European Synchrotron Radiation Facility, 71 Avenue des Martyrs, 38042, Grenoble, France.
Sanofi R&D, Bio Structure and Biophysics, Centre de Recherche Vitry-Sur-Seine, 94403, Vitry-Sur-Seine Cedex, France.
Sci Rep. 2023 May 29;13(1):8694. doi: 10.1038/s41598-023-35678-4.
Multi-specific antibodies (msAbs) are being developed as next generation antibody-based therapeutics. Knowledge of the three-dimensional structures, in the full antibody context, of their fragment antigen-binding (Fab) moieties with or without bound antigens is key to elucidating their therapeutic efficiency and stability. However, the flexibility of msAbs, a feature essential for their multi specificity, has hindered efforts in this direction. Cross-Over Dual Variable immunoglobulin (CODV) is a promising bispecific antibody format, designed to simultaneously target the interleukins IL4 and IL13. In this work we present the biophysical and structural characterisation of a CODV:IL13 complex in the full antibody context, using cryo-electron microscopy at an overall resolution of 4.2 Å. Unlike the 1:2 stoichiometry previously observed for CODV:IL4, CODV:IL13 shows a 1:1 stoichiometry. As well as providing details of the IL13-CODV binding interface, including the residues involved in the epitope-paratope region, the structure of CODV:IL13 also validates the use of labelling antibody as a new strategy for the single particle cryo-EM study of msAbs in complex with one, or more, antigens. This strategy reduced the inherent flexibility of the IL13 binding domain of CODV without inducing either structural changes at the epitope level or steric hindrance between the IL4 and IL13 binding regions of CODV. The work presented here thus also contributes to the development of methodology for the structural study of msAbs, a promising platform for cancer immunotherapy.
多特异性抗体(msAbs)作为下一代基于抗体的治疗药物正在被开发。了解其片段抗原结合(Fab)部分的三维结构,无论是与抗原结合还是不结合,对于阐明其治疗效率和稳定性都是至关重要的。然而,msAbs 的灵活性是其多特异性的关键特征,这一特征阻碍了这方面的研究。交叉双可变免疫球蛋白(CODV)是一种有前途的双特异性抗体形式,旨在同时靶向白细胞介素 IL4 和 IL13。在这项工作中,我们使用冷冻电子显微镜在总体分辨率为 4.2Å 的情况下,对 CODV:IL13 复合物在完整抗体环境中的生物物理和结构特征进行了表征。与之前观察到的 CODV:IL4 1:2 摩尔比不同,CODV:IL13 显示出 1:1 的摩尔比。除了提供 IL13-CODV 结合界面的详细信息,包括参与表位-互补位区域的残基外,CODV:IL13 的结构还验证了标记抗体作为一种新策略,用于单颗粒冷冻电镜研究与一个或多个抗原结合的 msAbs。这种策略降低了 CODV 的 IL13 结合结构域的固有灵活性,而不会在表位水平引起结构变化,也不会在 CODV 的 IL4 和 IL13 结合区域之间产生空间位阻。因此,这里介绍的工作也为 msAbs 的结构研究方法的发展做出了贡献,这是癌症免疫治疗的一个有前途的平台。