Literature DB >> 21183678

Viral double-stranded RNAs from vaccinia virus early or intermediate gene transcripts possess PKR activating function, resulting in NF-kappaB activation, when the K1 protein is absent or mutated.

Kristen L Willis1, Jeffrey O Langland, Joanna L Shisler.   

Abstract

PKR is a potent antiviral molecule that can terminate infection by inhibiting protein synthesis and stimulating NF-κB activation and apoptosis. Originally, it was thought that only intermediate and late gene transcription produced double-stranded (ds) RNA to activate PKR during vaccinia virus (VACV) infection. The VACV E3 or K3 proteins squelch this effect by binding to either dsRNA or PKR. However, in the absence of the K1 protein, VACV infection activates PKR at very early times post-infection and despite the presence of E3 and K3. These data suggest that VACV infection induces PKR activation by a currently unknown mechanism. To determine this mechanism, cells were infected with K1L-containing or -deficient VACVs. By using conditions that limited the progression of the poxvirus replication cycle, we observed that early gene transcripts activated PKR in RK13 cells, identifying a new PKR-activating mechanism of poxvirus infection. Using a similar approach for HeLa cells, intermediate gene transcription was sufficient to activate PKR. RNA isolated from infected RK13 or HeLa cells maintained PKR-activating properties only when dsRNA was present. Moreover, viral dsRNA was directly detected in infected cells either by RT-PCR or immunofluorescent microscopy. Interestingly, dsRNA levels were higher in infected cells in which the K1 protein was nonfunctional. Only K1 proteins with PKR inhibitory function prevented downstream NF-κB activation. These results reveal a new PKR activation pathway during VACV infection, in which the K1 protein reduces dsRNA levels early in VACV infection to directly inhibit PKR and several of its downstream antiviral effects, thereby enhancing virus survival.

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Year:  2010        PMID: 21183678      PMCID: PMC3048664          DOI: 10.1074/jbc.M110.194704

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  46 in total

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Review 2.  The regulation of the protein kinase PKR by RNA.

Authors:  H D Robertson; M B Mathews
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3.  Increased sensitivity of cell-free protein synthesis to double-stranded RNA after interferon treatment.

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9.  The effect of the vaccinia K1 protein on the PKR-eIF2alpha pathway in RK13 and HeLa cells.

Authors:  Kristen L Willis; Samir Patel; Yan Xiang; Joanna L Shisler
Journal:  Virology       Date:  2009-09-09       Impact factor: 3.616

Review 10.  Regulation of viral transcription elongation and termination during vaccinia virus infection.

Authors:  Richard C Condit; Edward G Niles
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  21 in total

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3.  Ectromelia virus accumulates less double-stranded RNA compared to vaccinia virus in BS-C-1 cells.

Authors:  Tiffany R Frey; Michael H Lehmann; Colton M Ryan; Marie C Pizzorno; Gerd Sutter; Adam R Hersperger
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4.  Deletion of the K1L Gene Results in a Vaccinia Virus That Is Less Pathogenic Due to Muted Innate Immune Responses, yet Still Elicits Protective Immunity.

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6.  RNA granules associated with SAMD9-mediated poxvirus restriction are similar to antiviral granules in composition but do not require TIA1 for poxvirus restriction.

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7.  Poxvirus decapping enzymes enhance virulence by preventing the accumulation of dsRNA and the induction of innate antiviral responses.

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10.  Opposing Roles of Double-Stranded RNA Effector Pathways and Viral Defense Proteins Revealed with CRISPR-Cas9 Knockout Cell Lines and Vaccinia Virus Mutants.

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