Avian and human receptor binding by hemagglutinins of influenza A viruses.

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Published in Glycoconj J on February 01, 2006

Authors

R J Russell1, D J Stevens, L F Haire, S J Gamblin, J J Skehel

Author Affiliations

1: MRC National Institute for Medical Research, The Ridgeway, Mill Hill, London NW7 1AA.

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Characterization of influenza virus RNA complete transcripts. Virology (1982) 2.31

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Studies of the binding properties of influenza hemagglutinin receptor-site mutants. Virology (1998) 1.95

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Host-mediated selection of influenza virus receptor variants. Sialic acid-alpha 2,6Gal-specific clones of A/duck/Ukraine/1/63 revert to sialic acid-alpha 2,3Gal-specific wild type in ovo. J Biol Chem (1985) 1.91

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Electron microscopy of the low pH structure of influenza virus haemagglutinin. EMBO J (1986) 1.87

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Mechanism of neutralization of influenza virus infectivity by antibodies. Virology (2002) 1.80

Amantadine selection of a mutant influenza virus containing an acid-stable hemagglutinin glycoprotein: evidence for virus-specific regulation of the pH of glycoprotein transport vesicles. Proc Natl Acad Sci U S A (1991) 1.79

Studies of influenza haemagglutinin-mediated membrane fusion. Virology (1986) 1.78

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Electron microscopy of antibody complexes of influenza virus haemagglutinin in the fusion pH conformation. EMBO J (1995) 1.74

Estimations of the molecular weight of the influenza virus genome. J Gen Virol (1971) 1.74

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Receptor-binding characteristics of monoclonal antibody-selected antigenic variants of influenza virus. J Virol (1987) 1.70

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Antigenic analyses of influenza virus haemagglutinins with different receptor-binding specificities. Virology (1984) 1.64

Nucleotide sequences at the terminal of La Crosse virus RNAs. Nucleic Acids Res (1980) 1.61

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