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单域抗体的共进化规范环构象:三个口袋玩抢椅子游戏的故事。

Coevolved Canonical Loops Conformations of Single-Domain Antibodies: A Tale of Three Pockets Playing Musical Chairs.

机构信息

Human Health Therapeutics, National Research Council Canada, Montreal, QC, Canada.

出版信息

Front Immunol. 2022 Jun 3;13:884132. doi: 10.3389/fimmu.2022.884132. eCollection 2022.

Abstract

Single-domain antibodies (sdAbs) are a promising class of biotherapeutics with unique structural traits within their paratope region. The distribution of canonical conformations explored by their complementarity determining region (CDR) loops differs to some extent from conventional two-chain Fv fragments of monoclonal antibodies (mAbs). In this study, we explored in detail the canonical structures of sdAb CDR-H1 and CDR-H2 loops and compared those with mAbs from the IGHV3 and IGHV1 gene families. We surveyed the antibody structures catalogued in SAbDab and clustered the CDR canonical loops in Cartesian space. While most of the sdAb clusters were sub-populations of previously defined canonical Fv conformations of CDR-H1 and CDR-H2, our stricter clustering approach defined narrower clusters in sequence-space. Meticulous visual inspection of sub-populations allowed a clearer understanding of sequence-structure relationships. The packing densities within structural pockets contacted by CDR-H1 and CDR-H2 canonical conformations were analyzed on the premise that these pockets cannot be left vacant as they would leave exposed supportive hydrophobic residues. The fine resolution of the canonical clusters defined here revealed unique signatures within these pockets, including distinct structural complementarities between CDR-H1 and CDR-H2 canonical clusters, which could not be perceived with the previous coarser clusters. We highlight examples where a single residue change in CDR-H1 sequence is sufficient to induce a dramatic population shift in CDR-H2 conformation. This suggests that preferences in combining CDR-H1 and CDR-H2 emerged naturally during antibody evolution, leading to preferred sets of conserved amino acids at key positions in the framework as well as within the CDR loops. We outline a game of musical chairs that is necessary to maintain the integrity of the antibody structures that arose during evolution. Our study also provides refined CDR-H1 and CDR-H2 structural templates for sdAb homology modeling that could be leveraged for improved antibody design.

摘要

单域抗体(sdAb)是一类有前途的生物治疗药物,其变区具有独特的结构特征。其互补决定区(CDR)环探索的典型构象在某种程度上不同于传统的单克隆抗体(mAb)的二链 Fv 片段。在这项研究中,我们详细探讨了 sdAb CDR-H1 和 CDR-H2 环的典型结构,并将其与 IGHV3 和 IGHV1 基因家族的 mAb 进行了比较。我们调查了 SAbDab 中编目的抗体结构,并在笛卡尔空间中对 CDR 典型环进行了聚类。虽然大多数 sdAb 聚类是 CDR-H1 和 CDR-H2 以前定义的典型 Fv 构象的子群体,但我们更严格的聚类方法在序列空间中定义了更窄的聚类。对亚群进行细致的视觉检查可以更清楚地了解序列-结构关系。根据前提假设,即这些口袋不能空着,因为它们会暴露出支持性的疏水性残基,分析了由 CDR-H1 和 CDR-H2 典型构象接触的结构口袋内的堆积密度。这里定义的典型聚类的精细分辨率揭示了这些口袋内的独特特征,包括 CDR-H1 和 CDR-H2 典型聚类之间的独特结构互补性,这是以前更粗糙的聚类无法感知的。我们强调了在 CDR-H1 序列中单个残基的变化足以引起 CDR-H2 构象发生显著变化的例子。这表明,在抗体进化过程中,CDR-H1 和 CDR-H2 的组合偏好是自然产生的,导致在框架中的关键位置以及在 CDR 环内都有保守氨基酸的首选集。我们概述了在进化过程中维持抗体结构完整性所必需的一场“抢椅子”游戏。我们的研究还为 sdAb 同源建模提供了经过改进的 CDR-H1 和 CDR-H2 结构模板,可用于改进抗体设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7778/9203998/b44b7830077f/fimmu-13-884132-g001.jpg

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