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人IgD-Fc的晶体结构揭示了与其他抗体亚型的意外差异。

The Crystal Structure of Human IgD-Fc Reveals Unexpected Differences With Other Antibody Isotypes.

作者信息

Davies Anna M, Bui Tam T T, Pacheco-Gómez Raúl, Vester Susan K, Beavil Andrew J, Gould Hannah J, Sutton Brian J, McDonnell James M

机构信息

Randall Centre for Cell and Molecular Biophysics, King's College London, London, UK.

Centre for Biomolecular Spectroscopy, King's College London, London, UK.

出版信息

Proteins. 2025 Apr;93(4):786-800. doi: 10.1002/prot.26771. Epub 2024 Nov 25.

Abstract

Of the five human antibody isotypes, the function of IgD is the least well-understood, although various studies point to a role for IgD in mucosal immunity. IgD is also the least well structurally characterized isotype. Until recently, when crystal structures were reported for the IgD Fab, the only structural information available was a model for intact IgD based on solution scattering data. We now report the crystal structure of human IgD-Fc solved at 3.0 Å resolution. Although similar in overall architecture to other human isotypes, IgD-Fc displays markedly different orientations of the Cδ3 domains in the Cδ3 domain dimer and the lowest interface area of all the human isotypes. The nature of the residues that form the dimer interface also differs from those conserved in the other isotypes. By contrast, the interface between the Cδ2 and Cδ3 domains in each chain is the largest among the human isotypes. This interface is characterized by two binding pockets, not seen in other isotypes, and points to a potential role for the Cδ2/Cδ3 interface in stabilizing the IgD-Fc homodimer. We investigated the thermal stability of IgD-Fc, alone and in the context of an intact IgD antibody, and found that IgD-Fc unfolds in a single transition. Human IgD-Fc clearly has unique structural features not seen in the other human isotypes, and comparison with other mammalian IgD sequences suggests that these unique features might be widely conserved.

摘要

在人类的五种抗体同种型中,IgD的功能是最不为人所了解的,尽管各种研究表明IgD在黏膜免疫中发挥作用。IgD也是结构特征了解最少的同种型。直到最近报道了IgD Fab的晶体结构,之前唯一可用的结构信息是基于溶液散射数据构建的完整IgD模型。我们现在报告了分辨率为3.0 Å的人IgD-Fc晶体结构。尽管IgD-Fc的整体结构与其他人同种型相似,但在Cδ3结构域二聚体中,Cδ3结构域的取向明显不同,并且在所有人同种型中其界面面积最小。形成二聚体界面的残基性质也与其他同种型中保守的残基不同。相比之下,每条链中Cδ2和Cδ3结构域之间的界面在人同种型中是最大的。该界面的特征是有两个其他同种型中未见的结合口袋,这表明Cδ2/Cδ3界面在稳定IgD-Fc同型二聚体中可能发挥作用。我们研究了单独的IgD-Fc以及完整IgD抗体情况下的热稳定性,发现IgD-Fc在单一转变中展开。人IgD-Fc显然具有其他人类同种型中未见的独特结构特征,与其他哺乳动物IgD序列的比较表明这些独特特征可能广泛保守。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9260/11878202/9534cda968e9/PROT-93-786-g007.jpg

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