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基于氧化石墨烯的固定化凝集素的制备及其在高效糖蛋白/糖肽富集中的应用

[Preparation of grapheme oxide based immobilized lectin and its application to efficient glycoprotein/glycopeptide enrichment].

作者信息

Shi Zhaomei, Fan Chao, Huang Junjie, Bai Haihong, Qin Weijie, Cai Yun, Qian Xiaohong

出版信息

Se Pu. 2015 Feb;33(2):116-22. doi: 10.3724/sp.j.1123.2014.09037.

Abstract

Protein glycosylation in eukaryotic cells regulates a variety of physiological processes including cell recognition, cell adhesion, migration, and immune response. It is also closely related with the occurrence and development of many critical diseases. Therefore, large scale identification of protein glycosylation not only provides important information for the study of basic biological mechanisms, but also is crucial for the discovery of new diagnostic biomarkers and therapeutic targets. Due to the low abundance of glycoprotein/glycopeptide in real biological samples, enrichment before mass spectrometry (MS) analysis is an essential step for achieving deep glycosylation site coverage. Lectin enrichment, as an effective method for glycoproteins/glycopeptides enrichment, has been utilized widely in glycoproteomics research. To solve the problems of low lectin loading and limited enrichment efficiency of existing lectin functional materials, we prepared two kinds of new graphene oxide ( GO) immobilized lectin. Besides good dispersion in aqueous solution as well as good chemical stability, GO has extremely large specific surface area and also carries high density of functional groups on its surface, which is especially benelicial for achieving high lectin loading amount. As a result, lectin loading as high as 1. 90 mg/mg was achieved for GO-lectin (GO-ConA 2. 073 mg/mg, RSD = 1. 0%; GO-WGA 1. 908 mg/mg, RSD = 0.14%). One milligram GO-lectin can adsorb more than 200 µg glycoprotein each experiment in two weeks. The GO-lectin was successfully applied in glycoproteins/glycopeptides enrichment with high efficiency and selectivity, indicating its good application potential in glycoproteomics research.

摘要

真核细胞中的蛋白质糖基化调节多种生理过程,包括细胞识别、细胞黏附、迁移和免疫反应。它还与许多重大疾病的发生和发展密切相关。因此,大规模鉴定蛋白质糖基化不仅为基础生物学机制的研究提供重要信息,而且对于发现新的诊断生物标志物和治疗靶点也至关重要。由于实际生物样品中糖蛋白/糖肽的丰度较低,质谱(MS)分析前的富集是实现深度糖基化位点覆盖的关键步骤。凝集素富集作为一种有效的糖蛋白/糖肽富集方法,已在糖蛋白质组学研究中广泛应用。为了解决现有凝集素功能材料凝集素负载量低和富集效率有限的问题,我们制备了两种新型氧化石墨烯(GO)固定化凝集素。GO除了在水溶液中具有良好的分散性以及良好的化学稳定性外,还具有极大的比表面积,并且在其表面带有高密度的官能团,这特别有利于实现高凝集素负载量。结果,GO-凝集素的凝集素负载量高达1.90 mg/mg(GO-ConA为2.073 mg/mg,RSD = 1.0%;GO-WGA为1.908 mg/mg,RSD = 0.14%)。每毫克GO-凝集素在两周内每次实验可吸附超过200μg糖蛋白。GO-凝集素已成功应用于糖蛋白/糖肽的高效选择性富集,表明其在糖蛋白质组学研究中具有良好的应用潜力。

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