4.6 Article

Effect of 1918 PB1-F2 Expression on Influenza A Virus Infection Kinetics

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PLOS COMPUTATIONAL BIOLOGY
卷 7, 期 2, 页码 -

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PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pcbi.1001081

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资金

  1. National Science Foundation [0354259]
  2. National Institute of Allergy and Infectious Diseases [N01-AI-50020]
  3. University of Utah
  4. James S. McDonnell Foundation [AI66349]
  5. U.S. Department of Energy
  6. NIH [N01-AI-50020, RR06555-19, AI28433-20]
  7. Division Of Mathematical Sciences
  8. Direct For Mathematical & Physical Scien [0354259] Funding Source: National Science Foundation

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Relatively little is known about the viral factors contributing to the lethality of the 1918 pandemic, although its unparalleled virulence was likely due in part to the newly discovered PB1-F2 protein. This protein, while unnecessary for replication, increases apoptosis in monocytes, alters viral polymerase activity in vitro, enhances inflammation and increases secondary pneumonia in vivo. However, the effects the PB1-F2 protein have in vivo remain unclear. To address the mechanisms involved, we intranasally infected groups of mice with either influenza A virus PR8 or a genetically engineered virus that expresses the 1918 PB1-F2 protein on a PR8 background, PR8-PB1-F2(1918). Mice inoculated with PR8 had viral concentrations peaking at 72 hours, while those infected with PR8-PB1-F2(1918) reached peak concentrations earlier, 48 hours. Mice given PR8-PB1-F2(1918) also showed a faster decline in viral loads. We fit a mathematical model to these data to estimate parameter values. The model supports a higher viral production rate per cell and a higher infected cell death rate with the PR8-PB1-F2(1918) virus. We discuss the implications these mechanisms have during an infection with a virus expressing a virulent PB1-F2 on the possibility of a pandemic and on the importance of antiviral treatments.

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