Yamnikova S S, Gambaryan A S, Tuzikov A B, Bovin N V, Matrosovich M N, Fedyakina I T, Grinev A A, Blinov V M, Lvov D K, Suarez D L, Swayne D E
D.I. Ivanovsky Institute of Virology, RAMS, 123098 Gamaleya, 16, Moscow, Russia.
Avian Dis. 2003;47(3 Suppl):1164-8. doi: 10.1637/0005-2086-47.s3.1164.
A comparative study of the hemagglutinin (HA) receptor binding site (RBS) of a number of H13 influenza viruses isolated from Laridae family of birds (gulls) and other influenza viruses obtained from the Anatidae family (ducks) was conducted. The affinity of all viruses to alpha N-acetylneuraminic acid (Neu5Ac alpha), 3'sialyllactose (3'SL), and sialylglycopolymers bearing 3'-sialyl(N-acetyllactosamine) (3'SLN-PAA), [Neu5Ac alpha(2-3)Gal beta(1-4)][-Fuc alpha(1-3)]GlcNAc beta (SLe(x)-PAA), and [Neu5Ac alpha(2-3)Gal beta(1-3)][-Fuc alpha(1-4)]GlcNAc beta (SLe(a)-PAA), was determined. The last three polymer glycoconjugates were synthesized for determining the contribution of carbohydrate chains after the galactose link to the binding with the receptor. The difference in affinity between 3'SL and Neu5Ac alpha in all studied H13 viruses is small, which indicates a less significant role of the galactose moiety in the binding to the receptor. The results of virus binding with polymer sialylglycoconjugates indicates that the method of linking, the third monosaccharide moiety, and the presence of an extra fucose substitute in this moiety may influence the binding considerably. For viruses isolated from ducks, the suitable polymer is SLe(a)-PAA (i.e., a 1-3 linkage between galactose and glucosamine is optimal). This finding is in accord with the data that H13 viruses isolated from the gulls differ based on their ability to interact with polymer sialylglycoconjugates. The affinity to all three polymers is uniform, and the presence of GlcNAc-linked fucose does not prevent the binding. A comparative analysis of six sequenced HA H13 viruses and other subtype viruses showed presence of substantial differences in the composition of amino acids of this region in H13 viruses.
对从鸥科鸟类(海鸥)分离出的多种H13流感病毒的血凝素(HA)受体结合位点(RBS)与从鸭科(鸭子)获得的其他流感病毒进行了比较研究。测定了所有病毒对α-N-乙酰神经氨酸(Neu5Acα)、3'-唾液酸乳糖(3'SL)以及带有3'-唾液酸(N-乙酰乳糖胺)(3'SLN-PAA)、[Neu5Acα(2-3)Galβ(1-4)][-Fucα(1-3)]GlcNAcβ(SLe(x)-PAA)和[Neu5Acα(2-3)Galβ(1-3)][-Fucα(1-4)]GlcNAcβ(SLe(a)-PAA)的唾液酸糖聚合物的亲和力。合成了后三种聚合物糖缀合物,以确定半乳糖连接后碳水化合物链对与受体结合的贡献。在所有研究的H13病毒中,3'SL和Neu5Acα之间的亲和力差异很小,这表明半乳糖部分在与受体结合中的作用不太显著。病毒与聚合物唾液酸糖缀合物结合的结果表明,连接方式、第三个单糖部分以及该部分中额外岩藻糖替代基的存在可能会对结合产生相当大的影响。对于从鸭子分离出的病毒,合适的聚合物是SLe(a)-PAA(即半乳糖和葡糖胺之间的1-3连接是最佳的)。这一发现与从海鸥分离出的H13病毒根据其与聚合物唾液酸糖缀合物相互作用的能力而有所不同的数据一致。对所有三种聚合物的亲和力是一致的,并且GlcNAc连接的岩藻糖的存在并不妨碍结合。对六种测序的HA H13病毒和其他亚型病毒的比较分析表明,H13病毒该区域氨基酸组成存在显著差异。