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Enterovirus Pathogenesis Requires the Host Methyltransferase SETD3

Enteroviruses (EVs) comprise a large genus of positive-sense, single-stranded RNA viruses whose members cause a number of important and widespread human diseases including poliomyelitis, myocarditis, acute flaccid myelitis (AFM) and the common cold. How EVs co-opt cellular functions to promote repli...

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Autores principales: Diep, Jonathan, Ooi, Yaw Shin, Wilkinson, Alex W., Peters, Christine E., Foy, Eileen, Johnson, Jeffrey R., Zengel, James, Ding, Siyuan, Weng, Kuo-Feng, Laufman, Orly, Jang, Gwendolyn, Xu, Jiewei, Young, Tracy, Verschueren, Erik, Kobluk, Kristi J., Elias, Joshua E., Sarnow, Peter, Greenberg, Harry B., Hüttenhain, Ruth, Nagamine, Claude M., Andino, Raul, Krogan, Nevan J., Gozani, Or, Carette, Jan E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6879830/
https://www.ncbi.nlm.nih.gov/pubmed/31527793
http://dx.doi.org/10.1038/s41564-019-0551-1
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author Diep, Jonathan
Ooi, Yaw Shin
Wilkinson, Alex W.
Peters, Christine E.
Foy, Eileen
Johnson, Jeffrey R.
Zengel, James
Ding, Siyuan
Weng, Kuo-Feng
Laufman, Orly
Jang, Gwendolyn
Xu, Jiewei
Young, Tracy
Verschueren, Erik
Kobluk, Kristi J.
Elias, Joshua E.
Sarnow, Peter
Greenberg, Harry B.
Hüttenhain, Ruth
Nagamine, Claude M.
Andino, Raul
Krogan, Nevan J.
Gozani, Or
Carette, Jan E.
author_facet Diep, Jonathan
Ooi, Yaw Shin
Wilkinson, Alex W.
Peters, Christine E.
Foy, Eileen
Johnson, Jeffrey R.
Zengel, James
Ding, Siyuan
Weng, Kuo-Feng
Laufman, Orly
Jang, Gwendolyn
Xu, Jiewei
Young, Tracy
Verschueren, Erik
Kobluk, Kristi J.
Elias, Joshua E.
Sarnow, Peter
Greenberg, Harry B.
Hüttenhain, Ruth
Nagamine, Claude M.
Andino, Raul
Krogan, Nevan J.
Gozani, Or
Carette, Jan E.
author_sort Diep, Jonathan
collection PubMed
description Enteroviruses (EVs) comprise a large genus of positive-sense, single-stranded RNA viruses whose members cause a number of important and widespread human diseases including poliomyelitis, myocarditis, acute flaccid myelitis (AFM) and the common cold. How EVs co-opt cellular functions to promote replication and spread is incompletely understood. Here, using genome-scale CRISPR screens, we identify the actin histidine methyltransferase SETD3 as critically important for viral infection by a broad panel of enteroviruses including rhinoviruses and non-polio EVs increasingly linked to severe neurological disease such as AFM (EV-D68) and viral encephalitis (EV-A71). We show that cytosolic SETD3, independent of its methylation activity, is required for the RNA replication step in the viral life cycle. Using quantitative affinity purification-mass spectrometry, we show that SETD3 specifically interacts with the viral 2A protease of multiple enteroviral species and we map the residues in 2A that mediate this interaction. 2A mutants that retain protease activity, but unable to interact with SETD3, are severely compromised in RNA replication. These data suggest a role of the viral 2A protein in RNA replication beyond facilitating proteolytic cleavage. Finally, we demonstrate that SETD3 is essential for in vivo replication and pathogenesis in multiple mouse models for enterovirus infection including CV-A10, EV-A71 and EV-D68. Our results reveal a crucial role of a host protein in viral pathogenesis and suggest targeting SETD3 as a potential mechanism for controlling viral infections.
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spelling pubmed-68798302020-03-16 Enterovirus Pathogenesis Requires the Host Methyltransferase SETD3 Diep, Jonathan Ooi, Yaw Shin Wilkinson, Alex W. Peters, Christine E. Foy, Eileen Johnson, Jeffrey R. Zengel, James Ding, Siyuan Weng, Kuo-Feng Laufman, Orly Jang, Gwendolyn Xu, Jiewei Young, Tracy Verschueren, Erik Kobluk, Kristi J. Elias, Joshua E. Sarnow, Peter Greenberg, Harry B. Hüttenhain, Ruth Nagamine, Claude M. Andino, Raul Krogan, Nevan J. Gozani, Or Carette, Jan E. Nat Microbiol Article Enteroviruses (EVs) comprise a large genus of positive-sense, single-stranded RNA viruses whose members cause a number of important and widespread human diseases including poliomyelitis, myocarditis, acute flaccid myelitis (AFM) and the common cold. How EVs co-opt cellular functions to promote replication and spread is incompletely understood. Here, using genome-scale CRISPR screens, we identify the actin histidine methyltransferase SETD3 as critically important for viral infection by a broad panel of enteroviruses including rhinoviruses and non-polio EVs increasingly linked to severe neurological disease such as AFM (EV-D68) and viral encephalitis (EV-A71). We show that cytosolic SETD3, independent of its methylation activity, is required for the RNA replication step in the viral life cycle. Using quantitative affinity purification-mass spectrometry, we show that SETD3 specifically interacts with the viral 2A protease of multiple enteroviral species and we map the residues in 2A that mediate this interaction. 2A mutants that retain protease activity, but unable to interact with SETD3, are severely compromised in RNA replication. These data suggest a role of the viral 2A protein in RNA replication beyond facilitating proteolytic cleavage. Finally, we demonstrate that SETD3 is essential for in vivo replication and pathogenesis in multiple mouse models for enterovirus infection including CV-A10, EV-A71 and EV-D68. Our results reveal a crucial role of a host protein in viral pathogenesis and suggest targeting SETD3 as a potential mechanism for controlling viral infections. 2019-09-16 2019-12 /pmc/articles/PMC6879830/ /pubmed/31527793 http://dx.doi.org/10.1038/s41564-019-0551-1 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Diep, Jonathan
Ooi, Yaw Shin
Wilkinson, Alex W.
Peters, Christine E.
Foy, Eileen
Johnson, Jeffrey R.
Zengel, James
Ding, Siyuan
Weng, Kuo-Feng
Laufman, Orly
Jang, Gwendolyn
Xu, Jiewei
Young, Tracy
Verschueren, Erik
Kobluk, Kristi J.
Elias, Joshua E.
Sarnow, Peter
Greenberg, Harry B.
Hüttenhain, Ruth
Nagamine, Claude M.
Andino, Raul
Krogan, Nevan J.
Gozani, Or
Carette, Jan E.
Enterovirus Pathogenesis Requires the Host Methyltransferase SETD3
title Enterovirus Pathogenesis Requires the Host Methyltransferase SETD3
title_full Enterovirus Pathogenesis Requires the Host Methyltransferase SETD3
title_fullStr Enterovirus Pathogenesis Requires the Host Methyltransferase SETD3
title_full_unstemmed Enterovirus Pathogenesis Requires the Host Methyltransferase SETD3
title_short Enterovirus Pathogenesis Requires the Host Methyltransferase SETD3
title_sort enterovirus pathogenesis requires the host methyltransferase setd3
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6879830/
https://www.ncbi.nlm.nih.gov/pubmed/31527793
http://dx.doi.org/10.1038/s41564-019-0551-1
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