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Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Lymphocytic Choriomeningitis Virus Differentially Affects the Virus-Induced Type I Interferon Response and
Christelle Pythoud1, Sylvia Rothenberger1, Luis Martínez-Sobrido2
1Institute of Microbiology, University Hospital Center and University of Lausanne, Lausanne, Switzerland.
Unlabelled:
Arenaviruses are important emerging human pathogens maintained by noncytolytic persistent infection in their rodent reservoir hosts. Despite high levels of viral replication, persistently infected carrier hosts show only mildly elevated levels of type I interferon (IFN-I). Accordingly, the arenavirus nucleoprotein (NP) has been identified as a potent IFN-I antagonist capable of blocking activation of interferon regulatory factor 3 (IRF3) via the retinoic acid inducible gene (RIG)-I/mitochondrial antiviral signaling (MAVS) pathway. Another important mechanism of host innate antiviral defense is represented by virus-induced mitochondrial apoptosis via RIG-I/MAVS and IRF3. In the present study, we investigated the ability of the prototypic Old World arenavirus lymphocytic choriomeningitis virus (LCMV) to interfere with RIG-I/MAVS-dependent apoptosis. We found that LCMV does not induce apoptosis at any time during infection. While LCMV efficiently blocked induction of IFN-I via RIG-I/MAVS in response to superinfection with cytopathic RNA viruses, virus-induced mitochondrial apoptosis remained fully active in LCMV-infected cells. Notably, in LCMV-infected cells, RIG-I was dispensable for virus-induced apoptosis via MAVS. Our study reveals that LCMV infection efficiently suppresses induction of IFN-I but does not interfere with the cell's ability to undergo virus-induced mitochondrial apoptosis as a strategy of innate antiviral defense. The RIG-I independence of mitochondrial apoptosis in LCMV-infected cells provides the first evidence that arenaviruses can reshape apoptotic signaling according to their needs.
Importance:
Arenaviruses are important emerging human pathogens that are maintained in their rodent hosts by persistent infection. Persistent virus is able to subvert the cellular interferon response, a powerful branch of the innate antiviral defense. Here, we investigated the ability of the prototypic arenavirus lymphocytic choriomeningitis virus (LCMV) to interfere with the induction of programmed cell death, or apoptosis, in response to superinfection with cytopathic RNA viruses. Upon viral challenge, persistent LCMV efficiently blocked induction of interferons, whereas virus-induced apoptosis remained fully active in LCMV-infected cells. Our studies reveal that the persistent virus is able to reshape innate apoptotic signaling in order to prevent interferon production while maintaining programmed cell death as a strategy for innate defense. The differential effect of persistent virus on the interferon response versus its effect on apoptosis appears as a subtle strategy to guarantee sufficiently high viral loads for efficient transmission while maintaining apoptosis as a mechanism of defense.
Insights
Arenaviruses like LCMV block interferon production but permit apoptosis, a key innate defense. This selective immune evasion allows high viral loads for transmission while preserving cell death mechanisms.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Arenaviruses are emerging pathogens causing persistent infections in rodents.
- Persistent infections subvert the host's type I interferon (IFN-I) response.
- The arenavirus nucleoprotein (NP) antagonizes IFN-I induction via the RIG-I/MAVS pathway.
Purpose of the Study:
- To investigate how lymphocytic choriomeningitis virus (LCMV) affects RIG-I/MAVS-dependent apoptosis.
- To understand LCMV's strategy in modulating innate antiviral defense mechanisms.
Main Methods:
- Infection of cells with LCMV.
- Analysis of IFN-I induction and apoptosis.
- Investigation of the role of RIG-I and MAVS in apoptosis signaling.
Main Results:
- LCMV infection suppressed IFN-I induction but did not inhibit virus-induced apoptosis.
- Virus-induced apoptosis remained active in LCMV-infected cells.
- RIG-I was dispensable for MAVS-dependent apoptosis in LCMV-infected cells.
Conclusions:
- LCMV reshapes innate immune signaling by suppressing IFN-I while allowing apoptosis.
- This strategy may ensure viral transmission by maintaining high viral loads.
- Arenaviruses can differentially modulate apoptotic signaling pathways.
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