z-logo
open-access-imgOpen Access
Avian-Type Receptor-Binding Ability Can Increase Influenza Virus Pathogenicity in Macaques
Author(s) -
Tokiko Watanabe,
Kyoko Shinya,
Shinji Watanabe,
Masaki Imai,
Masato Hatta,
Chengjun Li,
Ben F. Wolter,
Gabriele Neumann,
Anthony Hanson,
Makoto Ozawa,
S. Yamada,
Hirotaka Imai,
Saori Sakabe,
Ryo Takano,
Kiyoko IwatsukiHorimoto,
Maki Kiso,
Mutsumi Ito,
Satoshi Fukuyama,
Eiryo Kawakami,
Takeo Gorai,
Heather A. Simmons,
Daniel I. Schenkman,
Kevin Brunner,
Saverio Capuano,
Jason T. Weinfurter,
Wataru Nishio,
Yoshimasa Maniwa,
Tatsuhiko Igarashi,
Akiko Makino,
Emily A. Travanty,
Jieru Wang,
Anette Kilander,
Susanne Dudman,
M. Suresh,
Robert J. Mason,
Olav Hungnes,
Thomas C. Friedrich,
Yoshihiro Kawaoka
Publication year - 2011
Publication title -
journal of virology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.617
H-Index - 292
eISSN - 1070-6321
pISSN - 0022-538X
DOI - 10.1128/jvi.00859-11
Subject(s) - biology , virology , receptor , virus , influenza a virus subtype h5n1 , hemagglutinin (influenza) , influenza a virus , h5n1 genetic structure , microbiology and biotechnology , genetics , covid-19 , disease , pathology , medicine , infectious disease (medical specialty)
The first influenza pandemic of the 21st century was caused by novel H1N1 viruses that emerged in early 2009. An Asp-to-Gly change at position 222 of the receptor-binding protein hemagglutinin (HA) correlates with more-severe infections in humans. The amino acid at position 222 of HA contributes to receptor-binding specificity with Asp (typically found in human influenza viruses) and Gly (typically found in avian and classic H1N1 swine influenza viruses), conferring binding to human- and avian-type receptors, respectively. Here, we asked whether binding to avian-type receptors enhances influenza virus pathogenicity. We tested two 2009 pandemic H1N1 viruses possessing HA-222G (isolated from severe cases) and two viruses that possessed HA-222D. In glycan arrays, viruses possessing HA-222D preferentially bound to human-type receptors, while those encoding HA-222G bound to both avian- and human-type receptors. This difference in receptor binding correlated with efficient infection of viruses possessing HA-222G, compared to those possessing HA-222D, in human lung tissue, including alveolar type II pneumocytes, which express avian-type receptors. In a nonhuman primate model, infection with one of the viruses possessing HA-222G caused lung damage more severe than did infection with a virus encoding HA-222D, although these pathological differences were not observed for the other virus pair with either HA-222G or HA-222D. These data demonstrate that the acquisition of avian-type receptor-binding specificity may result in more-efficient infection of human alveolar type II pneumocytes and thus more-severe lung damage. Collectively, these findings suggest a new mechanism by which influenza viruses may become more pathogenic in mammals, including humans.

The content you want is available to Zendy users.

Already have an account? Click here to sign in.
Having issues? You can contact us here
Accelerating Research

Address

John Eccles House
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom