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18 results on '"McBride R"'

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1. Novel Receptor Specificity of Avian Gammacoronaviruses That Cause Enteritis

2. Evolution of the Hemagglutinin Protein of the New Pandemic H1N1 Influenza Virus: Maintaining Optimal Receptor Binding by Compensatory Substitutions

3. Novel Receptor Specificity of Avian Gammacoronaviruses That Cause Enteritis.

4. Phenotypic Effects of Substitutions within the Receptor Binding Site of Highly Pathogenic Avian Influenza H5N1 Virus Observed during Human Infection.

5. Enhanced Human-Type Receptor Binding by Ferret-Transmissible H5N1 with a K193T Mutation.

6. Unique Structural Features of Influenza Virus H15 Hemagglutinin.

7. Mutation of the Second Sialic Acid-Binding Site, Resulting in Reduced Neuraminidase Activity, Preceded the Emergence of H7N9 Influenza A Virus.

8. Feline Immunodeficiency Virus Cross-Species Transmission: Implications for Emergence of New Lentiviral Infections.

9. Potential for Low-Pathogenic Avian H7 Influenza A Viruses To Replicate and Cause Disease in a Mammalian Model.

10. Identification of Stabilizing Mutations in an H5 Hemagglutinin Influenza Virus Protein.

11. Evolution of puma lentivirus in bobcats (Lynx rufus) and mountain lions (Puma concolor) in North America.

12. Novel gammaherpesviruses in North American domestic cats, bobcats, and pumas: identification, prevalence, and risk factors.

13. Hemagglutinin receptor specificity and structural analyses of respiratory droplet-transmissible H5N1 viruses.

14. A unique and conserved neutralization epitope in H5N1 influenza viruses identified by an antibody against the A/Goose/Guangdong/1/96 hemagglutinin.

15. Influenza virus neuraminidases with reduced enzymatic activity that avidly bind sialic Acid receptors.

16. Functional balance of the hemagglutinin and neuraminidase activities accompanies the emergence of the 2009 H1N1 influenza pandemic.

17. Structural characterization of the hemagglutinin receptor specificity from the 2009 H1N1 influenza pandemic.

18. Structure, receptor binding, and antigenicity of influenza virus hemagglutinins from the 1957 H2N2 pandemic.

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