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Two Glycosylation Sites in H5N1 Influenza Virus Hemagglutinin That Affect Binding Preference by Computer-Based Analysis

机译:H5N1流感病毒血凝素中的两个糖基化位点通过基于计算机的分析影响结合偏好

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摘要

Increasing numbers of H5N1 influenza viruses (IVs) are responsible for human deaths, especially in North Africa and Southeast Asian. The binding of hemagglutinin (HA) on the viral surface to host sialic acid (SA) receptors is a requisite step in the infection process. Phylogenetic analysis reveals that H5N1 viruses can be divided into 10 clades based on their HA sequences, with most human IVs centered from clade 1 and clade 2.1 to clade 2.3. Protein sequence alignment in various clades indicates the high conservation in the receptor-binding domains (RBDs) is essential for binding with the SA receptor. Two glycosylation sites, 158N and 169N, also participate in receptor recognition. In the present work, we attempted to construct a serial H5N1 HA models including diverse glycosylated HAs to simulate the binding process with various SA receptors in silico. As the SA-α-2,3-Gal and SA-α-2,6-Gal receptor adopted two distinctive topologies, straight and fishhook-like, respectively, the presence of N-glycans at 158N would decrease the affinity of HA for all of the receptors, particularly SA-α-2,6-Gal analogs. The steric clashes of the huge glycans shown at another glycosylation site, 169N, located on an adjacent HA monomer, would be more effective in preventing the binding of SA-α-2,3-Gal analogs.
机译:越来越多的H5N1流感病毒(IVs)造成人类死亡,特别是在北非和东南亚。病毒表面上的血凝素(HA)与宿主唾液酸(SA)受体的结合是感染过程中的必要步骤。系统发育分析表明,H5N1病毒可根据其HA序列分为10个进化枝,大多数人类IV集中在进化枝1和进化枝2.1到进化枝2.3。各种进化枝中的蛋白质序列比对表明受体结合域(RBD)的高度保守对于与SA受体的结合至关重要。两个糖基化位点158N和169N也参与受体识别。在目前的工作中,我们试图构建包括各种糖基化HA在内的一系列H5N1 HA模型,以模拟与计算机中各种SA受体的结合过程。由于SA-α-2,3-Gal和SA-α-2,6-Gal受体分别采用两种不同的拓扑结构,分别是直形和鱼钩形,因此在158N存在N-聚糖会降低HA对HA的亲和力所有受体,特别是SA-α-2,6-Gal类似物。在相邻的HA单体上的另一个糖基化位点169N处显示的巨大聚糖的空间碰撞将更有效地防止SA-α-2,3-Gal类似物的结合。

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