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抗体-受体相互作用介导抗体依赖性细胞毒性。

Antibody-receptor interactions mediate antibody-dependent cellular cytotoxicity.

机构信息

Protein Analytical Chemistry Department, Genentech Inc, South San Francisco, California, USA.

Pharmaceutical Development Department, Genentech Inc, South San Francisco, California, USA.

出版信息

J Biol Chem. 2021 Jul;297(1):100826. doi: 10.1016/j.jbc.2021.100826. Epub 2021 May 24.

Abstract

Binding of antibodies to their receptors is a core component of the innate immune system. Understanding the precise interactions between antibodies and their Fc receptors has led to the engineering of novel mAb biotherapeutics with tailored biological activities. One of the most significant findings is that afucosylated monoclonal antibodies demonstrate increased affinity toward the receptor FcγRIIIa, with a commensurate increase in antibody-dependent cellular cytotoxicity. Crystal structure analysis has led to the hypothesis that afucosylation in the Fc region results in reduced steric hindrance between antibody-receptor intermolecular glycan interactions, enhancing receptor affinity; however, solution-phase data have yet to corroborate this hypothesis. In addition, recent work has shown that the fragment antigen-binding (Fab) region may directly interact with Fc receptors; however, the biological consequences of these interactions remain unclear. By probing differences in solvent accessibility between native and afucosylated immunoglobulin G1 (IgG1) using hydroxyl radical footprinting-MS, we provide the first solution-phase evidence that an IgG1 bearing an afucosylated Fc region appears to require fewer conformational changes for FcγRIIIa binding. In addition, we performed extensive molecular dynamics (MD) simulations to understand the molecular mechanism behind the effects of afucosylation. The combination of these techniques provides molecular insight into the steric hindrance from the core Fc fucose in IgG1 and corroborates previously proposed Fab-receptor interactions. Furthermore, MD-guided rational mutagenesis enabled us to demonstrate that Fab-receptor interactions directly contribute to the modulation of antibody-dependent cellular cytotoxicity activity. This work demonstrates that in addition to Fc-polypeptide and glycan-mediated interactions, the Fab provides a third component that influences IgG-Fc receptor biology.

摘要

抗体与受体的结合是先天免疫系统的核心组成部分。对抗体与其 Fc 受体之间精确相互作用的理解,导致了具有定制生物活性的新型 mAb 生物疗法的工程设计。其中最重要的发现之一是,去岩藻糖基化的单克隆抗体表现出对受体 FcγRIIIa 的更高亲和力,同时抗体依赖性细胞毒性也相应增加。晶体结构分析提出了一个假说,即 Fc 区域中的去岩藻糖基化导致抗体-受体分子间糖基相互作用的空间位阻减小,从而增强受体亲和力;然而,溶液相数据尚未证实这一假说。此外,最近的研究表明,抗原结合片段 (Fab) 区域可能直接与 Fc 受体相互作用;然而,这些相互作用的生物学后果仍不清楚。通过使用羟基自由基足迹-MS 探测天然和去岩藻糖基化免疫球蛋白 G1 (IgG1) 之间溶剂可及性的差异,我们提供了第一个溶液相证据,表明具有去岩藻糖基化 Fc 区的 IgG1 似乎需要更少的构象变化来结合 FcγRIIIa。此外,我们进行了广泛的分子动力学 (MD) 模拟,以了解去岩藻糖基化的分子机制。这些技术的结合为 IgG1 核心 Fc 岩藻糖引起的空间位阻提供了分子见解,并证实了先前提出的 Fab-受体相互作用。此外,MD 引导的合理诱变使我们能够证明 Fab-受体相互作用直接有助于调节抗体依赖性细胞毒性活性。这项工作表明,除了 Fc 多肽和聚糖介导的相互作用外,Fab 还提供了第三个影响 IgG-Fc 受体生物学的组件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95d6/8214220/5b2a97e2a6ce/gr1.jpg

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