Human parainfluenza virus evolution during lung infection of immunocompromised individuals promotes viral persistence

Alexander L Greninger1,2, Ksenia Rybkina3,4, Michelle J Lin1

  • 1Department of Laboratory Medicine and Pathology, University of Washington, Seattle, Washington, USA.

Insights

Long-term respiratory virus infections in immunocompromised individuals can drive viral evolution. Mutations in human parainfluenza virus 3 (HPIV3) enhanced viral entry and persistence, not antibody escape.

Area of Science:

  • Virology
  • Immunocompromised Host Research
  • Viral Evolution

Background:

  • Respiratory viruses can evolve under host or drug selective pressures.
  • Long-term infections in immunocompromised individuals may drive viral evolution and variant development.

Purpose of the Study:

  • To investigate intrahost evolution of human parainfluenza virus 3 (HPIV3) in immunocompromised individuals.
  • To identify mutations favoring viral entry and persistence.

Main Methods:

  • Profiling longitudinal HPIV3 infections from two immunocompromised individuals with long-term infections (278 and 98 days).
  • Analyzing mutations in the hemagglutinin-neuraminidase (HN) protein, including its receptor binding site.

Main Results:

  • Mutations in HPIV3's HN protein favored viral entry and persistence.
  • A key mutation in the HN receptor binding site was linked to sialic acid-cleaving drug exposure.
  • HN adaptation enhanced sialic acid avidity and in vitro fusion activity, but not antibody escape.

Conclusions:

  • Long-term HPIV3 infections can lead to mutations promoting viral persistence.
  • Host-directed therapeutics might inadvertently support the evolution of viruses with altered biophysical properties for in vivo persistence.

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