Targeting Importin-α7 as a Therapeutic Approach against Pandemic Influenza Viruses

Journal of Virology
|June 19, 2015
PubMed

Insights

Targeting cellular factor importin-α7 against influenza viruses surprisingly led to rapid viral escape and increased virulence in mice. This highlights the need for multitarget antiviral strategies to prevent drug resistance.

Area of Science:

  • Virology
  • Immunology
  • Drug Discovery

Background:

  • Viral drug resistance is a major concern, with strategies often focusing on viral targets.
  • Cellular proteins are considered less prone to resistance when targeted by antiviral compounds.
  • Importin-α7 is a critical cellular factor for influenza virus replication.

Purpose of the Study:

  • To investigate the feasibility of targeting importin-α7, a cellular factor, as an antiviral strategy against pandemic influenza viruses.
  • To challenge the hypothesis that targeting cellular proteins reduces viral drug resistance.
  • To analyze the potential for viral escape and increased virulence when targeting host factors.

Main Methods:

  • In vivo study using importin-α7 knockout (importin-α7⁻/⁻) mice and wild-type mice.
  • Serial lung-to-lung passages of influenza virus in importin-α7⁻/⁻ mice.
  • Genetic analysis of viral mutations mediating escape from importin-α7 dependence.

Main Results:

  • Influenza virus rapidly acquired resistance to importin-α7 dependence in importin-α7⁻/⁻ mice within five passages.
  • Viral escape was mediated by mutations in the viral ribonucleoprotein complex and surface glycoproteins.
  • The importin-α7-adapted strain exhibited increased virulence in both importin-α7⁻/⁻ and wild-type mice compared to the parental strain.

Conclusions:

  • Targeting host cellular factors like importin-α7 can still lead to rapid viral drug resistance and the emergence of more virulent strains.
  • In vivo studies challenge the in vitro assumption that cellular targets are inherently more resistant to viral escape.
  • Multitarget therapeutic strategies, combining agents against viral and cellular factors, are crucial to mitigate antiviral resistance and potential virulence escalation.