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用于质谱定量糖组学的唾液酸残基的快速简便的固相酯化

Rapid and simple solid-phase esterification of sialic acid residues for quantitative glycomics by mass spectrometry.

作者信息

Miura Yoshiaki, Shinohara Yasuro, Furukawa Jun-ichi, Nagahori Noriko, Nishimura Shin-Ichiro

机构信息

Graduate School of Advanced Life Science, Frontier Research Center for Post-Genome Science and Technology, Hokkaido University, N21, W11, Sapporo 001-0021, Japan.

出版信息

Chemistry. 2007;13(17):4797-804. doi: 10.1002/chem.200601872.

Abstract

A rapid and quantitative method for solid-phase methyl esterification of carboxy groups of various sialylated oligosaccharides has been established. The method employed a triazene derivative, 3-methyl-1-p-tolyltriazene, for facile derivatization of oligosaccharides immobilized onto general solid supports such as Affi-Gel Hz and gold colloidal nanoparticles in a multiwell plate. The workflow protocol was optimized for the solid-phase processing of captured sialylated/unsialylated oligosaccharides separated from crude sample mixtures by chemical ligation. From tryptic and/or PNGase F-digest mixtures of glycoproteins, purification by chemoselective immobilization, esterification and recovery were achieved in the same well of the filter plate within three hours when used in conjunction with "glycoblotting technology" (S.-I. Nishimura, K. Niikura, M. Kurogochi, T. Matsushita, M. Fumoto, H. Hinou, R. Kamitani, H. Nakagawa, K. Deguchi, N. Miura, K. Monde, H. Kondo, High-throughput protein glycomics: Combined use of chemoselective glycoblotting and MALDI-TOF/TOF mass spectrometry: Angew. Chem. 2005, 117, 93-98; Angew. Chem. Int. Ed. 2005, 44, 91-96). The recovered materials were directly applicable to subsequent characterization by mass spectrometric techniques such as MALDI-TOF for large-scale glycomics of both neutral and sialylated oligosaccharides. On-bead/on-gold nanoparticle derivatization of glycans containing sialic acids allowed rapid and quantitative glycoform profiling by MALDI-TOF MS with reflector and positive ion mode. In addition to its simplicity and speed, the method eliminates the use of unfavorable halogenated solvents such as chloroform and dichloromethane or volatile solvents such as diethyl ether and hexane, resulting in a practical and green chemical method for automated robotic adaptation.

摘要

已建立了一种用于各种唾液酸化寡糖羧基固相甲酯化的快速定量方法。该方法采用三氮烯衍生物3-甲基-1-对甲苯基三氮烯,以便对固定在通用固相载体(如Affi-Gel Hz和金胶体纳米颗粒)上的寡糖进行简便衍生化,这些载体位于多孔板中。工作流程方案针对通过化学连接从粗样品混合物中分离出的捕获唾液酸化/未唾液酸化寡糖的固相处理进行了优化。当与“糖印迹技术”结合使用时,从糖蛋白的胰蛋白酶和/或PNGase F消化混合物中,通过化学选择性固定、酯化和回收,在滤板的同一孔中三小时内即可完成(S.-I. Nishimura、K. Niikura、M. Kurogochi、T. Matsushita、M. Fumoto、H. Hinou、R. Kamitani、H. Nakagawa、K. Deguchi、N. Miura、K. Monde、H. Kondo,高通量蛋白质糖组学:化学选择性糖印迹和MALDI-TOF/TOF质谱的联合使用:《德国应用化学》,2005年,117卷,93 - 98页;《德国应用化学国际版》,2005年,44卷,91 - 96页)。回收的材料可直接用于后续通过质谱技术(如MALDI-TOF)进行表征,用于中性和唾液酸化寡糖的大规模糖组学研究。含唾液酸聚糖在珠子/金纳米颗粒上的衍生化允许通过具有反射器和正离子模式的MALDI-TOF MS进行快速定量糖型分析。除了简单和快速之外,该方法还避免了使用不利的卤代溶剂(如氯仿和二氯甲烷)或挥发性溶剂(如乙醚和己烷),从而产生了一种适用于自动化机器人操作的实用绿色化学方法。

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