Department of Chemistry, Hacettepe University, 06800-Ankara, Turkey; Department of Biomedical Engineering, Karabuk University, 78000-Karabuk, Turkey.
Department of Chemistry, Hacettepe University, 06800-Ankara, Turkey.
J Pharm Biomed Anal. 2019 Sep 10;174:191-197. doi: 10.1016/j.jpba.2019.05.061. Epub 2019 May 28.
Enrichment and/or purification of intact glycopeptides and derivatized glycans are essential for mass spectrometry-based glycoproteomics and glycomics because of analytical challenges observed in the analysis. Here, a titania-based material was synthesized using a facile sol-gel method for the efficient analysis of glycopeptides and glycans. The glycopeptide enrichment efficacy of the titania-based sol-gel material was evaluated by the enrichment of IgG N-glycopeptides from their proteolytic products. The selectivity and sensitivity (0.5 fmol μL) of the titania-based sol-gel material was found to be quite high when compared with commercial TiO. A pipette-tip application for rapid glycoproteomic and glycomic analysis was developed by packing titania-based material into the pipette tips. The released and derivatized N-glycans of human plasma, IgG and human transferrin were successfully purified by titania glyco-purification tips for the analysis by MALDI-MS. The enrichment performance of the titania glyco-purification tip was tested using human plasma digest as a real-world complex sample and, 112 N-glycopeptides from human plasma glycoproteins were detected by the analysis of enriched samples by nLC-QTOF-MS/MS. Finally, the structural characterization of the material was achieved in detail using various characterization approaches.
基于 TiO2 的材料的合成及其在糖肽和聚糖分析中的应用
由于在分析中观察到的分析挑战,完整糖肽和衍生糖的富集和/或纯化对于基于质谱的糖蛋白质组学和糖组学至关重要。在这里,使用简便的溶胶-凝胶方法合成了基于 TiO2 的材料,用于糖肽和聚糖的高效分析。通过从其蛋白酶解产物中富集 IgG N-糖肽来评估基于 TiO2 的溶胶-凝胶材料的糖肽富集效果。与商业 TiO2 相比,发现基于 TiO2 的溶胶-凝胶材料具有较高的选择性和灵敏度(0.5 fmol μL)。通过将基于 TiO2 的材料填充到移液管尖端中,开发了用于快速糖蛋白质组学和糖组学分析的移液管尖端应用。通过 MALDI-MS 分析,成功地用人血浆、IgG 和人转铁蛋白的释放和衍生化 N-聚糖对 TiO2 糖纯化尖端进行了纯化。用人血浆消化物作为真实复杂样品测试了 TiO2 糖纯化尖端的富集性能,并通过 nLC-QTOF-MS/MS 对富集样品的分析检测到了来自人血浆糖蛋白的 112 个 N-糖肽。最后,使用各种表征方法详细实现了材料的结构表征。