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Development of Versatile Metal-Organic Framework Functionalized Magnetic Graphene Core-Shell Biocomposite for Highly Specific Recognition of Glycopeptides

机译:多功能金属有机骨架功能化的石墨烯核壳生物复合材料对糖肽的高度特异性识别的开发

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摘要

Protein N-glycosylation is a ubiquitous and important post-translational modification that has been involved in the development and progression of a series of human-related diseases. Until recently, the highly selective capturing of glycopeptides from complex biosamples was still significant and challenging work due to their changeable structures, ultralow abundance, and strong ion-suppressing effect. Here we first report the preparation and characterization of a novel, hydrophilic, porous biocomposite composed of magnetic graphene functionalized with metalorganic frameworks (MOFs) (MG@Zn-MOFs) able to recognize glycopeptides. Thanks to its strong magnetic responsiveness, large specific surface area, excellent biocompatibility, and unique size-exclusion effect, the MG@Zn-MOFs showed outstanding sensitivity and selectivity and good recyclability in glycopeptides analysis. More excitingly, in practical application, 517 N-glycopeptides within 151 unique glycoproteins were clearly identified from human serum (1 mu L) treated with the MG@Zn-MOFs, which is the best result among published reports so far. All the results demonstrate the promising commercialized usage of the biocomposite for the enrichment of glycopeptides in complex samples through a convenient and efficient process. Furthermore, it is anticipated that our strategy may offer promising guidance to develop new biocomposites functionalized with bio-MOFs for glycoproteomic applications.
机译:蛋白N-糖基化是普遍存在且重要的翻译后修饰,已经参与了一系列与人类有关的疾病的发展和进程。直到最近,由于其结构可变,超低丰度和强大的离子抑制作用,从复杂生物样品中高度选择性地捕获糖肽仍是重要且具有挑战性的工作。在这里,我们首先报告一种新型的,亲水性的,多孔的生物复合材料的制备和表征,该复合材料由磁性石墨烯组成,该磁性石墨烯通过能够识别糖肽的金属有机骨架(MOF)(MG @ Zn-MOF)进行了功能化。 MG @ Zn-MOFs具有强的磁响应性,大的比表面积,出色的生物相容性和独特的尺寸排阻作用,因此在糖肽分析中显示出出色的灵敏度和选择性以及良好的可回收性。更令人兴奋的是,在实际应用中,从经过MG @ Zn-MOFs处理的人血清(1微升)中清楚地鉴定出151种独特糖蛋白中的517种N-糖肽,这是迄今为止已发表报告中最好的结果。所有结果表明,通过方便有效的方法,生物复合物在复杂样品中富集糖肽的商业化应用前景广阔。此外,预期我们的策略可能会为开发新的生物复合材料提供有希望的指导,这些复合材料可以用生物MOFs进行糖蛋白组学应用。

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