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补体抑制的结构见解:可视化C4b结合蛋白复合物与C4b和SAP的不同结合模式

Structural Insights Into Complement Inhibition: Visualizing Distinct Binding Modes of C4b-Binding Protein Complexes With C4b and SAP.

作者信息

Kadavá Tereza, Strasser Jürgen, Marefat Maryam, Yin Victor C, Preiner Johannes, Trouw Leendert A, Heck Albert J R

机构信息

Biomolecular Mass Spectrometry and Proteomics, Bijvoet Center for Biomolecular Research and Utrecht Institute for Pharmaceutical Sciences, University of Utrecht, Utrecht, the Netherlands; Netherlands Proteomics Center, Utrecht, the Netherlands.

University of Applied Sciences Upper Austria, Linz, Austria.

出版信息

Mol Cell Proteomics. 2025 Aug 5;24(9):101046. doi: 10.1016/j.mcpro.2025.101046.

Abstract

C4b-binding protein (C4BP) is an innate immune inhibitor found in serum. Human C4BP adopts spider-like higher-order structures (HOS) formed by disulfide-linked C4BPα and C4BPβ chains that non-covalently bind vitamin K-dependent protein S (ProS). These spider-like structures can form even larger complexes as C4BP interacts with other, mostly complement-related, proteins. The complement inhibitory role of C4BP is primarily mediated through its interaction with C4b. C4BP also binds with high affinity to serum amyloid P component (SAP), a pentraxin family member associated with amyloidosis conditions. Here, we structurally and compositionally characterize C4BP interactions with these two natively occurring binders. To achieve this, we combine mass photometry, high-speed atomic force microscopy, and cross-linking mass spectrometry. By integrating the results, we reveal two distinct binding modes of C4BP when bound to C4b or SAP. Given the spider-like assembly of C4BP, C4b interacts with the N-terminal region of a single C4BPα leg, enabling multiple C4b molecules to bind to the C4BP HOS. Conversely, SAP engages with the entire spider-like HOS: the C4BPα-C4BPβ oligomerization core binds to SAP, and the C4BPα legs wrap around it.

摘要

C4b结合蛋白(C4BP)是一种存在于血清中的天然免疫抑制剂。人C4BP具有类似蜘蛛的高阶结构(HOS),由通过二硫键连接的C4BPα和C4BPβ链形成,这些链非共价结合维生素K依赖性蛋白S(ProS)。当C4BP与其他大多数与补体相关的蛋白相互作用时,这些类似蜘蛛的结构可以形成更大的复合物。C4BP的补体抑制作用主要通过其与C4b的相互作用介导。C4BP还与血清淀粉样蛋白P成分(SAP)高亲和力结合,SAP是一种与淀粉样变性疾病相关的五聚体家族成员。在这里,我们从结构和组成上表征了C4BP与这两种天然存在的结合物的相互作用。为了实现这一点,我们结合了质量光度法、高速原子力显微镜和交联质谱法。通过整合结果,我们揭示了C4BP与C4b或SAP结合时的两种不同结合模式。鉴于C4BP的类似蜘蛛的组装结构,C4b与单个C4BPα臂的N端区域相互作用,使得多个C4b分子能够结合到C4BP的高阶结构上。相反,SAP与整个类似蜘蛛的高阶结构相互作用:C4BPα-C4BPβ寡聚化核心与SAP结合,C4BPα臂围绕其缠绕。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68b5/12419116/9f86453cc39c/ga1.jpg

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