Department of Surgery and Neag Cancer Center , UConn Health , Farmington , Connecticut 06032 , United States.
School of Chemistry , National University of Ireland at Galway , Galway , Ireland.
Anal Chem. 2019 Apr 2;91(7):4913-4919. doi: 10.1021/acs.analchem.9b01155. Epub 2019 Mar 14.
The molecular orientation of antibodies immobilized on solid surfaces plays a significant role in the sensitivity of immunoassays and efficiency of protein isolation using antibody-decorated nanoparticles. Optimally, nearly all antibody binding sites should be available to bind. Here we report for the first time an LC-MS/MS approach to probe antibody orientation directly, utilizing sterically restricted proteolysis. Trypsin-decorated magnetic beads (MBs, 1.5 μm) were much larger than average antibody-free areas (55 × 55 nm) of oriented antibodies on MBs, restricting proteolysis to mainly Fab regions. Randomly attached antibodies on MB surfaces served as controls. The tryptic-hydrolyzed peptides were quantified using LC-MS/MS peptide analysis as markers for average positions of Fc and Fab of antibodies on the beads. Different patterns of digestion rates were found due to proteolysis of the oriented and nonoriented antibodies on MBs. For oriented antibodies, the peptides from outer Fab regions gave a much higher digestion rate than those from Fc regions, while for randomly immobilized antibodies digestion rates for Fab and Fc peptides were similar. This novel approach is a useful and convenient tool to characterize antibody orientation for immunoassays and other applications. The relative degree of orientation can be assessed using a metric R denoting amount of Fab marker peptides found divided by Fc + Fab marker peptides × 100%. Oriented antibodies on the MBs also provided more efficient antigen capture compared to randomly immobilized antibodies.
固定在固体表面上的抗体的分子取向在免疫分析的灵敏度和使用抗体修饰的纳米粒子分离蛋白质的效率方面起着重要作用。理想情况下,几乎所有的抗体结合位点都应该能够结合。在这里,我们首次报道了一种利用空间位阻限制蛋白水解直接探测抗体取向的 LC-MS/MS 方法。胰蛋白酶修饰的磁性珠(MBs,1.5 μm)比 MB 上定向抗体的平均无抗体区域(55×55 nm)大得多,限制蛋白水解主要发生在 Fab 区域。随机附着在 MB 表面上的抗体作为对照。使用 LC-MS/MS 肽分析定量分析胰蛋白酶水解肽,作为 MB 上抗体 Fc 和 Fab 平均位置的标志物。由于 MB 上定向和非定向抗体的蛋白水解,发现了不同的消化率模式。对于定向抗体,来自外部 Fab 区域的肽的消化率远高于来自 Fc 区域的肽,而对于随机固定的抗体,Fab 和 Fc 肽的消化率相似。这种新方法是一种用于免疫分析和其他应用的有用且方便的抗体定向特征描述工具。相对定向程度可以通过表示在外 Fab 区域发现的 Fab 标记肽量除以 Fc + Fab 标记肽×100%的度量 R 来评估。与随机固定的抗体相比,MB 上的定向抗体还提供了更有效的抗原捕获。