Home LiteratureArticle Details
PMID: 15331693 Published · ppublish English Journal Article

Effect of the addition of oligosaccharides on the biological activities and antigenicity of influenza A/H3N2 virus hemagglutinin.

Journal of virology ·Vol. 78 ·No. 18 ·2004-09-00 ·Pages 9605-11

Abe Y, Takashita E, Sugawara K, Matsuzaki Y, Muraki Y, Hongo S

Abstract

Influenza A/H3N2 viruses have developed an increased number of glycosylation sites on the globular head of the hemagglutinin (HA) protein since their appearance in 1968. Here, the effect of addition of oligosaccharide chains to the HA of A/H3N2 viruses on its biological activities was investigated. We constructed seven mutant HAs of A/Aichi/2/68 virus with one to six glycosylation sites on the globular head, as found in natural isolates, by site-directed mutagenesis and analyzed their intracellular transport, receptor binding, and cell fusion activities. The glycosylation sites of mutant HAs correspond to representative A/H3N2 isolates (A/Victoria/3/75, A/Memphis/6/86, or A/Sydney/5/97). The results showed that all the mutant HAs were transported to the cell surface as efficiently as wild-type HA. Although mutant HAs containing three to six glycosylation sites decreased receptor binding activity, their cell fusion activity was not affected. The reactivity of mutant HAs having four to six glycosylation sites with human sera collected in 1976 was much lower than that of wild-type HA. Thus, the addition of new oligosaccharides to the globular head of the HA of A/H3N2 viruses may have provided the virus with an ability to evade antibody pressures by changing antigenicity without an unacceptable defect in biological activity.

MeSH Terms
Animals Antigenic Variation Antigens, Viral/chemistry,genetics Binding Sites/genetics Biological Transport, Active COS Cells Chick Embryo Glycosylation Hemagglutinin Glycoproteins, Influenza Virus/chemistry,genetics,immunology Humans Influenza A Virus, H3N2 Subtype Influenza A virus/chemistry,genetics,immunology,pathogenicity Models, Molecular Mutagenesis, Site-Directed Oligosaccharides/chemistry,immunology
Chemicals
Antigens, Viral Hemagglutinin Glycoproteins, Influenza Virus Oligosaccharides
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Abe Yasuhiro
Department of Bacteriology, Yamagata University School of Medicine, Iida-Nishi, Yamagata 990-9585, Japan. [email protected]
Takashita Emi
Sugawara Kanetsu
Matsuzaki Yoko
Muraki Yasushi
Hongo Seiji
References (27)
27 references, click to expand
  1. Receptor specificity of influenza A viruses correlates with the agglutination of erythrocytes from different animal species.
    Virology. 1997 Jan 20;227(2):493-9 PMID: 9018149
  2. Neuraminidase is essential for fowl plague virus hemagglutinin to show hemagglutinating activity.
    Virology. 1995 Sep 10;212(1):77-83 PMID: 7676651
  3. Oligosaccharides in the stem region maintain the influenza virus hemagglutinin in the metastable form required for fusion activity.
    J Virol. 1997 May;71(5):3719-25 PMID: 9094646
  4. Effects of glycosylation on the properties and functions of influenza virus hemagglutinin.
    J Infect Dis. 1997 Aug;176 Suppl 1:S24-8 PMID: 9240690
  5. Variation in response among individuals to antigenic sites on the HA protein of human influenza virus may be responsible for the emergence of drift strains in the human population.
    Virology. 2000 Aug 15;274(1):220-31 PMID: 10936103
  6. Change in receptor-binding specificity of recent human influenza A viruses (H3N2): a single amino acid change in hemagglutinin altered its recognition of sialyloligosaccharides.
    Virology. 2000 Dec 20;278(2):587-96 PMID: 11118381
  7. Antigenic structure of the haemagglutinin of human influenza A/H2N2 virus.
    J Gen Virol. 2001 Oct;82(Pt 10):2475-84 PMID: 11562540
  8. Effect of addition of new oligosaccharide chains to the globular head of influenza A/H2N2 virus haemagglutinin on the intracellular transport and biological activities of the molecule.
    J Gen Virol. 2002 May;83(Pt 5):1137-46 PMID: 11961269
  9. Tight binding of influenza virus hemagglutinin to its receptor interferes with fusion pore dilation.
    J Virol. 2002 Dec;76(24):12405-13 PMID: 12438566
  10. Role of overlapping glycosylation sequons in antigenic properties, intracellular transport and biological activities of influenza A/H2N2 virus haemagglutinin.
    J Gen Virol. 2002 Dec;83(Pt 12):3067-74 PMID: 12466483
  11. Restriction of amino acid change in influenza A virus H3HA: comparison of amino acid changes observed in nature and in vitro.
    J Virol. 2003 Sep;77(18):10088-98 PMID: 12941919
  12. Tunicamycin, a new antibiotic. I. Isolation and characterization of tunicamycin.
    J Antibiot (Tokyo). 1971 Apr;24(4):215-23 PMID: 5572750
  13. Purification and properties of an endo-beta-N-acetylglucosaminidase from Streptomyces griseus.
    J Biol Chem. 1974 Feb 10;249(3):811-7 PMID: 4204552
  14. Antigenic drift between the haemagglutinin of the Hong Kong influenza strains A/Aichi/2/68 and A/Victoria/3/75.
    Nature. 1980 Aug 21;286(5775):771-6 PMID: 7402351
  15. Structure of the haemagglutinin membrane glycoprotein of influenza virus at 3 A resolution.
    Nature. 1981 Jan 29;289(5796):366-73 PMID: 7464906
  16. Structural identification of the antibody-binding sites of Hong Kong influenza haemagglutinin and their involvement in antigenic variation.
    Nature. 1981 Jan 29;289(5796):373-8 PMID: 6162101
  17. The antigenic structure of the influenza virus A/PR/8/34 hemagglutinin (H1 subtype).
    Cell. 1982 Dec;31(2 Pt 1):417-27 PMID: 6186384
  18. Antigenic drift in influenza virus H3 hemagglutinin from 1968 to 1980: multiple evolutionary pathways and sequential amino acid changes at key antigenic sites.
    J Virol. 1983 Oct;48(1):52-60 PMID: 6193288
  19. The synthesis of polypeptides in influenza C virus-infected cells.
    Virology. 1983 Oct 15;130(1):105-17 PMID: 6314642
  20. Carbohydrates of influenza virus. V. Oligosaccharides attached to individual glycosylation sites of the hemagglutinin of fowl plague virus.
    Virology. 1984 Feb;133(1):77-91 PMID: 6422625
  21. A carbohydrate side chain on hemagglutinins of Hong Kong influenza viruses inhibits recognition by a monoclonal antibody.
    Proc Natl Acad Sci U S A. 1984 Mar;81(6):1779-83 PMID: 6584912
  22. Antigenic variation among human strains of influenza C virus detected with monoclonal antibodies to gp88 glycoprotein.
    Virus Res. 1986 Oct;6(1):27-32 PMID: 3799062
  23. SR alpha promoter: an efficient and versatile mammalian cDNA expression system composed of the simian virus 40 early promoter and the R-U5 segment of human T-cell leukemia virus type 1 long terminal repeat.
    Mol Cell Biol. 1988 Jan;8(1):466-72 PMID: 2827008
  24. Addition of carbohydrate side chains at novel sites on influenza virus hemagglutinin can modulate the folding, transport, and activity of the molecule.
    J Cell Biol. 1988 Dec;107(6 Pt 1):2059-73 PMID: 2461945
  25. Intraepidemic variants of influenza virus H3 hemagglutinin differing in the number of carbohydrate side chains.
    Arch Virol. 1991;120(3-4):289-96 PMID: 1958130
  26. Glycosylation requirements for intracellular transport and function of the hemagglutinin of influenza virus.
    J Virol. 1992 Dec;66(12):7136-45 PMID: 1331514
  27. Characterization of a second protein (CM2) encoded by RNA segment 6 of influenza C virus.
    J Virol. 1997 Apr;71(4):2786-92 PMID: 9060633
Article Info
Journal
Journal of virology
Abbr.
J Virol
ISSN
0022-538X
Published
2004-09-00
Pages
9605-11
Language
English
Region
United States
NLM ID
0113724
PMCID
PMC514993
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]