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通过高效阴离子交换色谱-脉冲安培检测与质谱联用对天然N-连接聚糖进行深入分析。

In-depth analyses of native N-linked glycans facilitated by high-performance anion exchange chromatography-pulsed amperometric detection coupled to mass spectrometry.

作者信息

Szabo Zoltan, Thayer James R, Agroskin Yury, Lin Shanhua, Liu Yan, Srinivasan Kannan, Saba Julian, Viner Rosa, Huhmer Andreas, Rohrer Jeff, Reusch Dietmar, Harfouche Rania, Khan Shaheer H, Pohl Christopher

机构信息

ThermoFisher Scientific, 1228 Titan Way, Sunnyvale, CA, 94088, USA.

ThermoFisher Scientific, 355 River Oaks Parkway, San Jose, CA, 95134, USA.

出版信息

Anal Bioanal Chem. 2017 May;409(12):3089-3101. doi: 10.1007/s00216-017-0248-3. Epub 2017 Mar 9.

Abstract

Characterization of glycans present on glycoproteins has become of increasing importance due to their biological implications, such as protein folding, immunogenicity, cell-cell adhesion, clearance, receptor interactions, etc. In this study, the resolving power of high-performance anion exchange chromatography with pulsed amperometric detection (HPAE-PAD) was applied to glycan separations and coupled to mass spectrometry to characterize native glycans released from different glycoproteins. A new, rapid workflow generates glycans from 200 μg of glycoprotein supporting reliable and reproducible annotation by mass spectrometry (MS). With the relatively high flow rate of HPAE-PAD, post-column splitting diverted 60% of the flow to a novel desalter, then to the mass spectrometer. The delay between PAD and MS detectors is consistent, and salt removal after the column supports MS. HPAE resolves sialylated (charged) glycans and their linkage and positional isomers very well; separations of neutral glycans are sufficient for highly reproducible glycoprofiling. Data-dependent MS in negative mode provides highly informative, mostly C- and Z-type glycosidic and cross-ring fragments, making software-assisted and manual annotation reliable. Fractionation of glycans followed by exoglycosidase digestion confirms MS-based annotations. Combining the isomer resolution of HPAE with MS permitted thorough N-glycan annotation and led to characterization of 17 new structures from glycoproteins with challenging glycan profiles.

摘要

由于糖蛋白上存在的聚糖具有生物学意义,如蛋白质折叠、免疫原性、细胞间粘附、清除、受体相互作用等,对其进行表征变得越来越重要。在本研究中,采用了带脉冲安培检测的高效阴离子交换色谱法(HPAE-PAD)的分离能力来分离聚糖,并与质谱联用,以表征从不同糖蛋白中释放的天然聚糖。一种新的快速工作流程可从200μg糖蛋白中生成聚糖,支持通过质谱(MS)进行可靠且可重复的注释。由于HPAE-PAD的流速相对较高,柱后分流将60%的流速导向一个新型脱盐器,然后再导向质谱仪。PAD和MS检测器之间的延迟是一致的,柱后脱盐支持MS。HPAE能很好地分离唾液酸化(带电)聚糖及其连接和位置异构体;中性聚糖的分离足以进行高度可重复的糖谱分析。负模式下的数据依赖型MS提供了信息丰富的、主要为C型和Z型的糖苷键和跨环碎片,使得软件辅助和手动注释都很可靠。聚糖分级分离后用外切糖苷酶消化可确认基于MS的注释。将HPAE的异构体分离能力与MS相结合,可对N-聚糖进行全面注释,并从具有挑战性的糖谱的糖蛋白中鉴定出17种新结构。

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