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On the humanization of VHHs: Prospective case studies experimental and computational characterization of structural determinants for functionality

机译:关于 VHH 的人源化:前瞻性案例研究、功能结构决定因素的实验和计算表征

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摘要

The humanization of camelid‐derived variable domain heavy chain antibodies (VHHs) poses challenges including immunogenicity, stability, and potential reduction of affinity. Critical to this process are complementarity‐determining regions (CDRs), Vernier and Hallmark residues, shaping the three‐dimensional fold and influencing VHH structure and function. Additionally, the presence of non‐canonical disulfide bonds further contributes to conformational stability and antigen binding. In this study, we systematically humanized two camelid‐derived VHHs targeting the natural cytotoxicity receptor NKp30. Key structural positions in Vernier and Hallmark regions were exchanged with residues from the most similar human germline sequences. The resulting variants were characterized for binding affinities, yield, and purity. Structural binding modes were elucidated through crystal structure determination and AlphaFold2 predictions, providing insights into differences in binding affinity. Comparative structural and molecular dynamics characterizations of selected variants were performed to rationalize their functional properties and elucidate the role of specific sequence motifs in antigen binding. Furthermore, systematic analyses of next‐generation sequencing (NGS) and Protein Data Bank (PDB) data was conducted, shedding light on the functional significance of Hallmark motifs and non‐canonical disulfide bonds in VHHs in general. Overall, this study provides valuable insights into the structural determinants governing the functional properties of VHHs, offering a roadmap for their rational design, humanization, and optimization for therapeutic applications.
机译:骆驼科动物来源的可变结构域重链抗体 (VHH) 的人源化带来了挑战,包括免疫原性、稳定性和亲和力的潜在降低。这个过程的关键是互补决定区 (CDR)、游标和标志残基,它们塑造了三维折叠并影响了 VHH 的结构和功能。此外,非经典二硫键的存在进一步有助于构象稳定性和抗原结合。在这项研究中,我们系统地将两种靶向天然细胞毒性受体 NKp30 的骆驼科衍生的 VHH 人源化。Vernier 和 Hallmark 区域的关键结构位置与来自最相似人类种系序列的残基交换。对所得变体的结合亲和力、产量和纯度进行了表征。通过晶体结构测定和 AlphaFold2 预测阐明结构结合模式,从而深入了解结合亲和力的差异。对选定的变体进行了比较结构和分子动力学表征,以合理化它们的功能特性并阐明特定序列基序在抗原结合中的作用。此外,对下一代测序 (NGS) 和蛋白质数据库 (PDB) 数据进行了系统分析,阐明了 VHH 中 Hallmark 基序和非经典二硫键的功能意义。总体而言,本研究为控制 VHH 功能特性的结构决定因素提供了有价值的见解,为其理性设计、人性化和治疗应用优化提供了路线图。

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