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Insight into structural diversity of influenza virus haemagglutinin

Authors
Cho, Ki JoonLee, Ji-HyeHong, Kwang W.Kim, Se-HoPark, YihoLee, Jun YoungKang, SeokhaKim, SellaYang, Ji HoonKim, Eui-KiSeok, Jong HyeonUnzai, SatoruPark, Sam YongSaelens, XavierKim, Chul-JoongLee, Joo-YeonKang, ChunOh, Hee-BokChung, Mi SookKim, Kyung Hyun
Issue Date
Aug-2013
Publisher
MICROBIOLOGY SOC
Citation
JOURNAL OF GENERAL VIROLOGY, v.94, pp.1712 - 1722
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF GENERAL VIROLOGY
Volume
94
Start Page
1712
End Page
1722
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/102502
DOI
10.1099/vir.0.051136-0
ISSN
0022-1317
Abstract
Influenza virus infects host cells through membrane fusion, a process mediated by the low pH-induced conformational change of the viral surface glycoprotein haemagglutinin (HA). We determined the structures and biochemical properties of the HA proteins from A/Korea/01/2009 (KR01), a 2009 pandemic strain, and A/Thailand/CU44/2006 (CU44), a seasonal strain. The crystal structure of KR01 HA revealed a V-shaped head-to-head arrangement, which is not seen in other HA proteins including CU44 HA. We isolated a broadly neutralizing H1-specific monoclonal antibody GC0757. The KR01 HA-Fab0757 complex structure also exhibited a head-to-head arrangement of HA. Both native and Fab complex structures reveal a different spatial orientation of HA1 relative to HA2, indicating that HA is flexible and dynamic at neutral pH. Further, the KR01 HA exhibited significantly lower protein stability and increased susceptibility to proteolytic cleavage compared with other HAs. Our structures provide important insights into the conformational flexibility of HA.
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