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嵌合免疫球蛋白和人免疫球蛋白M结构为连接链非依赖性组装和功能提供了见解。

Chimeric Immunoglobulin and human Immunoglobulin M structures provide insights on joining-chain independent assembly and function.

作者信息

Lyu Mengfan, Stadtmueller Beth M

机构信息

Department of Biochemistry, University of Illinois Urbana-Champaign, Urbana, Illinois 61801 USA.

Department of Biomedical and Translational Sciences, Carle Illinois College of Medicine, University of Illinois Urbana-Champaign, Urbana, Illinois 61801 USA.

出版信息

bioRxiv. 2025 Jul 14:2025.07.09.663956. doi: 10.1101/2025.07.09.663956.

Abstract

Polymeric (p) immunoglobulins (Igs) play critical roles in vertebrate immunity. IgM is the evolutionarily oldest pIg and functions both in circulation and in the mucosa. pIgM typically comprises between four and six IgM monomers and up to one joining chain (JC), which in mammals facilitates pIg assembly and promotes delivery to mucosal secretions. Bony fish (teleosts) lack JC and assemble tetrameric IgM whereas humans can express JC-containing pentamers and JC-free hexamers. Here we report cryo-electron microscopy structures of two JC-free chimeric IgM, comprising bony fish and human sequences, and the structure of human hexameric IgM. Chimeric IgM structures adopted unique pentameric geometry distinct from both human and fish pIgM whereas the human hexameric IgM structure adopted hexagonal geometry similar to JC-containing pentameric IgM, albeit with structural differences in center of the molecule. Together results provide new insights on how IgM heavy chain motifs contribute to JC-free pIgM assembly and reveal plasticity of this process, which can be manipulated to create pIg structures not observed in nature. Moreover, we found that antigen-targeting chimeric IgM could neutralize toxin cytotoxicity, indicating potential to engineer uniquely structured pIgs to prevent or treat disease.

摘要

聚合(p)免疫球蛋白(Ig)在脊椎动物免疫中发挥着关键作用。IgM是进化上最古老的pIg,在循环系统和黏膜中均有功能。pIgM通常由四到六个IgM单体以及多达一条连接链(JC)组成,在哺乳动物中,连接链有助于pIg的组装并促进其向黏膜分泌物的输送。硬骨鱼(硬骨鱼类)缺乏连接链,组装四聚体IgM,而人类可以表达含连接链的五聚体和不含连接链的六聚体。在此,我们报告了两种不含连接链的嵌合IgM(由硬骨鱼和人类序列组成)的冷冻电子显微镜结构以及人类六聚体IgM的结构。嵌合IgM结构采用了独特的五聚体几何形状,与人类和鱼类的pIgM均不同,而人类六聚体IgM结构采用了类似于含连接链的五聚体IgM的六边形几何形状,尽管分子中心存在结构差异。这些结果共同为IgM重链基序如何促进不含连接链的pIgM组装提供了新见解,并揭示了这一过程的可塑性,可通过操纵该过程来创造自然界中未观察到的pIg结构。此外,我们发现靶向抗原的嵌合IgM可以中和毒素的细胞毒性,这表明有潜力设计出结构独特的pIg来预防或治疗疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e70/12338573/d2732da03cab/nihpp-2025.07.09.663956v1-f0001.jpg

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