Biomolecular HTS Center, Therapeutic Proteins, Regeneron Pharmaceuticals, Tarrytown, NY, USA.
Biomolecular HTS Center, Therapeutic Proteins, Regeneron Pharmaceuticals, Tarrytown, NY, USA.
Anal Biochem. 2020 Mar 15;593:113580. doi: 10.1016/j.ab.2020.113580. Epub 2020 Jan 10.
Surface plasmon resonance (SPR) is a well-established method to characterize biomolecular interactions and is widely used in drug discovery and development. Here, we demonstrate that capture surfaces profoundly impact the binding kinetics parameters that are measured for antibody-antigen interactions. Six unique antibody-antigen interactions were characterized using eight different anti-human IgG capture surfaces. The antigen binding affinities for six different human monoclonal antibodies (hmAbs) captured using three different goat anti-human Fc (AHC) polyclonal antibody (pAb) surfaces were in reasonable agreement (3-7-fold weaker) with those measured by kinetic exclusion assay (KinExA). In contrast, up to 81, 32, 489, 2826, and 219-fold weaker antigen binding affinities were measured using mouse AHC mAb, Protein G, Protein A, Protein A/G, and Protein L surfaces, respectively. Protein A, Protein A/G and Protein G interacted with the Fab of hmAbs, possibly affecting antigen binding to hmAbs captured over these surfaces. Additional studies revealed that mouse AHC mAb binds hmAbs with a weak affinity (5.5-36.3 nM) and t values of 1.4-3.3min, compared to the sub-nanomolar affinities of the goat AHC pAbs. These results emphasize the value of measuring binding kinetics of the capture molecule before immobilizing them onto the sensor surface to perform capture kinetics assays on label-free biosensors.
表面等离子体共振(SPR)是一种成熟的方法,可以用于表征生物分子相互作用,并且在药物发现和开发中得到了广泛的应用。在这里,我们证明了捕获表面会极大地影响用于测量抗体-抗原相互作用的结合动力学参数。使用八种不同的抗人 IgG 捕获表面,对六种独特的抗体-抗原相互作用进行了表征。使用三种不同的山羊抗人 Fc(AHC)多克隆抗体(pAb)表面捕获的六种不同的人源单克隆抗体(hmAb)的抗原结合亲和力与通过动力学排除测定(KinExA)测量的亲和力相当(弱 3-7 倍)。相比之下,使用鼠 AHC mAb、Protein G、Protein A、Protein A/G 和 Protein L 表面分别测量到弱 81、32、489、2826 和 219 倍的抗原结合亲和力。Protein A、Protein A/G 和 Protein G 与 hmAbs 的 Fab 相互作用,可能会影响抗原与这些表面上捕获的 hmAbs 的结合。进一步的研究表明,鼠 AHC mAb 与 hmAbs 的结合亲和力较弱(5.5-36.3 nM),t 值为 1.4-3.3 min,而山羊 AHC pAb 的亲和力则低于纳摩尔。这些结果强调了在将捕获分子固定到传感器表面上以进行无标记生物传感器的捕获动力学测定之前,测量捕获分子的结合动力学的重要性。