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Published on: January 24, 2016
Poxvirus K3 Orthologs Regulate NF-κB-Dependent Inflammatory Responses by Targeting the PKR-eIF2α Axis in Multiple
Huibin Yu1,2, Mary Eloise L Fernandez1, Chen Peng3
1Department of Medical Microbiology and Immunology, School of Medicine, University of California, Davis, CA 95618, USA.
Abstract:
Background: Protein kinase R (PKR) inhibits general mRNA translation by phosphorylating the alpha subunit of eukaryotic translation initiation factor 2 (eIF2). PKR also modulates NF-κB signaling during viral infections, but comparative studies of PKR-mediated NF-κB responses across mammalian species and their regulation by viral inhibitors remain largely unexplored. This study aimed to characterize the conserved antiviral and inflammatory roles of mammalian PKR orthologs and investigate their modulation by poxviral inhibitors. Methods: Using reporter gene assays and quantitative RT-PCR, we assessed the impact of 17 mammalian PKR orthologs on general translation inhibition, stress-responsive translation, and NF-κB-dependent induction of target genes. Congenic human and rabbit cell lines infected with a myxoma virus strain lacking PKR inhibitors were used to compare the effects of human and rabbit PKR on viral replication and inflammatory responses. Site-directed mutagenesis was employed to determine key residues responsible for differential sensitivity to the viral inhibitor M156. Results: All 17 mammalian PKR orthologs significantly inhibited general translation, strongly activated stress-responsive ATF4 translation, and robustly induced NF-κB target genes. Inhibition of these responses was specifically mediated by poxviral K3 orthologs that effectively suppressed PKR activation. Comparative analyses showed human and rabbit PKRs similarly inhibited virus replication and induced cytokine transcripts. Amino acid swaps between rabbit PKRs reversed their sensitivity to viral inhibitor M156 and NF-κB activation. Conclusions: Our data show that the tested PKR orthologs exhibit conserved dual antiviral and inflammatory regulatory roles, which can be antagonized by poxviral K3 orthologs that exploit eIF2α mimicry to modulate the PKR-NF-κB axis.
Insights
Mammalian Protein kinase R (PKR) orthologs conserve antiviral and inflammatory roles, inhibiting translation and activating NF-κB. Poxviral K3 proteins antagonize PKR, highlighting a conserved viral immune evasion strategy.
Area of Science:
- Immunology
- Virology
- Molecular Biology
Background:
- Protein kinase R (PKR) is a key regulator of mRNA translation and innate immunity.
- PKR phosphorylates eukaryotic translation initiation factor 2 alpha (eIF2α), inhibiting protein synthesis.
- PKR's role in NF-κB signaling during viral infections and its cross-species conservation are not well understood.
Purpose of the Study:
- To characterize conserved antiviral and inflammatory functions of mammalian PKR orthologs.
- To investigate the modulation of PKR-mediated responses by poxviral inhibitors.
- To compare the efficacy of human and rabbit PKR in antiviral defense and inflammatory signaling.
Main Methods:
- Reporter gene assays and quantitative RT-PCR were used to assess PKR activity.
- Congenic human and rabbit cell lines were infected with a myxoma virus lacking PKR inhibitors.
- Site-directed mutagenesis identified key residues in PKR affecting viral inhibitor sensitivity.
Main Results:
- All 17 tested mammalian PKR orthologs inhibited general translation, activated ATF4 translation, and induced NF-κB target genes.
- Poxviral K3 orthologs suppressed PKR activation, demonstrating a conserved mechanism of viral immune evasion.
- Human and rabbit PKR showed similar antiviral and inflammatory responses; mutations altered sensitivity to viral inhibitor M156.
Conclusions:
- Mammalian PKR orthologs possess conserved dual roles in antiviral defense and inflammation.
- Poxviral K3 proteins antagonize the PKR-NF-κB axis via eIF2α mimicry.
- This study elucidates a conserved mechanism of viral immune evasion targeting the PKR pathway.
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