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首页> 外文期刊>Veterinary research >Glycosylation at 11Asn on hemagglutinin of H5N1 influenza virus contributes to its biological characteristics
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Glycosylation at 11Asn on hemagglutinin of H5N1 influenza virus contributes to its biological characteristics

机译:H5N1流感病毒血凝素在11Asn处的糖基化有助于其生物学特性

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摘要

A stem glycosylation site of hemagglutinin (HA) is important to the stability of the HA trimmer. A previous study shows that the stem 10/11 overlap glycosylation site of the H5 subtype avian influenza virus may influence the cleavage of HA, whereas the exact site and its effect on virulence remain unclear. In this study, site-directed mutagenesis was used to generate single or double mutant rSY-Δ10(10NNAT), rSY-Δ11(10NNSA), and rSY-Δ10/11(10NNAA) of the overlapping glycosylation site (10NNST) on the HA of A/Mallard/Huadong/S/2005(SY). By using Western blot analysis, we show that both rSY-Δ11 and rSY-Δ10/11 mutant viruses had significant delay on HA cleavage and a reduced HA molecular mass compared to the wild-type virus rSY, while the rSY-Δ10 mutant virus exhibited a similar HA molecular mass to that of the wild-type virus rSY. Interestingly, both rSY-Δ11 and rSY-Δ10/11 mutant viruses reverted their glycosylation sites at 11N after passage, indicating that 11N is a true and critical glycosylation site. Compared to the wild-type virus rSY, rSY-Δ11 and rSY-Δ10/11 mutant viruses had decreased growth rates, reduced thermo- and pH-stability, decreased pathogenicity, and limited systemic spread. Therefore, our study suggests that the 11N glycosylation site plays a key role in HA cleavage, structural stability and pathogenicity in H5 subtype avian influenza virus.
机译:血凝素(HA)的茎糖基化位点对HA三聚体的稳定性很重要。先前的研究表明,H5亚型禽流感病毒的茎10/11重叠糖基化位点可能会影响HA的切割,但尚不清楚确切位点及其对毒力的影响。在这项研究中,使用定点诱变在HA上产生重叠糖基化位点(10NNST)的单突变或双突变rSY-Δ10(10NNAT),rSY-Δ11(10NNSA)和rSY-Δ10/ 11(10NNAA) A / Mallard / Huadong / S / 2005(SY)。通过蛋白质印迹分析,我们发现与野生型病毒rSY相比,rSY-Δ11和rSY-Δ10/ 11突变病毒均具有明显的HA裂解延迟和HA分子量降低,而rSY-Δ10突变病毒表现出与野生型病毒rSY相似的HA分子量。有趣的是,rSY-Δ11和rSY-Δ10/ 11突变病毒在通过后都在11N处还原了其糖基化位点,表明11N是一个真正的关键糖基化位点。与野生型病毒rSY相比,rSY-Δ11和rSY-Δ10/ 11突变病毒的生长速率降低,热稳定性和pH稳定性降低,致病性降低以及系统扩散受限。因此,我们的研究表明11N糖基化位点在H5亚型禽流感病毒的HA切割,结构稳定性和致病性中起着关键作用。

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