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从将湿实验室实验与分子模拟相结合以改进单克隆抗体人源化中吸取的经验教训。

Lessons learned from merging wet lab experiments with molecular simulation to improve mAb humanization.

作者信息

Schwaigerlehner L, Pechlaner M, Mayrhofer P, Oostenbrink C, Kunert R

机构信息

Department of Biotechnology, University of Natural Resources and Life Sciences, Muthgasse 18, Vienna, Austria.

Department of Material Sciences and Process Engineering, University of Natural Resources and Life Sciences, Muthgasse 18, Vienna, Austria.

出版信息

Protein Eng Des Sel. 2018 Jul 1;31(7-8):257-265. doi: 10.1093/protein/gzy009.

Abstract

Humanized monoclonal antibodies (mAbs) are among the most promising modern therapeutics, but defined engineering strategies are still not available. Antibody humanization often leads to a loss of affinity, as it is the case for our model antibody Ab2/3H6 (PDB entry 3BQU). Identifying appropriate back-to-mouse mutations is needed to restore binding affinity, but highly challenging. In order to get more insight, we have applied molecular dynamics simulations and correlated them to antibody binding and expression in wet lab experiments. In this study, we discuss six mAb variants and investigate a tyrosine conglomeration, an isopolar substitution and the improvement of antibody binding towards wildtype affinity. In the 3D structure of the mouse wildtype, residue R94h is surrounded by three tyrosines which form a so-called 'tyrosine cage'. We demonstrate that the tyrosine cage has a supporting function for the CDRh3 loop conformation. The isopolar substitution is not able to mimic the function appropriately. Finally, we show that additional light chain mutations can restore binding to wildtype-comparable level, and also improve the expression of the mAb significantly. We conclude that the variable light chain of Ab2/3H6 is of underestimated importance for the interaction with its antigen mAb 2F5.

摘要

人源化单克隆抗体(mAb)是最有前景的现代疗法之一,但尚未有明确的工程策略。抗体人源化常常导致亲和力丧失,我们的模型抗体Ab2/3H6(蛋白质数据银行条目3BQU)就是如此。为恢复结合亲和力,需要确定合适的回鼠突变,但极具挑战性。为深入了解,我们应用了分子动力学模拟,并将其与湿实验室实验中的抗体结合和表达相关联。在本研究中,我们讨论了六种单克隆抗体变体,并研究了酪氨酸聚集、等极性取代以及抗体与野生型亲和力结合的改善情况。在小鼠野生型的三维结构中,残基R94h被三个酪氨酸包围,形成所谓的“酪氨酸笼”。我们证明酪氨酸笼对CDRh3环构象具有支撑作用。等极性取代无法适当地模拟该功能。最后,我们表明额外的轻链突变可以将结合恢复到与野生型相当的水平,并且还能显著提高单克隆抗体的表达。我们得出结论,Ab2/3H6的可变轻链在与其抗原单克隆抗体2F5的相互作用中具有被低估的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e82/6277173/bdde4e83a30c/gzy009f01.jpg

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