Inflammatory responses to pneumovirus infection in IFN-alpha beta R gene-deleted mice

Tara L Garvey1, Kimberly D Dyer, John A Ellis

  • 1Laboratory of Allergic Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892, USA.

Insights

Pneumonia virus of mice (PVM) infection in mice lacking interferon-alpha/beta receptor (IFN-alphabetaR-/-) leads to altered inflammatory responses and prolonged survival. This highlights the critical role of IFN-alphabetaR signaling in PVM pathogenesis.

Area of Science:

  • Virology
  • Immunology
  • Respiratory Medicine

Background:

  • Pneumonia virus of mice (PVM) is a rodent pathogen that models human respiratory syncytial virus (RSV) infection.
  • Interferon-alpha/beta receptor (IFN-alphabetaR) signaling is crucial for antiviral responses.

Purpose of the Study:

  • To investigate the role of IFN-alphabetaR signaling in PVM infection.
  • To identify differentially expressed genes and inflammatory mediators in the absence of IFN-alphabetaR signaling during PVM infection.

Main Methods:

  • Comparison of PVM-infected wild-type and IFN-alphabetaR-/- mice.
  • Analysis of gene expression in lung tissue.
  • Assessment of bronchoalveolar lavage fluid cell composition.
  • Evaluation of lung pathology and animal survival.

Main Results:

  • PVM infection in IFN-alphabetaR-/- mice showed altered expression of chemokines (e.g., eotaxin-2, CCL17) and RNases (mEar11) compared to wild-type.
  • Lung pathology in IFN-alphabetaR-/- mice featured distinct inflammatory foci and reduced leukocyte infiltration, with altered immune cell percentages.
  • IFN-alphabetaR-/- mice exhibited prolonged survival despite higher virus titers.

Conclusions:

  • IFN-alphabetaR signaling significantly influences the host inflammatory response and pathology during PVM infection.
  • Novel transcripts differentially expressed in response to IFN-alphabetaR signaling were identified.
  • These findings elucidate the interplay between interferon signaling and antiviral inflammation in vivo.

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