Cargando…
Dissecting Herpes Simplex Virus 1-Induced Host Shutoff at the RNA Level
Herpes simplex virus 1 (HSV-1) induces a profound host shutoff during lytic infection. The virion host shutoff (vhs) protein plays a key role in this process by efficiently cleaving host and viral mRNAs. Furthermore, the onset of viral DNA replication is accompanied by a rapid decline in host transc...
Autores principales: | , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society for Microbiology
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7925104/ https://www.ncbi.nlm.nih.gov/pubmed/33148793 http://dx.doi.org/10.1128/JVI.01399-20 |
_version_ | 1783659218899828736 |
---|---|
author | Friedel, Caroline C. Whisnant, Adam W. Djakovic, Lara Rutkowski, Andrzej J. Friedl, Marie-Sophie Kluge, Michael Williamson, James C. Sai, Somesh Vidal, Ramon Oliveira Sauer, Sascha Hennig, Thomas Grothey, Arnhild Milić, Andrea Prusty, Bhupesh K. Lehner, Paul J. Matheson, Nicholas J. Erhard, Florian Dölken, Lars |
author_facet | Friedel, Caroline C. Whisnant, Adam W. Djakovic, Lara Rutkowski, Andrzej J. Friedl, Marie-Sophie Kluge, Michael Williamson, James C. Sai, Somesh Vidal, Ramon Oliveira Sauer, Sascha Hennig, Thomas Grothey, Arnhild Milić, Andrea Prusty, Bhupesh K. Lehner, Paul J. Matheson, Nicholas J. Erhard, Florian Dölken, Lars |
author_sort | Friedel, Caroline C. |
collection | PubMed |
description | Herpes simplex virus 1 (HSV-1) induces a profound host shutoff during lytic infection. The virion host shutoff (vhs) protein plays a key role in this process by efficiently cleaving host and viral mRNAs. Furthermore, the onset of viral DNA replication is accompanied by a rapid decline in host transcriptional activity. To dissect relative contributions of both mechanisms and elucidate gene-specific host transcriptional responses throughout the first 8 h of lytic HSV-1 infection, we used transcriptome sequencing of total, newly transcribed (4sU-labeled) and chromatin-associated RNA in wild-type (WT) and Δvhs mutant infection of primary human fibroblasts. Following virus entry, vhs activity rapidly plateaued at an elimination rate of around 30% of cellular mRNAs per hour until 8 h postinfection (p.i.). In parallel, host transcriptional activity dropped to 10 to 20%. While the combined effects of both phenomena dominated infection-induced changes in total RNA, extensive gene-specific transcriptional regulation was observable in chromatin-associated RNA and was surprisingly concordant between WT and Δvhs infections. Both induced strong transcriptional upregulation of a small subset of genes that were poorly expressed prior to infection but already primed by H3K4me3 histone marks at their promoters. Most interestingly, analysis of chromatin-associated RNA revealed vhs-nuclease-activity-dependent transcriptional downregulation of at least 150 cellular genes, in particular of many integrin adhesome and extracellular matrix components. This was accompanied by a vhs-dependent reduction in protein levels by 8 h p.i. for many of these genes. In summary, our study provides a comprehensive picture of the molecular mechanisms that govern cellular RNA metabolism during the first 8 h of lytic HSV-1 infection. IMPORTANCE The HSV-1 virion host shutoff (vhs) protein efficiently cleaves both host and viral mRNAs in a translation-dependent manner. In this study, we model and quantify changes in vhs activity, as well as virus-induced global loss of host transcriptional activity, during productive HSV-1 infection. In general, HSV-1-induced alterations in total RNA levels were dominated by these two global effects. In contrast, chromatin-associated RNA depicted gene-specific transcriptional changes. This revealed highly concordant transcriptional changes in WT and Δvhs infections, confirmed DUX4 as a key transcriptional regulator in HSV-1 infection, and identified vhs-dependent transcriptional downregulation of the integrin adhesome and extracellular matrix components. The latter explained seemingly gene-specific effects previously attributed to vhs-mediated mRNA degradation and resulted in a concordant loss in protein levels by 8 h p.i. for many of the respective genes. |
format | Online Article Text |
id | pubmed-7925104 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | American Society for Microbiology |
record_format | MEDLINE/PubMed |
spelling | pubmed-79251042021-03-10 Dissecting Herpes Simplex Virus 1-Induced Host Shutoff at the RNA Level Friedel, Caroline C. Whisnant, Adam W. Djakovic, Lara Rutkowski, Andrzej J. Friedl, Marie-Sophie Kluge, Michael Williamson, James C. Sai, Somesh Vidal, Ramon Oliveira Sauer, Sascha Hennig, Thomas Grothey, Arnhild Milić, Andrea Prusty, Bhupesh K. Lehner, Paul J. Matheson, Nicholas J. Erhard, Florian Dölken, Lars J Virol Cellular Response to Infection Herpes simplex virus 1 (HSV-1) induces a profound host shutoff during lytic infection. The virion host shutoff (vhs) protein plays a key role in this process by efficiently cleaving host and viral mRNAs. Furthermore, the onset of viral DNA replication is accompanied by a rapid decline in host transcriptional activity. To dissect relative contributions of both mechanisms and elucidate gene-specific host transcriptional responses throughout the first 8 h of lytic HSV-1 infection, we used transcriptome sequencing of total, newly transcribed (4sU-labeled) and chromatin-associated RNA in wild-type (WT) and Δvhs mutant infection of primary human fibroblasts. Following virus entry, vhs activity rapidly plateaued at an elimination rate of around 30% of cellular mRNAs per hour until 8 h postinfection (p.i.). In parallel, host transcriptional activity dropped to 10 to 20%. While the combined effects of both phenomena dominated infection-induced changes in total RNA, extensive gene-specific transcriptional regulation was observable in chromatin-associated RNA and was surprisingly concordant between WT and Δvhs infections. Both induced strong transcriptional upregulation of a small subset of genes that were poorly expressed prior to infection but already primed by H3K4me3 histone marks at their promoters. Most interestingly, analysis of chromatin-associated RNA revealed vhs-nuclease-activity-dependent transcriptional downregulation of at least 150 cellular genes, in particular of many integrin adhesome and extracellular matrix components. This was accompanied by a vhs-dependent reduction in protein levels by 8 h p.i. for many of these genes. In summary, our study provides a comprehensive picture of the molecular mechanisms that govern cellular RNA metabolism during the first 8 h of lytic HSV-1 infection. IMPORTANCE The HSV-1 virion host shutoff (vhs) protein efficiently cleaves both host and viral mRNAs in a translation-dependent manner. In this study, we model and quantify changes in vhs activity, as well as virus-induced global loss of host transcriptional activity, during productive HSV-1 infection. In general, HSV-1-induced alterations in total RNA levels were dominated by these two global effects. In contrast, chromatin-associated RNA depicted gene-specific transcriptional changes. This revealed highly concordant transcriptional changes in WT and Δvhs infections, confirmed DUX4 as a key transcriptional regulator in HSV-1 infection, and identified vhs-dependent transcriptional downregulation of the integrin adhesome and extracellular matrix components. The latter explained seemingly gene-specific effects previously attributed to vhs-mediated mRNA degradation and resulted in a concordant loss in protein levels by 8 h p.i. for many of the respective genes. American Society for Microbiology 2021-01-13 /pmc/articles/PMC7925104/ /pubmed/33148793 http://dx.doi.org/10.1128/JVI.01399-20 Text en Copyright © 2021 Friedel 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 | Cellular Response to Infection Friedel, Caroline C. Whisnant, Adam W. Djakovic, Lara Rutkowski, Andrzej J. Friedl, Marie-Sophie Kluge, Michael Williamson, James C. Sai, Somesh Vidal, Ramon Oliveira Sauer, Sascha Hennig, Thomas Grothey, Arnhild Milić, Andrea Prusty, Bhupesh K. Lehner, Paul J. Matheson, Nicholas J. Erhard, Florian Dölken, Lars Dissecting Herpes Simplex Virus 1-Induced Host Shutoff at the RNA Level |
title | Dissecting Herpes Simplex Virus 1-Induced Host Shutoff at the RNA Level |
title_full | Dissecting Herpes Simplex Virus 1-Induced Host Shutoff at the RNA Level |
title_fullStr | Dissecting Herpes Simplex Virus 1-Induced Host Shutoff at the RNA Level |
title_full_unstemmed | Dissecting Herpes Simplex Virus 1-Induced Host Shutoff at the RNA Level |
title_short | Dissecting Herpes Simplex Virus 1-Induced Host Shutoff at the RNA Level |
title_sort | dissecting herpes simplex virus 1-induced host shutoff at the rna level |
topic | Cellular Response to Infection |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7925104/ https://www.ncbi.nlm.nih.gov/pubmed/33148793 http://dx.doi.org/10.1128/JVI.01399-20 |
work_keys_str_mv | AT friedelcarolinec dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT whisnantadamw dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT djakoviclara dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT rutkowskiandrzejj dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT friedlmariesophie dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT klugemichael dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT williamsonjamesc dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT saisomesh dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT vidalramonoliveira dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT sauersascha dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT hennigthomas dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT grotheyarnhild dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT milicandrea dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT prustybhupeshk dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT lehnerpaulj dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT mathesonnicholasj dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT erhardflorian dissectingherpessimplexvirus1inducedhostshutoffatthernalevel AT dolkenlars dissectingherpessimplexvirus1inducedhostshutoffatthernalevel |