Lyssavirus P Protein Isoforms Diverge Significantly in Subcellular Interactions Underlying Mechanisms of Interferon

Aaron M Brice1,2, Ashley M Rozario3, Stephen M Rawlinson1,2

  • 1Viral Pathogenesis Laboratory, Department of Biochemistry and Molecular Biology, Bio21 Institute, The University of Melbourne, Melbourne, Victoria, Australia.

Journal of Virology
|October 12, 2022
PubMed

Insights

Lyssavirus P protein isoforms interact with microtubules, influencing pathogenesis and immune evasion strategies. These interactions vary across lyssavirus groups, highlighting diverse mechanisms for evading host defenses.

Area of Science:

  • Virology
  • Cell Biology
  • Immunology

Background:

  • Viruses hijack host cell transport, including microtubule (MT)-dependent pathways.
  • Lyssaviruses, like rabies virus, express P protein isoforms (e.g., P3) that interact with MTs.
  • P3 antagonizes host antiviral responses, such as interferon (IFN)-STAT1 signaling, and exhibits nucleocytoplasmic trafficking.

Purpose of the Study:

  • To investigate if other P protein isoforms associate with MTs.
  • To determine the relationship between P protein-MT interactions and pathogenesis.
  • To assess the conservation of P3-MT interactions and their association with immune evasion across different lyssaviruses.

Main Methods:

  • Super-resolution microscopy
  • Live-cell imaging
  • Immune signaling analyses

Main Results:

  • Multiple P protein isoforms associate with MTs, correlating with pathogenesis.
  • P3-MT association is conserved in phylogroup I lyssaviruses but not phylogroup II.
  • Intracellular localization of P3 varies, impacting STAT1 antagonism, with MT interaction crucial for phylogroup I viruses.

Conclusions:

  • Lyssavirus P protein isoforms exhibit diverse strategies for immune evasion, involving MT interactions and nucleocytoplasmic localization.
  • The conservation of P3-MT interactions differs between lyssavirus phylogroups.
  • Understanding these varied virus-host interactions is vital for developing broad-spectrum antiviral therapies against lyssaviruses.

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