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在IgG-FcRn复合物形成过程中,鉴定IgG抗体的Fab结构域与人FcRn之间的直接相互作用。

Identification of a direct interaction between the Fab domains of IgG antibodies and human FcRn upon IgG-FcRn complex formation.

作者信息

Trabjerg Esben, Nilsen Jeannette, Tollefsrud Gjølberg Torleif, Andersen Jan Terje, Leitner Alexander, Rand Kasper D

机构信息

Department of Biology, Institute of Molecular Systems Biology, ETH Zürich, Zurich, Switzerland.

Department of Pharmacy, University of Copenhagen, Copenhagen, Denmark.

出版信息

Commun Biol. 2025 Jun 12;8(1):922. doi: 10.1038/s42003-025-08252-z.

Abstract

IgGs have become successful drug scaffolds by combining specific target binding with the ability to induce cellular cytotoxicity. Furthermore, IgGs possess unusually long half-lives in the blood (2-3 weeks). IgGs achieve such extraordinary half-lives through a pH-dependent interaction with the FcRn-receptor whereby IgGs are recycled. No high-resolution structure of FcRn in complex with a full-length IgG is available, and the interaction was long thought to be mediated solely via the IgG-Fc. However, some IgGs with identical Fc-parts, but different Fab-domains, exhibit different half-lives, suggesting involvement of the Fab-domains in FcRn binding. Here, we employ structural mass spectrometry (HDX-MS and XL-MS) to explore the interaction of full-length IgGs with FcRn. HDX-MS and XL-MS experiments confirm an interaction between FcRn and the Fc-region of IgGs, through three cross-links between FcRn and the IgG-Fc-domain and a reduction in HDX in both the receptor and the Fc-region upon complex formation. However, FcRn-induced changes in HDX are also observed in the Fab-domains, supported by cross-links between the Fab-domains and the α3-domain of FcRn. Our results thus provide direct evidence for an IgG Fab-FcRn interaction. We envision that these results could advance the engineering of IgG-antibodies with tailored pharmacokinetics and enhanced efficacy.

摘要

通过将特异性靶标结合与诱导细胞毒性的能力相结合,免疫球蛋白G(IgGs)已成为成功的药物支架。此外,IgGs在血液中的半衰期异常长(2至3周)。IgGs通过与FcRn受体的pH依赖性相互作用实现如此长的半衰期,从而实现循环利用。目前尚无全长IgG与FcRn复合物的高分辨率结构,长期以来人们一直认为这种相互作用仅通过IgG-Fc介导。然而,一些具有相同Fc部分但不同Fab结构域的IgGs表现出不同的半衰期,这表明Fab结构域参与了与FcRn的结合。在这里,我们采用结构质谱法(氢/氘交换质谱法和交联质谱法)来探索全长IgGs与FcRn的相互作用。氢/氘交换质谱法和交联质谱法实验证实了FcRn与IgGs的Fc区域之间存在相互作用,通过FcRn与IgG-Fc结构域之间的三个交联以及复合物形成后受体和Fc区域中氢/氘交换的减少得以证明。然而,在Fab结构域中也观察到了FcRn诱导的氢/氘交换变化,FcRn的α3结构域与Fab结构域之间的交联也支持了这一点。因此,我们的结果为IgG Fab与FcRn的相互作用提供了直接证据。我们设想这些结果可能会推动具有定制药代动力学和增强疗效的IgG抗体的工程化发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c985/12162884/fcf5b6a89d52/42003_2025_8252_Fig1_HTML.jpg

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