Department of Biochemistry and Molecular Biology, University of Southern Denmark, Campusvej 55, Odense M, DK-5230, Denmark.
Anal Chem. 2010 Jul 1;82(13):5598-609. doi: 10.1021/ac100530w.
Glycopeptide enrichment is a prerequisite to enable structural characterization of protein glycosylation in glycoproteomics. Here we present an improved method for glycopeptide enrichment based on zwitter-ionic hydrophilic interaction chromatography solid phase extraction (ZIC-HILIC SPE) in a microcolumn format. The method involves TFA ion pairing (IP) to increase the hydrophilicity difference between glycopeptides and nonglycosylated peptides. Three mobile phases were investigated, i.e., 2% formic acid (defined as IP(2% FA) ZIC-HILIC SPE), 0.1% TFA and 1% TFA (defined as IP(0.1% TFA) and IP(1% TFA) ZIC-HILIC SPE) all containing 80% acetonitrile. Samples of increasing complexities, i.e., digests of single glycoproteins, a five-glycoprotein mixture, and depleted plasma, were used in the study. The presence of TFA in the mobile phase significantly improved the glycopeptide enrichment for all complexities, as evaluated by enhanced glycopeptide detection using MALDI-TOF MS and RP-LC-ESI-MS/MS, e.g., the glycopeptide ion signals were increased by up to 3.7-fold compared to IP(2% FA) conditions. The enhanced glycopeptide detection was promoted by a substantial depletion of nonglycosylated peptides, offering an almost complete isolation of IgG glycopeptides using a single SPE enrichment step and a reduction from 711 nonglycosylated peptides observed in the IP(2% FA) ZIC-HILIC SPE retained plasma fraction, to only 157 and 97 when 0.1% and 1% TFA was used in the mobile phase. In conclusion, this systematic study has shown that TFA-containing mobile phases increase glycopeptide enrichment efficiency considerably for a broad range of sample complexities when using ZIC-HILIC SPE.
糖肽富集是实现糖蛋白质组学中蛋白质糖基化结构特征分析的前提条件。本文提出了一种基于两性离子亲水作用色谱固相萃取(ZIC-HILIC SPE)的糖肽富集方法,该方法采用三氟乙酸离子对(IP)提高糖肽和非糖肽之间的亲水性差异。研究考察了三种流动相,即 2%甲酸(定义为 IP(2% FA) ZIC-HILIC SPE)、0.1%TFA 和 1%TFA(定义为 IP(0.1% TFA) 和 IP(1% TFA) ZIC-HILIC SPE),均含 80%乙腈。实验采用了复杂度逐渐增加的样品,即单糖蛋白消化物、五糖蛋白混合物和去糖蛋白血浆。研究结果表明,流动相中 TFA 的存在显著提高了所有复杂程度的糖肽富集效率,通过 MALDI-TOF MS 和 RP-LC-ESI-MS/MS 增强糖肽检测得以评估,例如,与 IP(2% FA) 条件相比,糖肽离子信号增强了 3.7 倍。非糖肽的大量耗尽促进了增强的糖肽检测,使用单个 SPE 富集步骤几乎可以完全分离 IgG 糖肽,并将 IP(2% FA) ZIC-HILIC SPE 保留的血浆部分中观察到的 711 种非糖肽减少到仅 157 种和 97 种,当流动相中使用 0.1%和 1%TFA 时。总之,这项系统性研究表明,当使用 ZIC-HILIC SPE 时,含 TFA 的流动相可显著提高各种样品复杂度的糖肽富集效率。