Murine cytomegaloviruses m139 targets DDX3 to curtail interferon production and promote viral replication

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Murine cytomegaloviruses m139 targets DDX3 to curtail interferon production and promote viral replication. / Puhach, Olha; Ostermann, Eleonore; Krisp, Christoph; Frascaroli, Giada; Schlüter, Hartmut; Brinkmann, Melanie M; Brune, Wolfram.

in: PLOS PATHOG, Jahrgang 16, Nr. 10, 10.2020, S. e1008546.

Publikationen: SCORING: Beitrag in Fachzeitschrift/ZeitungSCORING: ZeitschriftenaufsatzForschungBegutachtung

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Puhach, O, Ostermann, E, Krisp, C, Frascaroli, G, Schlüter, H, Brinkmann, MM & Brune, W 2020, 'Murine cytomegaloviruses m139 targets DDX3 to curtail interferon production and promote viral replication', PLOS PATHOG, Jg. 16, Nr. 10, S. e1008546. https://doi.org/10.1371/journal.ppat.1008546

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@article{2305755130924564a62a9e3c6afda6e3,
title = "Murine cytomegaloviruses m139 targets DDX3 to curtail interferon production and promote viral replication",
abstract = "Cytomegaloviruses (CMV) infect many different cell types and tissues in their respective hosts. Monocytes and macrophages play an important role in CMV dissemination from the site of infection to target organs. Moreover, macrophages are specialized in pathogen sensing and respond to infection by secreting cytokines and interferons. In murine cytomegalovirus (MCMV), a model for human cytomegalovirus, several genes required for efficient replication in macrophages have been identified, but their specific functions remain poorly understood. Here we show that MCMV m139, a gene of the conserved US22 gene family, encodes a protein that interacts with the DEAD box helicase DDX3, a protein involved in pathogen sensing and interferon (IFN) induction, and the E3 ubiquitin ligase UBR5. DDX3 and UBR5 also participate in the transcription, processing, and translation of a subset of cellular mRNAs. We show that m139 inhibits DDX3-mediated IFN-α and IFN-β induction and is necessary for efficient viral replication in bone-marrow derived macrophages. In vivo, m139 is crucial for viral dissemination to local lymph nodes and to the salivary glands. An m139-deficient MCMV also replicated to lower titers in SVEC4-10 endothelial cells. This replication defect was not accompanied by increased IFN-β transcription, but was rescued by knockout of either DDX3 or UBR5. Moreover, m139 co-localized with DDX3 and UBR5 in viral replication compartments in the cell nucleus. These results suggest that m139 inhibits DDX3-mediated IFN production in macrophages and antagonizes DDX3 and UBR5-dependent functions related to RNA metabolism in endothelial cells.",
author = "Olha Puhach and Eleonore Ostermann and Christoph Krisp and Giada Frascaroli and Hartmut Schl{\"u}ter and Brinkmann, {Melanie M} and Wolfram Brune",
year = "2020",
month = oct,
doi = "10.1371/journal.ppat.1008546",
language = "English",
volume = "16",
pages = "e1008546",
journal = "PLOS PATHOG",
issn = "1553-7366",
publisher = "Public Library of Science",
number = "10",

}

RIS

TY - JOUR

T1 - Murine cytomegaloviruses m139 targets DDX3 to curtail interferon production and promote viral replication

AU - Puhach, Olha

AU - Ostermann, Eleonore

AU - Krisp, Christoph

AU - Frascaroli, Giada

AU - Schlüter, Hartmut

AU - Brinkmann, Melanie M

AU - Brune, Wolfram

PY - 2020/10

Y1 - 2020/10

N2 - Cytomegaloviruses (CMV) infect many different cell types and tissues in their respective hosts. Monocytes and macrophages play an important role in CMV dissemination from the site of infection to target organs. Moreover, macrophages are specialized in pathogen sensing and respond to infection by secreting cytokines and interferons. In murine cytomegalovirus (MCMV), a model for human cytomegalovirus, several genes required for efficient replication in macrophages have been identified, but their specific functions remain poorly understood. Here we show that MCMV m139, a gene of the conserved US22 gene family, encodes a protein that interacts with the DEAD box helicase DDX3, a protein involved in pathogen sensing and interferon (IFN) induction, and the E3 ubiquitin ligase UBR5. DDX3 and UBR5 also participate in the transcription, processing, and translation of a subset of cellular mRNAs. We show that m139 inhibits DDX3-mediated IFN-α and IFN-β induction and is necessary for efficient viral replication in bone-marrow derived macrophages. In vivo, m139 is crucial for viral dissemination to local lymph nodes and to the salivary glands. An m139-deficient MCMV also replicated to lower titers in SVEC4-10 endothelial cells. This replication defect was not accompanied by increased IFN-β transcription, but was rescued by knockout of either DDX3 or UBR5. Moreover, m139 co-localized with DDX3 and UBR5 in viral replication compartments in the cell nucleus. These results suggest that m139 inhibits DDX3-mediated IFN production in macrophages and antagonizes DDX3 and UBR5-dependent functions related to RNA metabolism in endothelial cells.

AB - Cytomegaloviruses (CMV) infect many different cell types and tissues in their respective hosts. Monocytes and macrophages play an important role in CMV dissemination from the site of infection to target organs. Moreover, macrophages are specialized in pathogen sensing and respond to infection by secreting cytokines and interferons. In murine cytomegalovirus (MCMV), a model for human cytomegalovirus, several genes required for efficient replication in macrophages have been identified, but their specific functions remain poorly understood. Here we show that MCMV m139, a gene of the conserved US22 gene family, encodes a protein that interacts with the DEAD box helicase DDX3, a protein involved in pathogen sensing and interferon (IFN) induction, and the E3 ubiquitin ligase UBR5. DDX3 and UBR5 also participate in the transcription, processing, and translation of a subset of cellular mRNAs. We show that m139 inhibits DDX3-mediated IFN-α and IFN-β induction and is necessary for efficient viral replication in bone-marrow derived macrophages. In vivo, m139 is crucial for viral dissemination to local lymph nodes and to the salivary glands. An m139-deficient MCMV also replicated to lower titers in SVEC4-10 endothelial cells. This replication defect was not accompanied by increased IFN-β transcription, but was rescued by knockout of either DDX3 or UBR5. Moreover, m139 co-localized with DDX3 and UBR5 in viral replication compartments in the cell nucleus. These results suggest that m139 inhibits DDX3-mediated IFN production in macrophages and antagonizes DDX3 and UBR5-dependent functions related to RNA metabolism in endothelial cells.

U2 - 10.1371/journal.ppat.1008546

DO - 10.1371/journal.ppat.1008546

M3 - SCORING: Journal article

C2 - 33031466

VL - 16

SP - e1008546

JO - PLOS PATHOG

JF - PLOS PATHOG

SN - 1553-7366

IS - 10

ER -