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Antiviral Protection via RdRP-Mediated Stable Activation of Innate Immunity

For many emerging and re-emerging infectious diseases, definitive solutions via sterilizing adaptive immunity may require years or decades to develop, if they are even possible. The innate immune system offers alternative mechanisms that do not require antigen-specific recognition or a priori knowle...

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Autores principales: Painter, Meghan M., Morrison, James H., Zoecklein, Laurie J., Rinkoski, Tommy A., Watzlawik, Jens O., Papke, Louisa M., Warrington, Arthur E., Bieber, Allan J., Matchett, William E., Turkowski, Kari L., Poeschla, Eric M., Rodriguez, Moses
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4669089/
https://www.ncbi.nlm.nih.gov/pubmed/26633895
http://dx.doi.org/10.1371/journal.ppat.1005311
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author Painter, Meghan M.
Morrison, James H.
Zoecklein, Laurie J.
Rinkoski, Tommy A.
Watzlawik, Jens O.
Papke, Louisa M.
Warrington, Arthur E.
Bieber, Allan J.
Matchett, William E.
Turkowski, Kari L.
Poeschla, Eric M.
Rodriguez, Moses
author_facet Painter, Meghan M.
Morrison, James H.
Zoecklein, Laurie J.
Rinkoski, Tommy A.
Watzlawik, Jens O.
Papke, Louisa M.
Warrington, Arthur E.
Bieber, Allan J.
Matchett, William E.
Turkowski, Kari L.
Poeschla, Eric M.
Rodriguez, Moses
author_sort Painter, Meghan M.
collection PubMed
description For many emerging and re-emerging infectious diseases, definitive solutions via sterilizing adaptive immunity may require years or decades to develop, if they are even possible. The innate immune system offers alternative mechanisms that do not require antigen-specific recognition or a priori knowledge of the causative agent. However, it is unclear whether effective stable innate immune system activation can be achieved without triggering harmful autoimmunity or other chronic inflammatory sequelae. Here, we show that transgenic expression of a picornavirus RNA-dependent RNA polymerase (RdRP), in the absence of other viral proteins, can profoundly reconfigure mammalian innate antiviral immunity by exposing the normally membrane-sequestered RdRP activity to sustained innate immune detection. RdRP-transgenic mice have life-long, quantitatively dramatic upregulation of 80 interferon-stimulated genes (ISGs) and show profound resistance to normally lethal viral challenge. Multiple crosses with defined knockout mice (Rag1, Mda5, Mavs, Ifnar1, Ifngr1, and Tlr3) established that the mechanism operates via MDA5 and MAVS and is fully independent of the adaptive immune system. Human cell models recapitulated the key features with striking fidelity, with the RdRP inducing an analogous ISG network and a strict block to HIV-1 infection. This RdRP-mediated antiviral mechanism does not depend on secondary structure within the RdRP mRNA but operates at the protein level and requires RdRP catalysis. Importantly, despite lifelong massive ISG elevations, RdRP mice are entirely healthy, with normal longevity. Our data reveal that a powerfully augmented MDA5-mediated activation state can be a well-tolerated mammalian innate immune system configuration. These results provide a foundation for augmenting innate immunity to achieve broad-spectrum antiviral protection.
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spelling pubmed-46690892015-12-10 Antiviral Protection via RdRP-Mediated Stable Activation of Innate Immunity Painter, Meghan M. Morrison, James H. Zoecklein, Laurie J. Rinkoski, Tommy A. Watzlawik, Jens O. Papke, Louisa M. Warrington, Arthur E. Bieber, Allan J. Matchett, William E. Turkowski, Kari L. Poeschla, Eric M. Rodriguez, Moses PLoS Pathog Research Article For many emerging and re-emerging infectious diseases, definitive solutions via sterilizing adaptive immunity may require years or decades to develop, if they are even possible. The innate immune system offers alternative mechanisms that do not require antigen-specific recognition or a priori knowledge of the causative agent. However, it is unclear whether effective stable innate immune system activation can be achieved without triggering harmful autoimmunity or other chronic inflammatory sequelae. Here, we show that transgenic expression of a picornavirus RNA-dependent RNA polymerase (RdRP), in the absence of other viral proteins, can profoundly reconfigure mammalian innate antiviral immunity by exposing the normally membrane-sequestered RdRP activity to sustained innate immune detection. RdRP-transgenic mice have life-long, quantitatively dramatic upregulation of 80 interferon-stimulated genes (ISGs) and show profound resistance to normally lethal viral challenge. Multiple crosses with defined knockout mice (Rag1, Mda5, Mavs, Ifnar1, Ifngr1, and Tlr3) established that the mechanism operates via MDA5 and MAVS and is fully independent of the adaptive immune system. Human cell models recapitulated the key features with striking fidelity, with the RdRP inducing an analogous ISG network and a strict block to HIV-1 infection. This RdRP-mediated antiviral mechanism does not depend on secondary structure within the RdRP mRNA but operates at the protein level and requires RdRP catalysis. Importantly, despite lifelong massive ISG elevations, RdRP mice are entirely healthy, with normal longevity. Our data reveal that a powerfully augmented MDA5-mediated activation state can be a well-tolerated mammalian innate immune system configuration. These results provide a foundation for augmenting innate immunity to achieve broad-spectrum antiviral protection. Public Library of Science 2015-12-03 /pmc/articles/PMC4669089/ /pubmed/26633895 http://dx.doi.org/10.1371/journal.ppat.1005311 Text en © 2015 Painter 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
Painter, Meghan M.
Morrison, James H.
Zoecklein, Laurie J.
Rinkoski, Tommy A.
Watzlawik, Jens O.
Papke, Louisa M.
Warrington, Arthur E.
Bieber, Allan J.
Matchett, William E.
Turkowski, Kari L.
Poeschla, Eric M.
Rodriguez, Moses
Antiviral Protection via RdRP-Mediated Stable Activation of Innate Immunity
title Antiviral Protection via RdRP-Mediated Stable Activation of Innate Immunity
title_full Antiviral Protection via RdRP-Mediated Stable Activation of Innate Immunity
title_fullStr Antiviral Protection via RdRP-Mediated Stable Activation of Innate Immunity
title_full_unstemmed Antiviral Protection via RdRP-Mediated Stable Activation of Innate Immunity
title_short Antiviral Protection via RdRP-Mediated Stable Activation of Innate Immunity
title_sort antiviral protection via rdrp-mediated stable activation of innate immunity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4669089/
https://www.ncbi.nlm.nih.gov/pubmed/26633895
http://dx.doi.org/10.1371/journal.ppat.1005311
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