genome-Wide CRISPR-Cas9 Screen Reveals the Importance of the Heparan Sulfate Pathway and the Conserved Oligomeric Golgi Complex for Synthetic Double-Stranded RNA Uptake and Sindbis Virus Infection

Double-stranded RNA (dsRNA) is the hallmark of many viral infections. dsRNA is produced either by RNA viruses during replication or by DNA viruses upon convergent transcription. Synthetic dsRNA is also able to mimic viral-induced activation of innate immune response and cell death. In this study, we...

Descripción completa

Detalles Bibliográficos
Autores principales: Petitjean, Olivier, Girardi, Erika, Ngondo, Richard Patryk, Lupashin, Vladimir, Pfeffer, Sébastien
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7657590/
https://www.ncbi.nlm.nih.gov/pubmed/33177215
http://dx.doi.org/10.1128/mSphere.00914-20
_version_ 1783608536320704512
author Petitjean, Olivier
Girardi, Erika
Ngondo, Richard Patryk
Lupashin, Vladimir
Pfeffer, Sébastien
author_facet Petitjean, Olivier
Girardi, Erika
Ngondo, Richard Patryk
Lupashin, Vladimir
Pfeffer, Sébastien
author_sort Petitjean, Olivier
collection PubMed
description Double-stranded RNA (dsRNA) is the hallmark of many viral infections. dsRNA is produced either by RNA viruses during replication or by DNA viruses upon convergent transcription. Synthetic dsRNA is also able to mimic viral-induced activation of innate immune response and cell death. In this study, we employed a genome-wide CRISPR-Cas9 loss-of-function screen based on cell survival in order to identify genes implicated in the host response to dsRNA. By challenging HCT116 human cells with either synthetic dsRNA or Sindbis virus (SINV), we identified the heparan sulfate (HS) pathway as a crucial factor for dsRNA entry, and we validated SINV dependency on HS. Interestingly, we uncovered a novel role for COG4, a component of the conserved oligomeric Golgi (COG) complex, as a factor involved in cell survival to both dsRNA and SINV in human cells. We showed that COG4 knockout led to a decrease of extracellular HS that specifically affected dsRNA transfection efficiency and reduced viral production, which explains the increased cell survival of these mutants. IMPORTANCE When facing a viral infection, the organism has to put in place a number of defense mechanisms in order to clear the pathogen from the cell. At the early phase of this preparation for fighting against the invader, the innate immune response is triggered by the sensing of danger signals. Among those molecular cues, double-stranded RNA (dsRNA) is a very potent inducer of different reactions at the cellular level that can ultimately lead to cell death. Using a genome-wide screening approach, we set to identify genes involved in dsRNA entry, sensing, and apoptosis induction in human cells. This allowed us to determine that the heparan sulfate pathway and the conserved oligomeric Golgi complex are key determinants allowing entry of both dsRNA and viral nucleic acid leading to cell death.
format Online
Article
Text
id pubmed-7657590
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-76575902020-11-17 Genome-Wide CRISPR-Cas9 Screen Reveals the Importance of the Heparan Sulfate Pathway and the Conserved Oligomeric Golgi Complex for Synthetic Double-Stranded RNA Uptake and Sindbis Virus Infection Petitjean, Olivier Girardi, Erika Ngondo, Richard Patryk Lupashin, Vladimir Pfeffer, Sébastien mSphere Research Article Double-stranded RNA (dsRNA) is the hallmark of many viral infections. dsRNA is produced either by RNA viruses during replication or by DNA viruses upon convergent transcription. Synthetic dsRNA is also able to mimic viral-induced activation of innate immune response and cell death. In this study, we employed a genome-wide CRISPR-Cas9 loss-of-function screen based on cell survival in order to identify genes implicated in the host response to dsRNA. By challenging HCT116 human cells with either synthetic dsRNA or Sindbis virus (SINV), we identified the heparan sulfate (HS) pathway as a crucial factor for dsRNA entry, and we validated SINV dependency on HS. Interestingly, we uncovered a novel role for COG4, a component of the conserved oligomeric Golgi (COG) complex, as a factor involved in cell survival to both dsRNA and SINV in human cells. We showed that COG4 knockout led to a decrease of extracellular HS that specifically affected dsRNA transfection efficiency and reduced viral production, which explains the increased cell survival of these mutants. IMPORTANCE When facing a viral infection, the organism has to put in place a number of defense mechanisms in order to clear the pathogen from the cell. At the early phase of this preparation for fighting against the invader, the innate immune response is triggered by the sensing of danger signals. Among those molecular cues, double-stranded RNA (dsRNA) is a very potent inducer of different reactions at the cellular level that can ultimately lead to cell death. Using a genome-wide screening approach, we set to identify genes involved in dsRNA entry, sensing, and apoptosis induction in human cells. This allowed us to determine that the heparan sulfate pathway and the conserved oligomeric Golgi complex are key determinants allowing entry of both dsRNA and viral nucleic acid leading to cell death. American Society for Microbiology 2020-11-11 /pmc/articles/PMC7657590/ /pubmed/33177215 http://dx.doi.org/10.1128/mSphere.00914-20 Text en Copyright © 2020 Petitjean et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Petitjean, Olivier
Girardi, Erika
Ngondo, Richard Patryk
Lupashin, Vladimir
Pfeffer, Sébastien
Genome-Wide CRISPR-Cas9 Screen Reveals the Importance of the Heparan Sulfate Pathway and the Conserved Oligomeric Golgi Complex for Synthetic Double-Stranded RNA Uptake and Sindbis Virus Infection
title Genome-Wide CRISPR-Cas9 Screen Reveals the Importance of the Heparan Sulfate Pathway and the Conserved Oligomeric Golgi Complex for Synthetic Double-Stranded RNA Uptake and Sindbis Virus Infection
title_full Genome-Wide CRISPR-Cas9 Screen Reveals the Importance of the Heparan Sulfate Pathway and the Conserved Oligomeric Golgi Complex for Synthetic Double-Stranded RNA Uptake and Sindbis Virus Infection
title_fullStr Genome-Wide CRISPR-Cas9 Screen Reveals the Importance of the Heparan Sulfate Pathway and the Conserved Oligomeric Golgi Complex for Synthetic Double-Stranded RNA Uptake and Sindbis Virus Infection
title_full_unstemmed Genome-Wide CRISPR-Cas9 Screen Reveals the Importance of the Heparan Sulfate Pathway and the Conserved Oligomeric Golgi Complex for Synthetic Double-Stranded RNA Uptake and Sindbis Virus Infection
title_short Genome-Wide CRISPR-Cas9 Screen Reveals the Importance of the Heparan Sulfate Pathway and the Conserved Oligomeric Golgi Complex for Synthetic Double-Stranded RNA Uptake and Sindbis Virus Infection
title_sort genome-wide crispr-cas9 screen reveals the importance of the heparan sulfate pathway and the conserved oligomeric golgi complex for synthetic double-stranded rna uptake and sindbis virus infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7657590/
https://www.ncbi.nlm.nih.gov/pubmed/33177215
http://dx.doi.org/10.1128/mSphere.00914-20
work_keys_str_mv AT petitjeanolivier genomewidecrisprcas9screenrevealstheimportanceoftheheparansulfatepathwayandtheconservedoligomericgolgicomplexforsyntheticdoublestrandedrnauptakeandsindbisvirusinfection
AT girardierika genomewidecrisprcas9screenrevealstheimportanceoftheheparansulfatepathwayandtheconservedoligomericgolgicomplexforsyntheticdoublestrandedrnauptakeandsindbisvirusinfection
AT ngondorichardpatryk genomewidecrisprcas9screenrevealstheimportanceoftheheparansulfatepathwayandtheconservedoligomericgolgicomplexforsyntheticdoublestrandedrnauptakeandsindbisvirusinfection
AT lupashinvladimir genomewidecrisprcas9screenrevealstheimportanceoftheheparansulfatepathwayandtheconservedoligomericgolgicomplexforsyntheticdoublestrandedrnauptakeandsindbisvirusinfection
AT pfeffersebastien genomewidecrisprcas9screenrevealstheimportanceoftheheparansulfatepathwayandtheconservedoligomericgolgicomplexforsyntheticdoublestrandedrnauptakeandsindbisvirusinfection