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N-连接糖基化位点在流感病毒神经氨酸酶头部结构域中对于病毒的有效掺入和复制是必需的。

N-Linked Glycan Sites on the Influenza A Virus Neuraminidase Head Domain Are Required for Efficient Viral Incorporation and Replication.

机构信息

Department of Biochemistry and Biophysics, Stockholm University, Stockholm, Sweden.

Division of Viral Products, Center for Biologics Evaluation and Research, Food and Drug Administration, Silver Spring, Maryland, USA.

出版信息

J Virol. 2020 Sep 15;94(19). doi: 10.1128/JVI.00874-20.

Abstract

N-linked glycans commonly contribute to secretory protein folding, sorting, and signaling. For enveloped viruses, such as the influenza A virus (IAV), large N-linked glycans can also be added to prevent access to epitopes on the surface antigens hemagglutinin (HA or H) and neuraminidase (NA or N). Sequence analysis showed that in the NA head domain of H1N1 IAVs, three N-linked glycosylation sites are conserved and that a fourth site is conserved in H3N2 IAVs. Variable sites are almost exclusive to H1N1 IAVs of human origin, where the number of head glycosylation sites first increased over time and then decreased with and after the introduction of the 2009 pandemic H1N1 IAV of Eurasian swine origin. In contrast, variable sites exist in H3N2 IAVs of human and swine origin, where the number of head glycosylation sites has mainly increased over time. Analysis of IAVs carrying N1 and N2 mutants demonstrated that the N-linked glycosylation sites on the NA head domain are required for efficient virion incorporation and replication in cells and eggs. It also revealed that N1 stability is more affected by the head domain glycans, suggesting N2 is more amenable to glycan additions. Together, these results indicate that in addition to antigenicity, N-linked glycosylation sites can alter NA enzymatic stability and the NA amount in virions. N-linked glycans are transferred to secretory proteins upon entry into the endoplasmic reticulum lumen. In addition to promoting secretory protein maturation, enveloped viruses also utilize these large oligosaccharide structures to prevent access to surface antigen epitopes. Sequence analyses of the influenza A virus (IAV) surface antigen neuraminidase (NA or N) showed that the conservation of N-linked glycosylation sites on the NA enzymatic head domain differs by IAV subtype (H1N1 versus H3N2) and species of origin, with human-derived IAVs possessing the most variability. Experimental analyses verified that the N-linked glycosylation sites on the NA head domain contribute to virion incorporation and replication. It also revealed that the head domain glycans affect N1 stability more than N2, suggesting N2 is more accommodating to glycan additions. These results demonstrate that in addition to antigenicity, changes in N-linked glycosylation sites can alter other properties of viral surface antigens and virions.

摘要

N-连接聚糖通常有助于分泌蛋白的折叠、分拣和信号转导。对于包膜病毒,如甲型流感病毒 (IAV),还可以添加大量的 N-连接聚糖,以防止表面抗原血凝素 (HA 或 H) 和神经氨酸酶 (NA 或 N) 上的表位被识别。序列分析表明,在 H1N1 IAV 的 NA 头部结构域中,有三个 N-连接糖基化位点保守,而第四个位点在 H3N2 IAV 中保守。可变位点几乎仅存在于源自人类的 H1N1 IAV 中,在这些病毒中,头部糖基化位点的数量随着时间的推移首先增加,然后随着 2009 年源自欧亚猪的大流行性 H1N1 IAV 的引入而减少。相比之下,在源自人类和猪的 H3N2 IAV 中存在可变位点,这些病毒中头部糖基化位点的数量主要随着时间的推移而增加。对携带 N1 和 N2 突变体的 IAV 的分析表明,NA 头部结构域上的 N-连接糖基化位点对于病毒在细胞和鸡蛋中的有效病毒体掺入和复制是必需的。这也揭示了 N1 的稳定性受头部结构域糖基的影响更大,表明 N2 更能耐受糖基化修饰。这些结果表明,除了抗原性之外,N-连接糖基化位点还可以改变 NA 酶的稳定性和病毒体中的 NA 含量。N-连接聚糖在进入内质网腔时被转移到分泌蛋白上。除了促进分泌蛋白成熟之外,包膜病毒还利用这些大型寡糖结构来防止表面抗原表位被识别。对甲型流感病毒 (IAV) 表面抗原神经氨酸酶 (NA 或 N) 的序列分析表明,NA 酶头部结构域上 N-连接糖基化位点的保守性因 IAV 亚型 (H1N1 与 H3N2) 和起源物种而异,源自人类的 IAV 具有最大的变异性。实验分析证实,NA 头部结构域上的 N-连接糖基化位点有助于病毒体的掺入和复制。这也揭示了头部结构域糖基对 N1 的稳定性影响大于 N2,表明 N2 更能容纳糖基化修饰。这些结果表明,除了抗原性之外,N-连接糖基化位点的变化还可以改变病毒表面抗原和病毒体的其他特性。

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