4.6 Article

Transcriptome profiling and protease inhibition experiments identify proteases that activate H3N2 influenza A and influenza B viruses in murine airways

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 295, 期 33, 页码 11388-11407

出版社

ELSEVIER
DOI: 10.1074/jbc.RA120.012635

关键词

infectious disease; serine protease; trypsin; virus; mouse; airway proteases; hemagglutinin; influenza virus; cleavage; protease gene expression; TMPRSS2; TMPRSS4; hepsin; prostasin; trypsin-like protease; host-pathogen interactions; mouse lung proteases

资金

  1. Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) through the collaborative research center [SFB 1021]
  2. Von-Behring Rontgen Stiftung
  3. LOEWE Center DRUID
  4. Helmholtz-Association (Program Infection and Immunity)
  5. German Ministry for Education and Research (BMBF)

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Cleavage of influenza virus hemagglutinin (HA) by host proteases is essential for virus infectivity. HA of most influenza A and B (IAV/IBV) viruses is cleaved at a monobasic motif by trypsin-like proteases. Previous studies have reported that transmembrane serine protease 2 (TMPRSS2) is essential for activation of H7N9 and H1N1pdm IAV in mice but that H3N2 IAV and IBV activation is independent of TMPRSS2 and carried out by as-yet-undetermined protease(s). Here, to identify additional H3 IAV- and IBV-activating proteases, we used RNA-Seq to investigate the protease repertoire of murine lower airway tissues, primary type II alveolar epithelial cells (AECIIs), and the mouse lung cell line MLE-15. Among 13 candidates identified, TMPRSS4, TMPRSS13, hepsin, and prostasin activated H3 and IBV HAin vitro. IBV activation and replication was reduced in AECIIs fromTmprss2/Tmprss4-deficient mice compared with WT or Tmprss2-deficient mice, indicating that murine TMPRSS4 is involved in IBV activation. Multicycle replication of H3N2 IAV and IBV in AECIIs ofTmprss2/Tmprss4-deficient mice varied in sensitivity to protease inhibitors, indicating that different, but overlapping, sets of murine proteases facilitate H3 and IBV HA cleavages. Interestingly, human hepsin and prostasin orthologs did not activate H3, but they did activate IBV HAin vitro. Our results indicate that TMPRSS4 is an IBV-activating protease in murine AECIIs and suggest that TMPRSS13, hepsin, and prostasin cleave H3 and IBV HA in mice. They further show that hepsin and prostasin orthologs might contribute to the differences observed in TMPRSS2-independent activation of H3 in murine and human airways.

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