Literature DB >> 24807708

RIOK3 is an adaptor protein required for IRF3-mediated antiviral type I interferon production.

Jun Feng1, Paul D De Jesus2, Victoria Su1, Stephanie Han1, Danyang Gong1, Nicholas C Wu1, Yuan Tian3, Xudong Li1, Ting-Ting Wu1, Sumit K Chanda2, Ren Sun4.   

Abstract

Detection of cytosolic nucleic acids by pattern recognition receptors leads to the induction of type I interferons (IFNs) and elicits the innate immune response. We report here the identification of RIOK3 as a novel adaptor protein that is essential for the cytosolic nucleic acid-induced type I IFN production and for the antiviral response to gammaherpesvirus through two independent kinome-wide RNA interference screens. RIOK3 knockdown blocks both cytosolic double-stranded B-form DNA and double-stranded RNA-induced IRF3 activation and IFN-β production. In contrast, the overexpression of RIOK3 activates IRF3 and induces IFN-β. RIOK3 functions downstream of TBK1 and upstream of IRF3 activation. Furthermore, RIOK3 physically interacts with both IRF3 and TBK1 and is necessary for the interaction between TBK1 and IRF3. In addition, global transcriptome analysis shows that the expression of many gene involved antiviral responses is dependent on RIOK3. Thus, knockdown of RIOK3 inhibits cellular antiviral responses against both DNA and RNA viruses (herpesvirus and influenza A virus). Our data suggest that RIOK3 plays a critical role in the antiviral type I IFN pathway by bridging TBK1 and IRF3. Importance: The innate immune response, such as the production of type I interferons, acts as the first line of defense, limiting infectious pathogens directly and shaping the adaptive immune response. In this study, we identified RIOK3 as a novel regulator of the antiviral type I interferon pathway. Specifically, we found that RIOK3 physically interacts with TBK1 and IRF3 and bridges the functions between TBK1 and IRF3 in the activation of type I interferon pathway. The identification of a cellular kinase that plays a role the type I interferon pathway adds another level of complexity in the regulation of innate immunity and will have implications for developing novel strategies to combat viral infection.
Copyright © 2014, American Society for Microbiology. All Rights Reserved.

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Year:  2014        PMID: 24807708      PMCID: PMC4097797          DOI: 10.1128/JVI.00643-14

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  51 in total

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Authors:  J E Durbin; A Fernandez-Sesma; C K Lee; T D Rao; A B Frey; T M Moran; S Vukmanovic; A García-Sastre; D E Levy
Journal:  J Immunol       Date:  2000-04-15       Impact factor: 5.422

3.  Triggering the interferon antiviral response through an IKK-related pathway.

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Review 5.  Control of IRF-3 activation by phosphorylation.

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2.  Altered m6A Modification of Specific Cellular Transcripts Affects Flaviviridae Infection.

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6.  Transcriptome Analysis and Discovery of Genes Involved in Immune Pathways from Coelomocytes of Sea Cucumber (Apostichopus japonicus) after Vibrio splendidus Challenge.

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7.  Investigating the role of RIO protein kinases in Caenorhabditis elegans.

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9.  Flatworms have lost the right open reading frame kinase 3 gene during evolution.

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Review 10.  Mechanisms of RNA N6-Methyladenosine in Hepatocellular Carcinoma: From the Perspectives of Etiology.

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