Engineered ipilimumab variants that bind human and mouse CTLA-4.

IF 5.6 2区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
mAbs Pub Date : 2025-12-01 Epub Date: 2025-01-24 DOI:10.1080/19420862.2025.2451296
Brett Robison, S J Diong, Anusha Kumar, Thomas M Moon, Olin Chang, Bryant Chau, Christine Bee, Ishita Barman, Arvind Rajpal, Alan J Korman, Sean West, Pavel Strop, Peter S Lee
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引用次数: 0

Abstract

Testing of candidate monoclonal antibody therapeutics in preclinical models is an essential step in drug development. Identification of antibody therapeutic candidates that bind their human targets and cross-react to mouse orthologs is often challenging, especially for targets with low sequence homology. In such cases, surrogate antibodies that bind mouse orthologs must be used. The antibody 9D9, which binds mouse CTLA-4, is a commonly used surrogate for CTLA-4 checkpoint blockade studies in mouse cancer models. In this work, we reveal that 9D9 has significant biophysical dissimilarities to therapeutic CTLA-4 antibodies. The 9D9-mCTLA4 complex crystal structure was determined and shows that the surrogate antibody binds an epitope distinct from ipilimumab and tremelimumab. In addition, while ipilimumab has pH-independent binding to hCTLA-4, 9D9 loses binding to mCTLA-4 at physiologically relevant acidic pH ranges. We used phage and yeast display to engineer ipilimumab to bind mouse CTLA-4 with single-digit nM affinity from an initial state with no apparent binding. The engineered variants showed pH-independent and cross-reactive binding to both mouse and human CTLA-4. Crystal structures of a variant in complex with both mouse and human CTLA-4 confirmed that it targets an equivalent epitope as ipilimumab. These cross-reactive ipilimumab variants may facilitate improved translatability and future mechanism-of-action studies for anti-CTLA-4 targeting in murine models.

结合人和小鼠CTLA-4的工程易普利姆单抗变体。
在临床前模型中测试候选单克隆抗体疗法是药物开发的重要步骤。鉴定结合人类靶点并与小鼠同源物交叉反应的候选抗体通常具有挑战性,特别是对于低序列同源性的靶点。在这种情况下,必须使用与小鼠同源物结合的替代抗体。结合小鼠CTLA-4的抗体9D9是在小鼠癌症模型中CTLA-4检查点阻断研究中常用的替代物。在这项工作中,我们发现9D9与治疗性CTLA-4抗体具有显著的生物物理差异。测定了9D9-mCTLA4复合物的晶体结构,并表明该替代抗体结合了不同于ipilimumab和tremelimumab的表位。此外,虽然ipilimumab与hCTLA-4具有pH独立的结合,但9D9在生理相关的酸性pH范围内失去与mCTLA-4的结合。我们使用噬菌体和酵母展示来设计ipilimumab,使其从初始状态结合小鼠CTLA-4,具有个位数nM亲和力,没有明显的结合。工程变异体与小鼠和人CTLA-4均表现出ph无关和交叉反应性结合。小鼠和人CTLA-4复合物的一种变体的晶体结构证实,它靶向与伊匹单抗相同的表位。这些交叉反应的易普利姆单抗变体可能有助于提高小鼠模型中抗ctla -4靶向的可翻译性和未来的作用机制研究。
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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