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首页> 外文期刊>Journal of proteome research >High Performance Anion Exchange and Hydrophilic Interaction Liquid Chromatography Approaches for Comprehensive Mass Spectrometry-Based Characterization of the N-Glycome of a Recombinant Human Erythropoietin
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High Performance Anion Exchange and Hydrophilic Interaction Liquid Chromatography Approaches for Comprehensive Mass Spectrometry-Based Characterization of the N-Glycome of a Recombinant Human Erythropoietin

机译:高性能阴离子交换和亲水性相互作用液相色谱方法,用于综合质谱基于重组人促红细胞生成素的N- Glyco表征的方法

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Comprehensive characterization of the N-glycome of a therapeutic is challenging because glycans may harbor numerous modifications (e.g., phosphorylation, sulfation, sialic acids with possible O-acetylation). The current report presents a comparison of two chromatographic platforms for the comprehensive characterization of a recombinant human erythropoietin (rhEPO) N-glycome. The two platforms include a common workflow based on 2-AB-derivatization and hydrophilic interaction chromatography (HILIC) and a native N-linked glycan workflow employing high performance anion exchange (HPAE) chromatography. Both platforms were coupled to an Orbitrap mass spectrometer, and data dependent HCD fragmentation allowed confident structural elucidation of the glycans. Each platform identified glycans not revealed by the other, and both exhibited strengths and weaknesses. The reductive amination based HILIC workflow provided better throughput and sensitivity, had good isomer resolution, and revealed the presence of O-acetylated sialic acids. However, it exhibited poor performance toward phosphorylated glycans and did not reveal the presence of sulfated glycans. Furthermore, reductive amination introduced dehydration artifacts and modified the glycosylation profile in the rhEPO glycome. Conversely, HPAE provided unbiased charge classification (sialylation levels), improved isomer resolution, and revealed multiple phosphorylated and sulfated structures, but delivered lower throughput, had artifact peaks due to epimer formation, and loss of sialic acid O-acetylation. The MS~(2) based identification of phosphorylated and sulfated glycans was not possible in HILIC mode due to?their poor solubility caused by the high acetonitrile concentrations employed at the beginning of the gradient. After analyzing the glycome by both approaches and determining the glycans present, a glycan library was created for site specific glycopeptide analyses. Glycopeptide analyses confirmed all the compositions
机译:综合表征治疗性的N-GLYCOME是挑战性的,因为聚糖可能含有许多修饰(例如,磷酸化,硫酸盐,具有可能的O-乙酰化的唾液酸)。目前报告呈现了两种色谱平台的比较,用于综合表征重组人促红细胞生成素(Rhepo)N-Glycome。这两个平台包括基于2-AB衍生化和亲水性相互作用色谱(HILIC)的常见工作流程和采用高性能阴离子交换(HPAE)色谱法的天然n连接的聚糖工作流。两台平台耦合到露天度质谱仪,数据依赖性HCD碎片允许自信地阐明聚糖。每个平台识别不透露的聚糖,也表现出优势和劣势。基于还原的胺化的HILIC工作流程提供了更好的产量和敏感性,具有良好的异构体分辨率,并揭示了O-乙酰化唾液酸的存在。然而,它表现出对磷酸化聚糖的表现不佳,并且没有露出硫酸化聚糖的存在。此外,还原胺化引入脱水伪影并在rhepo Glyce中修饰糖基化谱。相反,HPAE提供了无偏的电荷分类(唾液酸化水平),改善的异构体分辨率,并揭示了多种磷酸化和硫酸化结构,但递送了较低的产量,具有由于基层形成引起的伪影峰,并且缺失唾液酸O-乙酰化。由于αs的高乙腈浓度,MS〜(2)基于磷酸化和硫酸化聚糖的鉴定不可能在梯度开始时采用的高乙腈浓度引起的差。通过两种方法分析Glyce并确定存在的聚糖,为位点特异性糖肽分析产生甘草文库。糖肽分析证实了所有组合物

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