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通过框架突变的理性设计来调控抗体的稳定性和功能

英文原题:Tuning antibody stability and function by rational designs of framework mutations.

查看英文原题

Tuning antibody stability and function by rational designs of framework mutations.

PubMed 2025/07/13(内容时间) MAbs Q1 · IF 7.9(JCR 2025)

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中文摘要

人工智能和机器学习模型已被开发用于设计特异性识别抗原的抗体。然而,这些方法通常聚焦于抗体互补决定区(CDR),而忽略了免疫球蛋白框架区(FW),后者为柔性的CDR环提供结构刚性和支撑。

在此,我们提出了一种整合的计算-实验工作流程,结合静态结构分析、分子动力学模拟以及体外理化和功能测定,以生成针对FW突变的合理设计,从而调控抗体的稳定性和活性。

我们首先表明,与使用抗体结构信息的方法相比,近期抗体特异性语言模型在FW诱变方面缺乏洞察力。以广泛使用的乳腺癌治疗药物曲妥珠单抗作为用例,我们设计了位于CDR远端的稳定化突变体,这些突变体保留了抗体结合其同源抗原(HER2)并诱导抗体依赖性细胞介导的细胞毒性的功能。有趣的是,在分子动力学模拟预测的局部主链运动的指导下,我们在曲妥珠单抗轻链上设计了一个FW突变,该突变保留了抗原结合效应,但丧失了Fab介导和Fc介导的效应功能。这凸显了FW对抗体远端区域所引发的免疫功能的影响,以及在评估抗体功能时考虑结合亲和力之外其他属性的重要性。

我们的方法整合了结构域间动力学以及FW与Fc结构域之间的远端效应,将抗体工程的范围扩展到CDR之外,并强调了在优化抗体稳定性、可开发性和功能时考虑整个抗体结构的整体视角的重要性。

展开英文摘要原文

Artificial intelligence and machine learning models have been developed to engineer antibodies for specific recognition of antigens. These approaches, however, often focus on the antibody complementarity-determining region (CDR) whilst ignoring the immunoglobulin framework (FW), which provides structural rigidity and support for the flexible CDR loops.

Here we present an integrated computational-experimental workflow, combining static structure analyses, molecular dynamics simulations and in vitro physicochemical and functional assays to generate rational designs of FW mutations for modulating antibody stability and activity.

We first showed that recent antibody-specific language models lacked insights in FW mutagenesis, in comparison to approaches that use antibody structure information. Using the widely used breast cancer therapeutic trastuzumab as a use case, we designed stabilizing mutants which were distal to the CDR and preserved the antibody's functionality to engage its cognate antigen (HER2) and induce antibody-dependent cellular cytotoxicity.

Interestingly, guided by local backbone motions predicted using molecular dynamics simulations, we designed a FW mutation on the trastuzumab light chain that retained antigen-binding effects, but lost Fab-mediated and Fc-mediated effector functions. This highlighted the effects of FW on immunological functions engendered in distal areas of the antibody, and the importance of considering attributes other than binding affinity when assessing antibody function.

Our approach incorporates interdomain dynamics and distal effects between FW and the Fc domains, expands the scope of antibody engineering beyond the CDR, and underscores the importance of a holistic perspective that considers the entire antibody structure in optimizing antibody stability, developability and function.

论文信息

作者
Ng JCF、Chenoweth A、De Sciscio ML、Grandits M、Cheung A、Chu T、McCraw A、Chauhan J
单位
Research Department of Structural and Molecular Biology, Division of Biosciences, University College London, London, UK.United Kingdom
文献类型
非美国政府资助研究
期刊
mAbs2025 Dec
原文标识
PubMed 40653772 · DOI 10.1080/19420862.2025.2532117