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Published on: January 7, 2013
Cardiovirus-Mediated PKR inhibition results from nucleocytoplasmic trafficking disruption
Romane Milcamps1, Belén Lizcano-Perret1, Fanny Wavreil1
1Université catholique de Louvain, de Duve Institute, Brussels, Belgium.
Abstract:
Eukaryotic translation initiation factor 2 alpha kinase 2 (EIF2AK2), known as PKR, is a key antiviral kinase activated by double-stranded RNA (dsRNA) typically produced during viral replication. Upon activation, PKR phosphorylates eIF2α, leading to the inhibition of translation and viral replication. However, many viruses have evolved mechanisms to counteract PKR activity. In Cardioviruses, the leader protein (L), a short peptide cleaved from the N-terminus of the viral polyprotein, not only inhibits PKR but also blocks interferon production and disrupts nucleocytoplasmic trafficking (NCT). L disrupts NCT by recruiting host RSK kinases to the nuclear pore complex (NPC), where RSK phosphorylates FG-nucleoporins, thereby impairing NCT. L mutations that affect NCT disruption also impact PKR inhibition, suggesting a mechanistic link between NCT and PKR activity. Recombinant TMEV and EMCV viruses designed to disrupt NCT through different mechanisms exhibited some extent of PKR inhibition, supporting the link between NCT disruption and PKR inhibition. Immunostaining and live-cell imaging revealed that, during mitosis and after L-induced NCT disruption, a fraction of PKR maps to the nucleoli, where PKR remains inactive despite its recruitment by dsRNA-like structures. This suggests that nucleolar sequestration contributes to PKR inhibition. Additionally, L-mediated NCT disruption leads to the release of nuclear RNA-binding proteins (nRBPs) into the cytosol, which may bind or modify viral dsRNA, further preventing PKR activation. Collectively, these results highlight nucleocytoplasmic trafficking as a critical regulatory mechanism governing PKR activation. Thus, beyond the specific action of cardiovirus L protein, our study reveals that interference with host nucleocytoplasmic transport can significantly impact the subcellular localization and functional regulation of immune effectors such as PKR.
Insights
Cardiovirus leader protein inhibits the antiviral kinase PKR by disrupting nucleocytoplasmic trafficking, leading to PKR sequestration in nucleoli and preventing viral replication.
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Eukaryotic translation initiation factor 2 alpha kinase 2 (PKR) is a key antiviral kinase activated by double-stranded RNA (dsRNA).
- Viruses, including Cardioviruses, have evolved mechanisms to evade PKR-mediated antiviral responses.
- Cardiovirus leader protein (L) inhibits PKR, blocks interferon production, and disrupts nucleocytoplasmic trafficking (NCT).
Purpose of the Study:
- To investigate the mechanistic link between Cardiovirus L-mediated NCT disruption and PKR inhibition.
- To explore the role of nucleocytoplasmic transport in regulating PKR activity.
- To understand how viruses counteract host antiviral defenses.
Main Methods:
- Utilized recombinant Cardioviruses (TMEV, EMCV) with engineered NCT disruption mechanisms.
- Employed immunostaining and live-cell imaging to track PKR localization.
- Investigated the impact of NCT disruption on nuclear RNA-binding proteins (nRBPs).
Main Results:
- Cardiovirus L protein inhibits PKR activity by disrupting NCT, with mutations affecting NCT also impacting PKR inhibition.
- PKR is sequestered in nucleoli during mitosis and after L-induced NCT disruption, remaining inactive.
- L-mediated NCT disruption releases nRBPs into the cytosol, potentially interfering with dsRNA-PKR interaction.
Conclusions:
- Nucleocytoplasmic trafficking is a critical regulatory mechanism for PKR activation.
- Interference with host NCT can significantly impact the localization and function of immune effectors like PKR.
- Understanding NCT regulation of PKR provides insights into viral evasion strategies and host antiviral defense.
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