Faculty of Engineering and Natural Sciences, Sabanci University, Tuzla 34956, Istanbul, Turkey.
School of Engineering and Natural Sciences, Istanbul Medipol University, Beykoz 34810, Istanbul, Turkey.
Langmuir. 2022 Dec 6;38(48):14623-14634. doi: 10.1021/acs.langmuir.2c02022. Epub 2022 Nov 23.
Fc γ receptors (FcγRs) are one of the structures that can initiate effector function for monoclonal antibodies. FcγRIa has the highest affinity toward IgG1-type monoclonal antibodies among all FcγRs. In this study, a comprehensive characterization was performed for FcγRIa as a potential affinity ligand for IgG1-type monoclonal antibody binding. The binding interactions were assessed with the SPR technique using different immobilization techniques such as EDC-NHS coupling, streptavidin-biotin interaction, and His-tagged FcγRIa capture. The His-tagged FcγRIa capture was the most convenient method based on assay repeatability. Next, a crude IgG1 sample and its fractions with different monomer contents obtained from protein A affinity chromatography were used to evaluate FcγRIa protein in terms of monoclonal antibody binding capacity. The samples were also compared with a protein A-immobilized chip (a frequently used affinity ligand) for IgG1 binding responses. The antibody binding capacity of the protein A-immobilized chip surface was significantly better than that of the FcγRIa-immobilized chip surface due to its 5 Ig binding domains. The antibody binding responses changed similarly with protein A depending on the monomer content of the sample. Finally, a different configuration was used to assess the binding affinity of free FcγRs (FcγRIa, FcγRIIa, and FcγRIIIa) to three different immobilized IgGs by immobilizing protein L to the chip surface. Unlike previous immobilization techniques tested where the FcγRIa was utilized as a ligand, nonimmobilized or free FcγRIa resulted in a significantly higher antibody binding response than free protein A. In this configuration, kinetics data of FcγRI revealed that the association rate ( 50-80 × 10 M s) increased in comparison to His capture method (1.9-2.4 × 10 M s). In addition, the dissociation rate ( 10 s) seemed slower over the His capture method (10 s) and provided stability on the chip surface during the dissociation phase. The values for FcγRIa were found in the picomolar range (2.1-10.33 pM from steady-state affinity analysis and 37.5-46.2 pM from kinetic analysis) for IgG1-type antibodies. FcγRIa possesses comparable ligand potential as well as protein A. Even though the protein A-immobilized surface bound more antibodies than the FcγRIa-captured surface, FcγRIa presented a significant antibody binding capacity in protein L configuration. The results suggest FcγRIa protein as a potential ligand for site-oriented immobilization of IgG1-type monoclonal antibodies, and it needs further performance investigation on different surfaces and interfaces for applications such as sensing and antibody purification.
Fcγ 受体(FcγRs)是能够引发单克隆抗体效应功能的结构之一。在所有 FcγRs 中,FcγRIa 对 IgG1 型单克隆抗体具有最高的亲和力。在这项研究中,FcγRIa 作为 IgG1 型单克隆抗体结合的潜在亲和配体进行了全面表征。使用不同的固定化技术,如 EDC-NHS 偶联、链霉亲和素-生物素相互作用和 His 标记的 FcγRIa 捕获,通过 SPR 技术评估了结合相互作用。基于检测重复性,His 标记的 FcγRIa 捕获是最方便的方法。接下来,使用从蛋白 A 亲和层析获得的不同单体含量的粗 IgG1 样品及其级分来评估 FcγRIa 蛋白在单克隆抗体结合能力方面的情况。还将这些样品与蛋白 A 固定化芯片(一种常用的亲和配体)进行比较,以评估它们对 IgG1 的结合反应。由于其 5 个 Ig 结合结构域,蛋白 A 固定化芯片表面的抗体结合能力明显优于 FcγRIa 固定化芯片表面。由于其 5 个 Ig 结合结构域,蛋白 A 固定化芯片表面的抗体结合能力明显优于 FcγRIa 固定化芯片表面。由于其 5 个 Ig 结合结构域,蛋白 A 固定化芯片表面的抗体结合能力明显优于 FcγRIa 固定化芯片表面。样品的单体含量,抗体结合反应相似。最后,使用不同的配置来评估三种不同固定化 IgG 与三种不同固定化 IgG 的游离 FcγRs(FcγRIa、FcγRIIa 和 FcγRIIIa)的结合亲和力通过将蛋白 L 固定在芯片表面。与之前测试的固定化技术不同,其中 FcγRIa 被用作配体,未固定或游离的 FcγRIa 导致抗体结合反应明显高于游离蛋白 A。在这种配置中,FcγRI 的动力学数据表明,与 His 捕获方法(1.9-2.4×10 M s)相比,缔合速率(50-80×10 M s)增加。此外,与 His 捕获方法(10 s)相比,解离速率(10 s)似乎较慢,并且在解离阶段在芯片表面提供稳定性。从稳态亲和力分析中得到的 FcγRIa 的 值在皮摩尔范围内(2.1-10.33 pM),从动力学分析中得到的 值在皮摩尔范围内(2.1-10.33 pM)从动力学分析中得到的 值在皮摩尔范围内(2.1-10.33 pM)从动力学分析中得到的 值在皮摩尔范围内(2.1-10.33 pM)从动力学分析中得到的 值在皮摩尔范围内(2.1-10.33 pM)。从动力学分析中得到的 值在皮摩尔范围内(2.1-10.33 pM)。对于 IgG1 型抗体, 值在 37.5-46.2 pM 范围内。FcγRIa 对 IgG1 型抗体具有相当的配体潜力和蛋白 A。尽管蛋白 A 固定化表面结合的抗体比 FcγRIa 捕获表面多,但 FcγRIa 在蛋白 L 构型中表现出显著的抗体结合能力。结果表明 FcγRIa 蛋白作为 IgG1 型单克隆抗体定向固定的潜在配体,需要在不同的表面和界面上进一步研究其性能,以用于传感和抗体纯化等应用。