Subcellular Localization of MxB Determines Its Antiviral Potential against Influenza A Virus

Fiona Steiner1, Jovan Pavlovic2

  • 1Institute of Medical Virology, University of Zurich, Zürich, Switzerland.

Journal of Virology
|September 10, 2020
PubMed

Insights

Human MxB protein gains antiviral activity against influenza A virus when relocated to the nucleus or cytoplasm. This shows that Mx protein specificity is determined by its cellular location, not just its intrinsic function.

Area of Science:

  • Virology
  • Immunology
  • Cell Biology

Background:

  • Mx proteins are interferon-induced antiviral effectors with varied localization and viral targets.
  • Human MxA inhibits diverse viruses in the cytoplasm, while MxB targets nuclear import of HIV and herpesviruses at the nuclear membrane.

Purpose of the Study:

  • To investigate if MxB's antiviral specificity is dictated by its subcellular localization.
  • To determine the role of MxB's cellular site in its ability to inhibit influenza A virus (IAV).

Main Methods:

  • Redirecting MxB to the nucleus or cytoplasm using N-terminal modifications or MxA N-terminus exchange.
  • Assessing IAV resistance in cells expressing MxB variants.
  • Performing co-immunoprecipitation (co-IP) to detect MxB-IAV nucleoprotein (NP) interactions.

Main Results:

  • Ectopic expression of MxB variants in the nucleus or cytoplasm conferred resistance to IAV.
  • IAV inhibition by MxB was dependent on its accumulation site within the cell.
  • MxB was shown to physically interact with the IAV nucleoprotein (NP).

Conclusions:

  • MxB's antiviral activity against IAV is critically dependent on its subcellular localization.
  • Mx proteins may share common antiviral mechanisms, with specificity largely determined by localization.
  • Subcellular localization is a key factor in defining the distinct antiviral specificities of mammalian Mx proteins.