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铰链二硫键在人 IgG2 CD40 抗体中通过调节构象和柔韧性来调节受体信号转导。

Hinge disulfides in human IgG2 CD40 antibodies modulate receptor signaling by regulation of conformation and flexibility.

机构信息

University of Southampton, Biological Sciences, Southampton SO17 1BJ, UK.

University of Southampton, Centre for Cancer Immunology, Southampton SO16 6YD, UK.

出版信息

Sci Immunol. 2022 Jul 15;7(73):eabm3723. doi: 10.1126/sciimmunol.abm3723. Epub 2022 Jul 8.

DOI:10.1126/sciimmunol.abm3723
PMID:35857577
Abstract

Antibodies protect from infection, underpin successful vaccines and elicit therapeutic responses in otherwise untreatable cancers and autoimmune conditions. The human IgG2 isotype displays a unique capacity to undergo disulfide shuffling in the hinge region, leading to modulation of its ability to drive target receptor signaling (agonism) in a variety of important immune receptors, through hitherto unexplained molecular mechanisms. To address the underlying process and reveal how hinge disulfide orientation affects agonistic activity, we generated a series of cysteine to serine exchange variants in the hinge region of the clinically relevant monoclonal antibody ChiLob7/4, directed against the key immune receptor CD40. We report how agonistic activity varies with disulfide pattern and is afforded by the presence of a disulfide crossover between F(ab) arms in the agonistic forms, independently of epitope, as observed in the determined crystallographic structures. This structural "switch" affects directly on antibody conformation and flexibility. Small-angle x-ray scattering and ensemble modeling demonstrated that the least flexible variants adopt the fewest conformations and evoke the highest levels of receptor agonism. This covalent change may be amenable for broad implementation to modulate receptor signaling in an epitope-independent manner in future therapeutics.

摘要

抗体可预防感染,为成功的疫苗提供支持,并在其他无法治疗的癌症和自身免疫性疾病中引发治疗反应。人类 IgG2 同种型具有独特的能力,可在铰链区域发生二硫键重排,从而通过迄今尚未阐明的分子机制,调节其驱动各种重要免疫受体靶标受体信号(激动作用)的能力。为了解决潜在的过程并揭示铰链二硫键取向如何影响激动活性,我们在针对关键免疫受体 CD40 的临床相关单克隆抗体 ChiLob7/4 的铰链区域中生成了一系列半胱氨酸到丝氨酸交换变体。我们报告了激动活性如何随二硫键模式而变化,并由激动形式中 F(ab)臂之间的二硫键交叉提供,与表位无关,如在确定的晶体结构中观察到的。这种结构“开关”直接影响抗体的构象和灵活性。小角度 X 射线散射和整体建模表明,最不灵活的变体采用的构象最少,并引发最高水平的受体激动作用。这种共价变化可能适用于广泛实施,以在未来的治疗中以不依赖表位的方式调节受体信号。

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