Avian influenza a viruses differ from human viruses by recognition of sialyloligosaccharides and gangliosides and by a higher conservation of the HA receptor-binding site

被引:343
作者
Matrosovich, MN
Gambaryan, AS
Teneberg, S
Piskarev, VE
Yamnikova, SS
Lvov, DK
Robertson, JS
Karlsson, KA
机构
[1] RUSSIAN ACAD MED SCI,MP CHUMAKOV INST POLIOMYELITIS & VIRAL ENCEPHALIT,MOSCOW 142782,RUSSIA
[2] GOTHENBURG UNIV,DEPT BIOCHEM MED,S-41390 GOTHENBURG,SWEDEN
[3] RUSSIAN ACAD SCI,AN NESMEYANOV ORGANOELEMENT CPDS INST,MOSCOW 117813,RUSSIA
[4] RUSSIAN ACAD MED SCI,DI IVANOVSKII VIROL INST,MOSCOW 123098,RUSSIA
[5] NATL INST BIOL STAND & CONTROLS,POTTERS BAR EN6 3QG,HERTS,ENGLAND
关键词
D O I
10.1006/viro.1997.8580
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Avian influenza virus strains representing most hemagglutinin (HA) subtypes were compared with human influenza A (H1N1, H3N2) and B virus isolates, including those with no history of passaging in embryonated hen's eggs, for their ability to bind free N-acetylneuraminic acid (Neu5Ac) and sialyloligosaccharides in a competitive binding assay and to attach to gangliosides in a solid-phase adsorption assay. The avian viruses, irrespective of their HA subtype, showed a higher affinity for sialyl-3-lactose and the other Neu5Ac2-3Gal-terminated oligosaccharides and a lower affinity for sialyl-6-lactose than for free Neu5Ac, indicative of specific interactions between the HA and the 3-linked Gal and poor accommodation of 6-linked Gal in the avian receptor-binding site (RES). Human H1 and H3 strains, by contrast, were unable to bind to 3-linked Gal, interacting instead with the asialic portion of sialyl-6-(N-acetyllactosamine). Different parts of this moiety were recognized by H3 and H1 subtype viruses (Gal and GlcNAc, respectively). Comparison of the HA amino acid sequences revealed that residues in positions 138, 190, 194, 225, 226, and 228 are conserved in the avian RBS, while the human HAs harbor substitutions at these positions. A characteristic feature of avian viruses was their binding to Neu5Ac2-3Gal-containing gangliosides. This property of avian precursor viruses was preserved in early human H3 isolates, but was gradually lost with further circulation of the H3 HA in humans. Consequently, later human H3 isolates, as well as H1 and type B human strains, were unable to bind to short Neu5Ac2-3Gal-terminated gangliosides, an incompatibility that correlated with higher glycosylation of the HA globular head of human viruses. Our results suggest that the RES is highly conserved among HA subtypes of avian influenza virus, while that of human viruses displays distinctive genotypic and phenotypic variability. (C) 1997 Academic Press.
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页码:224 / 234
页数:11
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