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Enhanced virulence of influenza A viruses with the haemagglutinin of the 1918 pandemic virus.
Kobasa D, Takada A, Shinya K, Hatta M, Halfmann P, Theriault S, Suzuki H, Nishimura H, Mitamura K, Sugaya N, Usui T, Murata T, Maeda Y, Watanabe S, Suresh M, Suzuki T, Suzuki Y, Feldmann H, Kawaoka Y. Kobasa D, et al. Among authors: suzuki h, suzuki y, suzuki t. Nature. 2004 Oct 7;431(7009):703-7. doi: 10.1038/nature02951. Nature. 2004. PMID: 15470432
Imaging of influenza virus sialidase activity in living cells.
Kurebayashi Y, Takahashi T, Otsubo T, Ikeda K, Takahashi S, Takano M, Agarikuchi T, Sato T, Matsuda Y, Minami A, Kanazawa H, Uchida Y, Saito T, Kawaoka Y, Yamada T, Kawamori F, Thomson R, von Itzstein M, Suzuki T. Kurebayashi Y, et al. Among authors: suzuki t. Sci Rep. 2014 May 2;4:4877. doi: 10.1038/srep04877. Sci Rep. 2014. PMID: 24786761 Free PMC article.
Human trachea primary epithelial cells express both sialyl(alpha2-3)Gal receptor for human parainfluenza virus type 1 and avian influenza viruses, and sialyl(alpha2-6)Gal receptor for human influenza viruses.
Kogure T, Suzuki T, Takahashi T, Miyamoto D, Hidari KI, Guo CT, Ito T, Kawaoka Y, Suzuki Y. Kogure T, et al. Among authors: suzuki y, suzuki t. Glycoconj J. 2006 Feb;23(1-2):101-6. doi: 10.1007/s10719-006-5442-z. Glycoconj J. 2006. PMID: 16575527
In addition, the Siaalpha2-3Gal linkage was predominantly recognized by avian and horse influenza viruses, and human parainfluenza virus type 1 (hPIV-1), whereas the Siaalpha2-6Gal linkage was mainly recognized by human influenza viruses (Paulson JC in "The Receptors'' [Conn M Ed …
In addition, the Siaalpha2-3Gal linkage was predominantly recognized by avian and horse influenza viruses, and human parainfluenza virus typ …
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