The host transcriptional response to superinfection by influenza A virus and Streptococcus pneumoniae

Ofir Cohn1, Gal Yankovitz1, Michal Mandelboim2,3

  • 1The Shmunis School of Biomedicine and Cancer Research, George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, Israel.

Msystems
|March 6, 2024
PubMed

Insights

Superinfection with bacteria after influenza A virus (IAV) alters host resistance. Interferon signaling is repressed, while fatty acid metabolism is induced, offering new therapeutic targets.

Area of Science:

  • Immunology
  • Microbiology
  • Genomics

Background:

  • Secondary bacterial infections, particularly Streptococcus pneumoniae (SP), significantly increase mortality during influenza A virus (IAV) outbreaks.
  • IAV-IAV-SP superinfections lead to excessive morbidity and mortality, often due to rapid bacterial proliferation in the compromised respiratory tract.

Purpose of the Study:

  • To investigate the longitudinal gene expression changes in murine lungs during IAV-SP superinfection.
  • To identify superinfection-specific alterations in the host's transcriptional program and resistance state.
  • To uncover novel therapeutic targets for mitigating superinfection-associated pathology.

Main Methods:

  • Longitudinal bulk gene expression analysis in murine lungs.
  • Comparison of superinfection (IAV followed by SP) with single infections (IAV-only, SP-only) and controls.
  • Analysis of transcriptional responses in the context of a defined host resistance spectrum.

Main Results:

  • Superinfected mice showed rapid gene expression changes within 12 hours of secondary infection.
  • A significant reprogramming of the host's resistance state was observed, with repressed interferon signaling and induced fatty acid metabolism.
  • Genes involved in cell proliferation and immune response were upregulated, while those related to vascular processes were downregulated.

Conclusions:

  • Superinfection triggers a distinct tissue-level remodeling of host defense mechanisms.
  • Reprogramming of interferon signaling and fatty acid metabolism represents a key adaptation during superinfection.
  • These reprogrammed pathways offer promising targets for therapeutic interventions against influenza-bacterial superinfections.

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