State Key Laboratory of NBC Protection for Civilian, Beijing 102205, China.
Int J Mol Sci. 2024 Aug 9;25(16):8681. doi: 10.3390/ijms25168681.
The effective attachment of antibodies to the immune sensing interface is a crucial factor that determines the detection performance of immunosensors. Therefore, this study aims to investigate a novel antibody immobilization material with low molecular weight, high stability, and excellent directional immobilization effect. In this study, we employed molecular docking technology based on the ZDOCK algorithm to virtually screen DNA functional ligands (DNAFL) for the Fc segment of antibodies. Through a comprehensive analysis of the key binding sites and contact propensities at the interface between DNAFL and IgG antibody, we have gained valuable insights into the affinity relationship, as well as the principles governing amino acid and nucleotide interactions at this interface. Furthermore, molecular affinity experiments and competitive binding experiments were conducted to validate both the binding ability of DNAFL to IgG antibody and its actual binding site. Through affinity experiments using multi-base sequences, we identified bases that significantly influence antibody-DNAFL binding and successfully obtained DNAFL with an enhanced affinity towards the IgG Fc segment. These findings provide a theoretical foundation for the targeted design of higher-affinity DNAFLs while also presenting a new technical approach for immunosensor preparation with potential applications in biodetection.
抗体与免疫感应界面的有效结合是决定免疫传感器检测性能的关键因素。因此,本研究旨在探索一种新型的抗体固定材料,该材料具有分子量低、稳定性高和优异的定向固定效果。在本研究中,我们采用基于 ZDOCK 算法的分子对接技术,虚拟筛选抗体 Fc 段的 DNA 功能配体(DNAFL)。通过全面分析 DNAFL 和 IgG 抗体界面处的关键结合位点和接触倾向,我们深入了解了亲和力关系以及界面处氨基酸和核苷酸相互作用的规律。此外,进行了分子亲和力实验和竞争结合实验,以验证 DNAFL 与 IgG 抗体的结合能力及其实际结合位点。通过使用多碱基序列的亲和力实验,我们确定了对抗体-DNAFL 结合有显著影响的碱基,并成功获得了对 IgG Fc 段具有增强亲和力的 DNAFL。这些发现为靶向设计更高亲和力的 DNAFL 提供了理论基础,同时也为生物检测中免疫传感器制备提供了一种新的技术方法。