School of Life Science and Technology, Beijing Institute of Technology, Beijing 100081, PR China; National Center for Protein Sciences Beijing, State Key Laboratory of Proteomics, Beijing Proteome Research Center, Beijing Institute of Radiation Medicine, Beijing 102206, PR China.
Talanta. 2013 Oct 15;115:842-8. doi: 10.1016/j.talanta.2013.06.031. Epub 2013 Jul 2.
Protein glycosylation regulates numerous important biological processes and plays key roles in many diseases including cancer, diabetes and inflammation. The ability to efficiently profile variation of protein glycosylation in biological samples is very useful for identifying new diagnostic biomarkers or developing new therapeutic approaches. Due to the low availability of glycoprotein/glycopeptide from natural sources, enrichment before mass spectrometry (MS) analysis is usually a prerequisite. Affinity enrichment using lectins is currently one of the most widely adopted approaches. Conventionally, lectins are immobilized on solid supporting materials for sample recovery. However, the limited specific surface area, high steric hindrance and rigid nature of such supporting materials restricts lectin loading amount and results in low flexibility as well as accessibility of the immobilized lectins. Therefore, we proposed using core-shell microparticles composed of silica core and brush-like polymer chains shell for improved lectin immobilization. The surface bound brush-like polymer are synthesized by in situ growth of polymer chains from microparticle surface using surface initiated atom transfer radical polymerization (SI-ATRP). The flexible non-crosslinked polymer chains not only provide numerous binding sites, but also work as three-dimensional support for lectin immobilization, which leads to high loading amount and good accessibility of the immobilized lectin. Successful enrichment which facilitated glycoprotein/glycopeptide identification is demonstrated.
蛋白质糖基化调控着许多重要的生物学过程,在癌症、糖尿病和炎症等多种疾病中发挥着关键作用。能够有效地分析生物样本中蛋白质糖基化的变化,对于鉴定新的诊断生物标志物或开发新的治疗方法非常有用。由于天然来源的糖蛋白/糖肽的可用性较低,因此在质谱(MS)分析之前进行富集通常是前提条件。利用凝集素进行亲和富集是目前应用最广泛的方法之一。传统上,凝集素被固定在固体支撑材料上用于样品回收。然而,这种支撑材料的有限比表面积、高空间位阻和刚性限制了凝集素的负载量,导致固定化凝集素的灵活性和可及性较差。因此,我们提出使用由硅胶核和刷状聚合物链壳组成的核壳型微球来改善凝集素的固定化。通过从微球表面引发原子转移自由基聚合(SI-ATRP)原位生长聚合物链来合成表面结合的刷状聚合物。柔性的非交联聚合物链不仅提供了众多的结合位点,而且还作为三维支架用于凝集素的固定化,从而实现了高负载量和良好的固定化凝集素的可及性。成功地进行了富集,从而促进了糖蛋白/糖肽的鉴定。