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The antiviral state has shaped the CpG composition of the vertebrate interferome to avoid self-targeting

Antiviral defenses can sense viral RNAs and mediate their destruction. This presents a challenge for host cells since they must destroy viral RNAs while sparing the host mRNAs that encode antiviral effectors. Here, we show that highly upregulated interferon-stimulated genes (ISGs), which encode anti...

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Autores principales: Shaw, Andrew E., Rihn, Suzannah J., Mollentze, Nardus, Wickenhagen, Arthur, Stewart, Douglas G., Orton, Richard J., Kuchi, Srikeerthana, Bakshi, Siddharth, Collados, Mila Rodriguez, Turnbull, Matthew L., Busby, Joseph, Gu, Quan, Smollett, Katherine, Bamford, Connor G. G., Sugrue, Elena, Johnson, Paul C. D., Da Silva, Ana Filipe, Castello, Alfredo, Streicker, Daniel G., Robertson, David L., Palmarini, Massimo, Wilson, Sam J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8423302/
https://www.ncbi.nlm.nih.gov/pubmed/34491982
http://dx.doi.org/10.1371/journal.pbio.3001352
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author Shaw, Andrew E.
Rihn, Suzannah J.
Mollentze, Nardus
Wickenhagen, Arthur
Stewart, Douglas G.
Orton, Richard J.
Kuchi, Srikeerthana
Bakshi, Siddharth
Collados, Mila Rodriguez
Turnbull, Matthew L.
Busby, Joseph
Gu, Quan
Smollett, Katherine
Bamford, Connor G. G.
Sugrue, Elena
Johnson, Paul C. D.
Da Silva, Ana Filipe
Castello, Alfredo
Streicker, Daniel G.
Robertson, David L.
Palmarini, Massimo
Wilson, Sam J.
author_facet Shaw, Andrew E.
Rihn, Suzannah J.
Mollentze, Nardus
Wickenhagen, Arthur
Stewart, Douglas G.
Orton, Richard J.
Kuchi, Srikeerthana
Bakshi, Siddharth
Collados, Mila Rodriguez
Turnbull, Matthew L.
Busby, Joseph
Gu, Quan
Smollett, Katherine
Bamford, Connor G. G.
Sugrue, Elena
Johnson, Paul C. D.
Da Silva, Ana Filipe
Castello, Alfredo
Streicker, Daniel G.
Robertson, David L.
Palmarini, Massimo
Wilson, Sam J.
author_sort Shaw, Andrew E.
collection PubMed
description Antiviral defenses can sense viral RNAs and mediate their destruction. This presents a challenge for host cells since they must destroy viral RNAs while sparing the host mRNAs that encode antiviral effectors. Here, we show that highly upregulated interferon-stimulated genes (ISGs), which encode antiviral proteins, have distinctive nucleotide compositions. We propose that self-targeting by antiviral effectors has selected for ISG transcripts that occupy a less self-targeted sequence space. Following interferon (IFN) stimulation, the CpG-targeting antiviral effector zinc-finger antiviral protein (ZAP) reduces the mRNA abundance of multiple host transcripts, providing a mechanistic explanation for the repression of many (but not all) interferon-repressed genes (IRGs). Notably, IRGs tend to be relatively CpG rich. In contrast, highly upregulated ISGs tend to be strongly CpG suppressed. Thus, ZAP is an example of an effector that has not only selected compositional biases in viral genomes but also appears to have notably shaped the composition of host transcripts in the vertebrate interferome.
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spelling pubmed-84233022021-09-08 The antiviral state has shaped the CpG composition of the vertebrate interferome to avoid self-targeting Shaw, Andrew E. Rihn, Suzannah J. Mollentze, Nardus Wickenhagen, Arthur Stewart, Douglas G. Orton, Richard J. Kuchi, Srikeerthana Bakshi, Siddharth Collados, Mila Rodriguez Turnbull, Matthew L. Busby, Joseph Gu, Quan Smollett, Katherine Bamford, Connor G. G. Sugrue, Elena Johnson, Paul C. D. Da Silva, Ana Filipe Castello, Alfredo Streicker, Daniel G. Robertson, David L. Palmarini, Massimo Wilson, Sam J. PLoS Biol Research Article Antiviral defenses can sense viral RNAs and mediate their destruction. This presents a challenge for host cells since they must destroy viral RNAs while sparing the host mRNAs that encode antiviral effectors. Here, we show that highly upregulated interferon-stimulated genes (ISGs), which encode antiviral proteins, have distinctive nucleotide compositions. We propose that self-targeting by antiviral effectors has selected for ISG transcripts that occupy a less self-targeted sequence space. Following interferon (IFN) stimulation, the CpG-targeting antiviral effector zinc-finger antiviral protein (ZAP) reduces the mRNA abundance of multiple host transcripts, providing a mechanistic explanation for the repression of many (but not all) interferon-repressed genes (IRGs). Notably, IRGs tend to be relatively CpG rich. In contrast, highly upregulated ISGs tend to be strongly CpG suppressed. Thus, ZAP is an example of an effector that has not only selected compositional biases in viral genomes but also appears to have notably shaped the composition of host transcripts in the vertebrate interferome. Public Library of Science 2021-09-07 /pmc/articles/PMC8423302/ /pubmed/34491982 http://dx.doi.org/10.1371/journal.pbio.3001352 Text en © 2021 Shaw et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Shaw, Andrew E.
Rihn, Suzannah J.
Mollentze, Nardus
Wickenhagen, Arthur
Stewart, Douglas G.
Orton, Richard J.
Kuchi, Srikeerthana
Bakshi, Siddharth
Collados, Mila Rodriguez
Turnbull, Matthew L.
Busby, Joseph
Gu, Quan
Smollett, Katherine
Bamford, Connor G. G.
Sugrue, Elena
Johnson, Paul C. D.
Da Silva, Ana Filipe
Castello, Alfredo
Streicker, Daniel G.
Robertson, David L.
Palmarini, Massimo
Wilson, Sam J.
The antiviral state has shaped the CpG composition of the vertebrate interferome to avoid self-targeting
title The antiviral state has shaped the CpG composition of the vertebrate interferome to avoid self-targeting
title_full The antiviral state has shaped the CpG composition of the vertebrate interferome to avoid self-targeting
title_fullStr The antiviral state has shaped the CpG composition of the vertebrate interferome to avoid self-targeting
title_full_unstemmed The antiviral state has shaped the CpG composition of the vertebrate interferome to avoid self-targeting
title_short The antiviral state has shaped the CpG composition of the vertebrate interferome to avoid self-targeting
title_sort antiviral state has shaped the cpg composition of the vertebrate interferome to avoid self-targeting
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8423302/
https://www.ncbi.nlm.nih.gov/pubmed/34491982
http://dx.doi.org/10.1371/journal.pbio.3001352
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