The structure of FCGBP is formed as a disulfide-mediated homodimer between its C-terminal domains.

Erik Ehrencrona, Pablo Gallego, Sergio Trillo-Muyo, Maria-Jose Garcia-Bonete, Christian V Recktenwald, Gunnar C Hansson, Malin E V Johansson
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Abstract

Mucus in the colon is crucial for intestinal homeostasis by forming a barrier that separates microbes from the epithelium. This is achieved by the structural arrangement of the major mucus proteins, such as MUC2 and FCGBP, both of which are comprised of several von Willebrand D domains (vWD) and assemblies. Numerous disulfide bonds stabilise these domains, and intermolecular bonds generate multimers of MUC2. The oligomeric nature of FCGBP is not known. Human hFCGBP contains 13 vWD domains whereas mouse mFCGBP consists of only 7. We found unpaired cysteines in the vWD1 (human and mouse) and vWD5 (mouse)/vWD11 (human) assemblies which were not involved in disulfide bonds. However, the most C-terminal vWD domains, vWD7 (mouse)/vWD13 (human), formed disulfide-linked dimers. The intermolecular bond between C5284 and C5403 of human hFCGBP was observed by using mass spectrometry to generate the dimer. Cryo-EM structure analysis of recombinant mouse mFCGBP revealed a compact dimer with two symmetric intermolecular disulfide bonds between C2462 and C2581, corresponding to the dimerising cysteines in the human hFCGBP. This compact conformation involves interactions between the vWD assemblies, but although the domains involved at the interface are the same, the nature of the interactions differ. Mouse mFCGBP was also found to exist in a semi-extended conformation. These different interactions offer insights into the dynamic nature of the FCGBP homodimer.

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FCGBP的结构是在其c端结构域之间形成的二硫化物介导的同型二聚体。
结肠黏液通过形成将微生物与上皮分离的屏障,对肠道内稳态至关重要。这是通过MUC2和FCGBP等主要粘液蛋白的结构排列实现的,它们都由几个冯氏血友病D结构域(vWD)和组件组成。许多二硫键稳定了这些结构域,分子间键产生MUC2的多聚体。FCGBP的低聚性质尚不清楚。人类hFCGBP包含13个vWD结构域,而小鼠mFCGBP仅包含7个。我们在vWD1(人和小鼠)和vWD5(小鼠)/vWD11(人)组装体中发现了未参与二硫键的未配对半胱氨酸。然而,大多数c端vWD结构域,vWD7(小鼠)/vWD13(人类),形成二硫键二聚体。用质谱法观察了人hFCGBP的C5284和C5403的分子间键。重组小鼠mFCGBP的低温电镜结构分析显示,C2462和C2581之间存在一个紧凑的二聚体,具有两个对称的分子间二硫键,与人hFCGBP中的二聚半胱氨酸相对应。这种紧凑的构象涉及到vWD组件之间的相互作用,但是尽管在界面上涉及的域是相同的,但相互作用的性质不同。小鼠mFCGBP也以半延伸构象存在。这些不同的相互作用提供了对FCGBP同型二聚体动态性质的见解。
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