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一种基于共同轻链形式和人免疫球蛋白G稳定结构生成双特异性抗体的新方法。

A new approach for generating bispecific antibodies based on a common light chain format and the stable architecture of human immunoglobulin G.

作者信息

De Nardis Camilla, Hendriks Linda J A, Poirier Emilie, Arvinte Tudor, Gros Piet, Bakker Alexander B H, de Kruif John

机构信息

From the Crystal and Structural Chemistry Group, Bijvoet Center for Biomolecular Research, Department of Chemistry, Faculty of Science, Utrecht University, 3584 CH Utrecht, The Netherlands.

Merus N.V., 3584 CM Utrecht, The Netherlands.

出版信息

J Biol Chem. 2017 Sep 1;292(35):14706-14717. doi: 10.1074/jbc.M117.793497. Epub 2017 Jun 27.

Abstract

Bispecific antibodies combine two different antigen-binding sites in a single molecule, enabling more specific targeting, novel mechanisms of action, and higher clinical efficacies. Although they have the potential to outperform conventional monoclonal antibodies, many bispecific antibodies have issues regarding production, stability, and pharmacokinetic properties. Here, we describe a new approach for generating bispecific antibodies using a common light chain format and exploiting the stable architecture of human immunoglobulin G We used iterative experimental validation and computational modeling to identify multiple Fc variant pairs that drive efficient heterodimerization of the antibody heavy chains. Accelerated stability studies enabled selection of one Fc variant pair dubbed "DEKK" consisting of substitutions L351D and L368E in one heavy chain combined with L351K and T366K in the other. Solving the crystal structure of the DEKK Fc region at a resolution of 2.3 Å enabled detailed analysis of the interactions inducing CH3 interface heterodimerization. Local shifts in the IgG backbone accommodate the introduction of lysine side chains that form stabilizing salt-bridge interactions with substituted and native residues in the opposite chain. Overall, the CH3 domain adapted to these shifts at the interface, yielding a stable Fc conformation very similar to that in wild-type IgG. Using the DEKK format, we generated the bispecific antibody MCLA-128, targeting human EGF receptors 2 and 3. MCLA-128 could be readily produced and purified at industrial scale with a standard mammalian cell culture platform and a routine purification protocol. Long-term accelerated stability assays confirmed that MCLA-128 is highly stable and has excellent biophysical characteristics.

摘要

双特异性抗体在单个分子中结合了两个不同的抗原结合位点,能够实现更特异的靶向、新颖的作用机制以及更高的临床疗效。尽管它们有潜力超越传统单克隆抗体,但许多双特异性抗体在生产、稳定性和药代动力学特性方面存在问题。在此,我们描述了一种使用共轻链形式并利用人免疫球蛋白G的稳定结构来生成双特异性抗体的新方法。我们使用迭代实验验证和计算建模来鉴定多个驱动抗体重链高效异源二聚化的Fc变体对。加速稳定性研究使得能够选择一个名为“DEKK”的Fc变体对,其由一条重链中的L351D和L368E替换与另一条重链中的L351K和T366K组成。以2.3 Å的分辨率解析DEKK Fc区域的晶体结构,使得能够详细分析诱导CH₃界面异源二聚化的相互作用。IgG主链的局部位移适应了赖氨酸侧链的引入,这些侧链与相对链中的取代残基和天然残基形成稳定的盐桥相互作用。总体而言,CH₃结构域在界面处适应了这些位移,产生了一种与野生型IgG非常相似的稳定Fc构象。使用DEKK形式,我们生成了靶向人表皮生长因子受体2和3的双特异性抗体MCLA - 128。MCLA - 128可以通过标准的哺乳动物细胞培养平台和常规纯化方案在工业规模上轻松生产和纯化。长期加速稳定性测定证实MCLA - 128高度稳定且具有优异的生物物理特性。

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