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Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Copy-back viral genomes induce a cellular stress response that interferes with viral protein expression without
Abstract:
Antiviral responses are often accompanied by translation inhibition and formation of stress granules (SG) in infected cells. However, the triggers for these processes and their role during infection remain subjects of active investigation. Copy-back viral genomes (cbVGs) are the primary inducers of the Mitochondrial Antiviral Signaling (MAVS) pathway and antiviral immunity during Sendai Virus (SeV) and Respiratory Syncytial virus (RSV) infections. The relationship between cbVGs and cellular stress during viral infections is unknown. Here we show that SG form during infections containing high levels of cbVGs, and not during infections with low levels of cbVGs. Moreover, using RNA fluorescent in situ hybridization to differentiate accumulation of standard viral genomes from cbVGs at a single-cell level during infection, we show that SG form exclusively in cells that accumulate high levels of cbVGs. PKR activation is increased during high cbVG infections and, as expected, PKR is necessary to induce virus-induced SG. However, SG form independent of MAVS signaling, demonstrating that cbVGs induce antiviral immunity and SG formation through two independent mechanisms. Furthermore, we show that translation inhibition and SG formation do not affect the overall expression of interferon and interferon stimulated genes during infection, making the stress response dispensable for antiviral immunity. Using live-cell imaging, we show that SG formation is highly dynamic and correlates with a drastic reduction of viral protein expression even in cells infected for several days. Through analysis of active protein translation at a single cell level, we show that infected cells that form SG show inhibition of protein translation. Together, our data reveal a new cbVG-driven mechanism of viral interference where cbVGs induce PKR-mediated translation inhibition and SG formation leading to a reduction in viral protein expression without altering overall antiviral immunity.
Insights
Copy-back viral genomes (cbVGs) trigger stress granule (SG) formation and translation inhibition via PKR, reducing viral protein expression independently of MAVS signaling. This stress response is dispensable for antiviral immunity during viral infections.
Area of Science:
- Virology
- Cellular Biology
- Immunology
Background:
- Antiviral responses often involve translation inhibition and stress granule (SG) formation.
- The triggers and roles of these cellular responses during viral infections are not fully understood.
- Copy-back viral genomes (cbVGs) are key inducers of antiviral immunity via the MAVS pathway during Sendai Virus (SeV) and Respiratory Syncytial Virus (RSV) infections.
Approach:
- Investigated the relationship between cbVGs and cellular stress responses.
- Utilized RNA fluorescent in situ hybridization to distinguish cbVGs from standard viral genomes at a single-cell level.
- Examined PKR activation and its necessity for SG formation.
- Assessed the impact of SG formation and translation inhibition on interferon-stimulated gene expression.
- Employed live-cell imaging to observe SG dynamics and viral protein expression.
- Analyzed active protein translation in infected cells forming SGs.
Key Points:
- Stress granules (SG) form specifically in cells accumulating high levels of copy-back viral genomes (cbVGs) during infection.
- PKR activation is essential for cbVG-induced SG formation, which occurs independently of MAVS signaling.
- SG formation and translation inhibition do not impede the expression of interferon and interferon-stimulated genes, indicating dispensability for overall antiviral immunity.
- SG formation correlates with a significant reduction in viral protein expression, even in cells infected long-term.
Conclusions:
- Copy-back viral genomes (cbVGs) induce a PKR-mediated mechanism of viral interference.
- This mechanism involves translation inhibition and stress granule (SG) formation, leading to decreased viral protein production.
- The cbVG-driven stress response acts as a viral interference strategy, reducing viral protein expression without compromising the host's general antiviral immunity.
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