State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, P.R. China.
Nanoscale. 2014 Mar 21;6(6):3150-6. doi: 10.1039/c3nr05367a. Epub 2014 Feb 5.
A stepwise strategy was developed to synthesize boronic acid functionalized magnetic carbon nanotubes (MCNTs) for highly specific enrichment of glycopeptides. The MCNTs were synthesized by a solvothermal reaction of Fe(3+) loaded on the acid-treated CNTs and modified with 1-pyrenebutanoic acid N-hydroxysuccinimidyl ester (PASE) to bind aminophenylboronic acid (APBA) via an amide reaction. The introduction of PASE could bridge the MCNT and APBA, suppress the nonspecific adsorption and reduce the steric hindrance among the bound molecules. Due to the excellent structure of the MCNTs, the functionalization of PASE and then APBA on MCNTs was quite simple, specific and effective. The glycopeptides enrichment and separation with a magnetic field could be achieved by their reversible covalent binding with the boronic group of APBA-MCNTs. The exceptionally large specific surface area and the high density of boronic acid groups of APBA-MCNTs resulted in rapid and highly efficient enrichment of glycopeptides, even in the presence of large amounts of interfering nonglycopeptides. The functional MCNTs possessed high selectivity for enrichment of 21 glycopeptides from the digest of horseradish peroxidase demonstrated by MALDI-TOF mass spectrometric analysis showing more glycopeptides detected than the usual 9 glycopeptides with commercially available APBA-agarose. The proposed system showed better specificity for glycopeptides even in the presence of non-glycopeptides with 50 times higher concentration. The boronic acid functionalized MCNTs provide a promising selective enrichment platform for precise glycoproteomic analysis.
我们开发了一种逐步策略,用于合成硼酸功能化磁性碳纳米管(MCNTs),以高度特异性地富集糖肽。MCNTs 通过 Fe(3+) 在酸处理的 CNTs 上负载的溶剂热反应合成,并通过酰胺反应与 1-芘丁酸 N-羟基琥珀酰亚胺酯(PASE)修饰,以结合氨苯基硼酸(APBA)。PASE 的引入可以桥接 MCNT 和 APBA,抑制非特异性吸附并减少结合分子之间的空间位阻。由于 MCNTs 的优异结构,PASE 然后在 MCNTs 上的功能化非常简单、特异和有效。通过与 APBA-MCNTs 的硼酸基团的可逆共价结合,可以实现糖肽的富集和分离。APBA-MCNTs 异常大的比表面积和高密度的硼酸基团导致糖肽的快速高效富集,即使存在大量干扰的非糖肽。功能化的 MCNTs 对辣根过氧化物酶消化物中的 21 种糖肽的富集具有高选择性,通过 MALDI-TOF 质谱分析显示,检测到的糖肽比通常的 9 种糖肽多,而使用市售的 APBA-琼脂糖只能检测到 9 种糖肽。即使存在浓度高 50 倍的非糖肽,该系统对糖肽仍具有更好的特异性。硼酸功能化的 MCNTs 为精确的糖蛋白质组学分析提供了一种有前途的选择性富集平台。