Glycosylation Analysis of Engineered H3N2 Influenza A Virus Hemagglutinins with Sequentially Added Historically Relevant Glycosylation Sites

糖基化 糖蛋白 聚糖 病毒 生物 血凝素(流感) 收藏品 甲型流感病毒 抗体 甘露糖 糖肽 糖组学 N-连接糖基化 病毒学 免疫系统 生物化学 先天免疫系统 免疫学 抗生素
作者
Yanming An,Jonathan A. McCullers,Irina V. Alymova,Lisa M. Parsons,John F. Cipollo
出处
期刊:Journal of Proteome Research [American Chemical Society]
卷期号:14 (9): 3957-3969 被引量:66
标识
DOI:10.1021/acs.jproteome.5b00416
摘要

The influenza virus surface glycoprotein hemagglutinin (HA) is the major target of host neutralizing antibodies. The oligosaccharides of HA can contribute to HA's antigenic characteristics. After a leap to humans from a zoonotic host, influenza can gain N-glycosylation sequons over time as part of its fitness strategy. This glycosylation expansion has not been studied at the structural level. Here we examine HA N-glycosylation of H3N2 virus strains that we have engineered to closely mimic glycosylation sites gained between 1968 through 2002 starting with pandemic A/Hong Kong/1/68 (H3N2: HK68). HAs studied include HK68 and engineered forms with 1, 2, and 4 added sites. We have used: nano-LC–MSE for glycopeptide composition, sequence and site occupancy analysis, and MALDI-TOF MS permethylation profiling for characterization of released glycans. Our study reveals that 1) the majority of N-sequons are occupied at ≥90%, 2) the class and complexity of the glycans varies by region over the landscape of the proteins, 3) Asn 165 and Asn 246, which are associated with interactions between HA and SP-D lung collectin, are exclusively high mannose type. Based on this study and previous reports we provide structural insight as to how the immune system responses may differ depending on HA glycosylation.
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