Antibody Discovery and Protein Engineering (ADPE), Merck Healthcare KGaA, Darmstadt, Germany.
Institute for Organic Chemistry and Biochemistry, Technical University of Darmstadt, Darmstadt, Germany.
MAbs. 2023 Jan-Dec;15(1):2236265. doi: 10.1080/19420862.2023.2236265.
Here, we generated bispecific antibody (bsAb) derivatives that mimic the function of interleukin (IL)-18 based on single domain antibodies (sdAbs) specific to IL-18 Rα and IL-18 Rβ. For this, camelids were immunized, followed by yeast surface display (YSD)-enabled discovery of VHHs targeting the individual receptor subunits. Upon reformatting into a strictly monovalent (1 + 1) bispecific sdAb architecture, several bsAbs triggered dose-dependent IL-18 R downstream signaling on IL-18 reporter cells, as well as IFN-γ release by peripheral blood mononuclear cells in the presence of low-dose IL-12. However, compared with IL-18, potencies and efficacies were considerably attenuated. By engineering paratope valencies and the spatial orientation of individual paratopes within the overall design architecture, we were able to generate IL-18 mimetics displaying significantly augmented functionalities, resulting in bispecific cytokine mimetics that were more potent than IL-18 in triggering proinflammatory cytokine release. Furthermore, generated IL-18 mimetics were unaffected from inhibition by IL-18 binding protein decoy receptor. Essentially, we demonstrate that this strategy enables the generation of IL-18 mimetics with tailor-made cytokine functionalities.
在这里,我们基于针对 IL-18Rα 和 IL-18Rβ 的单域抗体 (sdAb),生成了模拟白细胞介素 (IL)-18 功能的双特异性抗体 (bsAb) 衍生物。为此,对骆驼进行免疫,然后通过酵母表面展示 (YSD) 发现针对单个受体亚基的 VHH。在重新构建为严格单价 (1+1) 的双特异性 sdAb 结构后,几种 bsAb 在存在低剂量 IL-12 的情况下,在 IL-18 报告细胞上触发了剂量依赖性的 IL-18R 下游信号传导,以及外周血单个核细胞中 IFN-γ 的释放。然而,与 IL-18 相比,效力和功效明显减弱。通过工程化变构价和单个变构位在整体设计结构中的空间取向,我们能够生成显示出显著增强功能的 IL-18 模拟物,从而产生比 IL-18 更能触发促炎细胞因子释放的双特异性细胞因子模拟物。此外,生成的 IL-18 模拟物不受 IL-18 结合蛋白诱饵受体的抑制影响。从本质上讲,我们证明了这种策略能够生成具有定制细胞因子功能的 IL-18 模拟物。