MERS-CoV 4b protein interferes with the NF-κB-dependent innate immune response during infection

Javier Canton1, Anthony R Fehr2, Raúl Fernandez-Delgado1

  • 1Department of Molecular and Cell Biology, Centro Nacional de Biotecnología (CNB-CSIC), Madrid, Spain.

Plos Pathogens
|January 26, 2018
PubMed

Insights

Middle East respiratory syndrome coronavirus (MERS-CoV) accessory protein 4b prevents innate immune responses. MERS-CoV 4b nuclear import blocks NF-κB activation, inhibiting antiviral cytokine production during infection.

Area of Science:

  • Virology
  • Immunology
  • Molecular Biology

Background:

  • Middle East respiratory syndrome coronavirus (MERS-CoV) causes severe pneumonia with high mortality.
  • MERS-CoV accessory proteins can disrupt innate antiviral signaling pathways.
  • The role of MERS-CoV accessory protein 4b in innate immune suppression during infection is not well understood.

Purpose of the Study:

  • To investigate the function of MERS-CoV accessory protein 4b in modulating the innate antiviral response.
  • To elucidate the mechanism by which MERS-CoV 4b interferes with NF-κB signaling.

Main Methods:

  • Studied MERS-CoV 4b localization and its effect on NF-κB translocation in infected cells.
  • Utilized wild-type and mutant MERS-CoV viruses lacking nuclear localization signals (NLS).
  • Investigated the interaction between MERS-CoV 4b, karyopherin-α proteins, and the NF-κB complex.

Main Results:

  • MERS-CoV 4b requires nuclear localization to suppress NF-κB-dependent responses.
  • Absence or cytoplasmic localization of 4b leads to NF-κB nuclear translocation and pro-inflammatory cytokine expression.
  • MERS-CoV 4b binds to karyopherin-α4 (KPNA4) in an NLS-dependent manner, inhibiting NF-κB-p65 subunit translocation.

Conclusions:

  • MERS-CoV 4b actively suppresses the innate immune response by blocking NF-κB signaling.
  • Nuclear import of MERS-CoV 4b via KPNA4 is crucial for inhibiting NF-κB translocation.
  • This mechanism highlights a novel viral strategy to evade host antiviral defenses.

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