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固相化学修饰用于唾液酸连接分析:在流感病毒繁殖中宿主细胞糖蛋白中的应用。

Solid-Phase Chemical Modification for Sialic Acid Linkage Analysis: Application to Glycoproteins of Host Cells Used in Influenza Virus Propagation.

机构信息

Laboratory of Bacterial Polysaccharides, Division of Bacterial, Parasitic and Allergenic Products, Center for Biologics Evaluation and Research, Food and Drug Administration , Silver Spring, Maryland 20993, United States.

Division of Viral Products, Office of Vaccines Research and Review, Center for Biologics Evaluation and Research, Food and Drug Administration , Silver Spring, Maryland 20993, United States.

出版信息

Anal Chem. 2017 Sep 5;89(17):9508-9517. doi: 10.1021/acs.analchem.7b02514. Epub 2017 Aug 21.

Abstract

Differentiation between the sialyl linkages is often critical to understanding biological consequence. Here we present a facile method for determining these linkages in glycans. Analysis of sialic acids is challenging due to their labile nature during sample preparation and ionization. Derivatization is often required via chemical reaction. Amidation derivatizes all sialic acids regardless of linkage, while esterification enables differentiation between α2,3-linked and α2,6-linked sialic acids. Reactions have been primarily performed on free glycans in solution but have been recently adapted to solid-phase providing unique advantages such as simplified sample preparation, improved yield, and high throughput applications. Here, we immobilized glycoproteins on resin via reductive amination, modified α2,6-linked sialic acids through ethyl esterification, and α2,3-linked sialic acids via amidation. N-glycans and O-glycans were released via enzyme and chemical reactions. The method was applied for analysis of three different MDCK cell lines used for influenza propagation and where distributions of α2,3 and α2,6 sialic acids are critical for cell performance. Linkage specific distribution of these sialic acids was quantitatively determined and unique for each cell line. Our study demonstrates that protein sialylation can be reliably and quantitatively characterized in terms of sialic acid linkage of each glycan using the solid-phase esterification/amidation strategy.

摘要

区分唾液酸连接通常对了解生物学后果至关重要。在这里,我们提出了一种简便的方法来确定糖链中的这些连接。由于在样品制备和离子化过程中唾液酸的不稳定性,因此对其进行分析具有挑战性。通常需要通过化学反应进行衍生化。酰胺化将所有的唾液酸进行衍生化,而不管其连接方式如何,而酯化则能够区分α2,3 连接和α2,6 连接的唾液酸。这些反应主要在溶液中的游离糖上进行,但最近已被改编为固相反应,从而提供了独特的优势,如简化样品制备、提高产量和高通量应用。在这里,我们通过还原胺化将糖蛋白固定在树脂上,通过乙基酯化修饰α2,6 连接的唾液酸,通过酰胺化修饰α2,3 连接的唾液酸。通过酶和化学反应释放 N-聚糖和 O-聚糖。该方法应用于分析三种不同的 MDCK 细胞系,这些细胞系用于流感的繁殖,其中α2,3 和α2,6 唾液酸的分布对于细胞性能至关重要。这些唾液酸的连接特异性分布是定量确定的,并且对每个细胞系都是独特的。我们的研究表明,使用固相酯化/酰胺化策略可以可靠地定量表征蛋白质唾液酸化,包括每个聚糖的唾液酸连接。

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