Rational design of antibodies with pH-dependent antigen-binding properties using structural insights from broadly neutralizing antibodies against α-neurotoxins.

IF 7.3 2区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
mAbs Pub Date : 2025-12-01 Epub Date: 2025-09-11 DOI:10.1080/19420862.2025.2553624
Jack Wade, Nina Štrancar, Monica L Fernández-Quintero, Suzana Siebenhaar, Tom Jansen, Edward P W Meier, Timothy P Jenkins, Sara P Bjørn, Giang T T Nguyen, Bruno Lomonte, José Maria Gutiérrez, Christoffer V Sørensen, Johannes R Loeffler, Arijit Paul, Tulika Tulika, Johnny Arnsdorf, Sanne Schoffelen, Emil V S Lundquist, Jennifer Sørensen, Andrew B Ward, Bjørn G Voldborg, Markus-Frederik Bohn, Esperanza Rivera-de-Torre, J Preben Morth, Andreas H Laustsen
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引用次数: 0

Abstract

Antibodies that bind in a pH-dependent manner to their antigens show promise for enhanced neutralization potency and blocking capacity against extracellular targets. However, because the mechanisms governing pH-dependent antigen binding remain poorly understood, engineering approaches are often limited to incorporating histidine residues in the antibody complementarity-determining regions. Here, we use a panel of human monoclonal antibodies with neutralizing activity to long-chain α-neurotoxins (LNTxs) to investigate pH-dependent antigen binding. The antibodies vary in their light chains but have conserved histidine residues in their variable domains, allowing us to explore how other residues may affect pH dependence. Comparative structural and molecular dynamics studies between two antibodies with and without pH-dependent antigen-binding properties reveal that both antibodies neutralize LNTxs by mimicking LNTx-receptor interactions through their heavy chains. We hypothesize that part of the pH-dependency can be controlled by the light chain through modulation of water access to residues at the heavy-light-chain interface. We show that pH-dependent antigen-binding properties can be introduced into monoclonal antibodies through the substitution of selected residues at the heavy-light-chain interface. Specifically, we replaced tyrosine residues in the light chain with small polar and apolar amino acid residues in a structurally related anti-LNTx antibody with limited inherent pH-dependent antigen-binding properties, and found that these smaller substitutions enhanced pH-dependence more effectively than histidine substitutions alone. Our findings suggest a strategy for engineering pH-dependent antigen binding in antibodies that goes beyond the exclusive use of histidine doping.

利用广泛中和抗体抗α-神经毒素的结构见解,合理设计具有ph依赖性抗原结合特性的抗体。
以ph依赖的方式与抗原结合的抗体显示出增强的中和效力和对细胞外靶标的阻断能力。然而,由于控制ph依赖性抗原结合的机制仍然知之甚少,工程方法通常仅限于将组氨酸残基纳入抗体互补性决定区域。在这里,我们使用一组具有中和长链α-神经毒素(LNTxs)活性的人单克隆抗体来研究ph依赖性抗原结合。抗体的轻链不同,但在其可变结构域中有保守的组氨酸残基,这使我们能够探索其他残基如何影响pH依赖性。两种具有和不具有ph依赖性抗原结合特性的抗体的比较结构和分子动力学研究表明,两种抗体都是通过模仿lntx受体的重链相互作用来中和lntx的。我们假设部分的ph依赖性可以由轻链通过调节水进入重-轻链界面残基来控制。我们证明了ph依赖的抗原结合特性可以通过在重-轻链界面上替代选定的残基引入单克隆抗体。具体来说,我们在一种结构相关的抗lntx抗体中,用小的极性和极性氨基酸残基取代轻链中的酪氨酸残基,该抗体具有有限的固有ph依赖性抗原结合特性,并发现这些较小的取代比单独取代组氨酸更有效地增强了ph依赖性。我们的研究结果提出了一种策略,用于工程ph依赖性抗原结合抗体,而不仅仅是使用组氨酸掺杂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
mAbs
mAbs 工程技术-仪器仪表
CiteScore
10.70
自引率
11.30%
发文量
77
审稿时长
6-12 weeks
期刊介绍: mAbs is a multi-disciplinary journal dedicated to the art and science of antibody research and development. The journal has a strong scientific and medical focus, but also strives to serve a broader readership. The articles are thus of interest to scientists, clinical researchers, and physicians, as well as the wider mAb community, including our readers involved in technology transfer, legal issues, investment, strategic planning and the regulation of therapeutics.
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