The Potential for Respiratory Droplet–Transmissible A/H5N1 Influenza Virus to Evolve in a Mammalian Host
- Colin A. Russell
- Judith M. Fonville
- ABAndré EX Brown
- David F. Burke
- David L. Smith
- David L. Smith
- Sarah L. James
- Sander Herfst
- Sander van Boheemen
- Martin Linster
- Eefje J. A. Schrauwen
- Leah C. Katzelnick
- Ana Mosterín
- Thijs Kuiken
- Eileen A. Maher
- Gabriele Neumann
- Albert D. M. E. Osterhaus
- Yoshihiro Kawaoka
- Ron A. M. Fouchier
- Derek J. Smith
- Derek J. Smith
- ABAndré EX Brown
- ABAndré EX Brown
- ABAndré EX Brown
Science · 2012 · American Association for the Advancement of Science
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Abstract
Avian A/H5N1 influenza viruses pose a pandemic threat. As few as five amino acid substitutions, or four with reassortment, might be sufficient for mammal-to-mammal transmission through respiratory droplets. From surveillance data, we found that two of these substitutions are common in A/H5N1 viruses, and thus, some viruses might require only three additional substitutions to become transmissible via respiratory droplets between mammals. We used a mathematical model of within-host virus evolution to study factors that could increase and decrease the probability of the remaining substitutions evolving after the virus has infected a mammalian host. These factors, combined with the presence of some of these substitutions in circulating strains, make a virus evolving in nature a potentially serious threat. These results highlight critical areas in which more data are needed for assessing, and potentially averting, this threat.
