Epithelial-to-mesenchymal transition and live cell extrusion contribute to measles virus release from human airway epithelia

  • Hippee C
  • Durnell L
  • Kaufman J
  • et al.
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Abstract

Measles virus (MeV) is an extremely contagious respiratory pathogen that continues to cause large, disruptive outbreaks each year. Here, we examine mechanisms of detachment of MeV-infected cells. MeV spreads cell-to-cell in human airway epithelial cells (HAE) to form groups of infected cells, termed “infectious centers”. We reported that infectious centers ultimately detach from HAE as a unit, carrying high titers of virus. Viral particles within cells may be more protected from environmental conditions, such as ultraviolet radiation and desiccation. We identified two host pathways, epithelial-to-mesenchymal transition and live cell extrusion, that contribute to infectious center detachment. Perturbing these pathways altered the kinetics of infectious center detachment. These pathways influence one another and contribute to epithelial wound healing, suggesting that infectious center detachment may be a usurped consequence of the host’s response to infection that benefits MeV by increasing its transmissibility between hosts.

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Hippee, C. E., Durnell, L. A., Kaufman, J. W., Murray, E., Singh, B. K., & Sinn, P. L. (2025). Epithelial-to-mesenchymal transition and live cell extrusion contribute to measles virus release from human airway epithelia. Journal of Virology, 99(2). https://doi.org/10.1128/jvi.01220-24

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