Harwardt Julia, Geyer Felix Klaus, Schoenfeld Katrin, Baumstark David, Molkenthin Vera, Kolmar Harald
Institute for Organic Chemistry and Biochemistry, Technical University of Darmstadt, Peter-Grünberg-Strasse 4, 64287 Darmstadt, Germany.
2bind GmbH, Im Gewerbepark D19a, 93059 Regensburg, Germany.
Antibodies (Basel). 2024 May 2;13(2):36. doi: 10.3390/antib13020036.
The optimization of the affinity of monoclonal antibodies is crucial for the development of drug candidates, as it can impact the efficacy of the drug and, thus, the dose and dosing regimen, limit adverse effects, and reduce therapy costs. Here, we present the affinity maturation of an EGFR×PD-L1 Two-in-One antibody for EGFR binding utilizing site-directed mutagenesis and yeast surface display. The isolated antibody variants target EGFR with a 60-fold-improved affinity due to the replacement of a single amino acid in the CDR3 region of the light chain. The binding properties of the Two-in-One variants were confirmed using various methods, including BLI measurements, real-time antigen binding measurements on surfaces with a mixture of both recombinant proteins and cellular binding experiments using flow cytometry as well as real-time interaction cytometry. An AlphaFold-based model predicted that the amino acid exchange of tyrosine to glutamic acid enables the formation of a salt bridge to an arginine at EGFR position 165. This easily adaptable approach provides a strategy for the affinity maturation of bispecific antibodies with respect to the binding of one of the two antigens.
单克隆抗体亲和力的优化对于候选药物的开发至关重要,因为它会影响药物疗效,进而影响剂量和给药方案,限制不良反应并降低治疗成本。在此,我们展示了一种用于EGFR结合的EGFR×PD-L1双特异性抗体通过定点诱变和酵母表面展示实现亲和力成熟的过程。由于轻链CDR3区域中单个氨基酸的替换,分离出的抗体变体对EGFR的亲和力提高了60倍。使用多种方法确认了双特异性变体的结合特性,包括生物层干涉测量(BLI)、在同时含有两种重组蛋白的表面上进行实时抗原结合测量、使用流式细胞术的细胞结合实验以及实时相互作用细胞术。基于AlphaFold的模型预测,酪氨酸到谷氨酸的氨基酸交换能够在EGFR的165位与精氨酸形成盐桥。这种易于应用的方法为双特异性抗体针对两种抗原之一的结合进行亲和力成熟提供了一种策略。