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Remarkable Structural Diversity of N-Glycan Sulfation on Influenza Vaccines

机译:流感疫苗对N-聚糖硫化的显着结构多样性

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摘要

Sulfated N-glycans are biologically important structures derived from enzymatically post-glycosylational modifications of glycoproteins in many therapeutic biologics. The high-throughput analysis of sulfated N-glycomes remains a daunting technical challenge, because of negatively charged heterogeneous composition, large molecular structures, lability of sulfate attachments, and a lack of highly selective enrichment methods. Using liquid chromatography mass spectrometry, we have analyzed the N-glycans of influenza viral hemagglutinin and neuraminidase from several subtypes of influenza vaccines, and utilized the existing resource to establish an N-glycan library consisting of 927 N-glycan structures and 387 sulfated N-glycan compositions. With the aid of database for data mining, 1380 unique N-glycopeptides were identified and manually validated by de novo glycopeptide sequencing, of which 514 were sulfated at the site -specific locations. We report here a mass spectrometric method that is able to identify and distinguish the isobaric structures of complex and hybrid N-glycans flanked by a terminal sulfation sequon on Gal-GlcNAc and GalNAc-GlcNAc of sulfated-3-Gal, sulfated-6-GlcNAc, and sulfated-4-GalNAc. The database-aided glycoproteomic analyses enable rapid determination of new sulfated-N-glycan structures in large sets of influenza vaccines, including those highly branched nonsialyl sulfo-N-glycans bearing lactosaminic extensions in both complex and hybrid N-glycans that especially interact with sulfotransferases. The novel findings highlight the tremendous structural diversity of sulfated N-glycans and strongly suggest potential functional importance of N-glycan sulfation of influenza glycoproteins.
机译:硫酸化的N-聚糖是在许多治疗生物制剂中衍生自酶糖蛋白的酶促修饰的生物学上重要的结构。硫酸化N-Glycomes的高通量分析仍然是令人生畏的技术挑战,因为带负电的异质组合物,大分子结构,硫酸盐附着物的耐损,以及缺乏高度选择性的富集方法。采用液相色谱质谱法,我们已经分析了流感病毒血凝素和来自流感疫苗的几种亚型的N-聚糖酶,并利用现有资源建立由927个N-​​聚糖结构和387硫酸化合物组成的N-甘油文库。聚糖组成。借助于数据挖掘数据库,通过De Novo糖肽测序鉴定并手动验证1380个独特的N-糖肽,其中514在位点特异性地区硫酸化。我们在此报告一种质谱法,其能够识别和区分在Gal-glcnac和硫酸-3-glcnac的Gal-glcnac和Galnac-glcnac上侧翼的复合物和杂交N-聚糖的同位结构。 ,和硫酸化-4-galnac。数据库辅助糖蛋白分析能够快速测定大型流感疫苗中的新型硫酸盐 - N-聚糖结构,包括在综合和杂交N-聚糖中携带乳糖胺延伸的高度支化的非亚胺磺酰基族聚乙烯,其特别是与磺基转移酶相互作用。新颖的研究结果突出了硫酸化N-聚糖的巨大结构多样性,并强烈表明了流感糖蛋白的N-聚糖硫化的潜在功能性重要性。

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  • 来源
    《Analytical chemistry》 |2019年第8期|共8页
  • 作者单位

    Hlth Canada Ctr Biol Evaluat Biol &

    Genet Therapies Directorate Ottawa ON K1A 0K9 Canada;

    Hlth Canada Ctr Biol Evaluat Biol &

    Genet Therapies Directorate Ottawa ON K1A 0K9 Canada;

    Hlth Canada Ctr Biol Evaluat Biol &

    Genet Therapies Directorate Ottawa ON K1A 0K9 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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