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Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Maladaptation after a virus host switch leads to increased activation of the pro-inflammatory NF-κB pathway
Abstract:
Myxoma virus (MYXV) causes localized cutaneous fibromas in its natural hosts, tapeti and brush rabbits; however, in the European rabbit, MYXV causes the lethal disease myxomatosis. Currently, the molecular mechanisms underlying this increased virulence after cross-species transmission are poorly understood. In this study, we investigated the interaction between MYXV M156 and the host protein kinase R (PKR) to determine their crosstalk with the proinflammatory nuclear factor kappa B (NF-κB) pathway. Our results demonstrated that MYXV M156 inhibits brush rabbit PKR (bPKR) more strongly than European rabbit PKR (ePKR). This moderate ePKR inhibition could be improved by hyperactive M156 mutants. We hypothesized that the moderate inhibition of ePKR by M156 might incompletely suppress the signal transduction pathways modulated by PKR, such as the NF-κB pathway. Therefore, we analyzed NF-κB pathway activation with a luciferase-based promoter assay. The moderate inhibition of ePKR resulted in significantly higher NF-κB–dependent reporter activity than complete inhibition of bPKR. We also found a stronger induction of the NF-κB target genes TNFα and IL-6 in ePKR-expressing cells than in bPKR-expressing cells in response to M156 in both transfection and infections assays. Furthermore, a hyperactive M156 mutant did not cause ePKR-dependent NF-κB activation. These observations indicate that M156 is maladapted for ePKR inhibition, only incompletely blocking translation in these hosts, resulting in preferential depletion of short–half-life proteins, such as the NF-κB inhibitor IκBα. We speculate that this functional activation of NF-κB induced by the intermediate inhibition of ePKR by M156 may contribute to the increased virulence of MYXV in European rabbits.
Insights
Myxoma virus (MYXV) protein M156 poorly inhibits European rabbit protein kinase R (PKR), leading to increased nuclear factor kappa B (NF-κB) activation and higher virulence. This maladaptation drives lethal myxomatosis in European rabbits.
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Myxoma virus (MYXV) causes mild fibromas in brush rabbits but lethal myxomatosis in European rabbits.
- The molecular basis for MYXV's increased virulence in European rabbits after cross-species transmission remains unclear.
- Understanding host-pathogen interactions is crucial for explaining differential disease outcomes.
Purpose of the Study:
- To investigate the interaction between MYXV protein M156 and host protein kinase R (PKR).
- To determine the role of this interaction in modulating the nuclear factor kappa B (NF-κB) pathway.
- To elucidate mechanisms underlying MYXV's differential virulence between rabbit species.
Main Methods:
- Investigated MYXV M156 inhibition of brush rabbit PKR (bPKR) versus European rabbit PKR (ePKR).
- Utilized luciferase-based promoter assays to analyze NF-κB pathway activation.
- Assessed NF-κB target gene induction (TNFα, IL-6) in transfected and infected cells.
Main Results:
- MYXV M156 inhibited bPKR more effectively than ePKR.
- Moderate ePKR inhibition by M156 resulted in significantly higher NF-κB reporter activity compared to bPKR inhibition.
- Stronger induction of NF-κB target genes (TNFα, IL-6) was observed in ePKR-expressing cells.
Conclusions:
- MYXV M156 is maladapted for inhibiting ePKR, leading to incomplete translation suppression.
- This intermediate inhibition incompletely blocks NF-κB signaling, potentially by depleting IκBα.
- The resulting functional NF-κB activation may contribute to MYXV's increased virulence in European rabbits.
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