
John Huddleston
PhD Student
University of Washington Continue Reading John Huddleston
Age-dependent heterogeneity in the antigenic effects of mutations to influenza hemagglutinin.
Human influenza virus evolves to escape neutralization by polyclonal antibodies. However, we have a limited understanding of how the antigenic effects of viral mutations vary across the human population and how this heterogeneity affects virus evolution. Here, we use deep mutational scanning to map how mutations to the hemagglutinin (HA) proteins of two H3N2 strains, A/Hong Kong/45/2019 and A/Perth/16/2009, affect neutralization by serum from individuals of a variety of ages. The effects of HA mutations on serum neutralization differ across age groups in ways that can be partially rationalized in terms of exposure histories. Mutations that were fixed in influenza variants after 2020 cause greater escape from sera from younger individuals compared with adults. Overall, these results demonstrate that influenza faces distinct antigenic selection regimes from different age groups and suggest approaches to understand how this heterogeneous selection shapes viral evolution.
Cell host & microbe
Welsh FC, Eguia RT, Lee JM, Haddox HK, Galloway J, Van Vinh Chau N, Loes AN, Huddleston J, Yu TC, Quynh Le M, Nhat NTD, Thi Le Thanh N, Greninger AL, Chu HY, Englund JA, Bedford T, Matsen FA 4th., Boni MF, Bloom JD. (2024). Age-dependent heterogeneity in the antigenic effects of mutations to influenza hemagglutinin. Cell host & microbe

PhD Student
University of Washington Continue Reading John Huddleston

Associate Professor of Biology
Penn State University Continue Reading Maciej Boni

Associate Member
Fred Hutchinson Cancer Research Center Continue Reading Trevor Bedford