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黏蛋白相关表面蛋白 UspA1 的机械敏感反应与纤连蛋白和受体 CEACAM1 结合的相关性研究

Correlation of in situ mechanosensitive responses of the Moraxella catarrhalis adhesin UspA1 with fibronectin and receptor CEACAM1 binding.

机构信息

School of Biochemistry, University of Bristol, Bristol BS8 1TD, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2011 Sep 13;108(37):15174-8. doi: 10.1073/pnas.1106341108. Epub 2011 Aug 29.

Abstract

Bacterial cell surfaces are commonly decorated with a layer formed from multiple copies of adhesin proteins whose binding interactions initiate colonization and infection processes. In this study, we investigate the physical deformability of the UspA1 adhesin protein from Moraxella catarrhalis, a causative agent of middle-ear infections in humans. UspA1 binds a range of extracellular proteins including fibronectin, and the epithelial cellular receptor carcinoembryonic antigen-related cell adhesion molecule 1 (CEACAM1). Electron microscopy indicates that unliganded UspA1 is densely packed at, and extends about 800 Å from, the Moraxella surface. Using a modified atomic force microscope, we show that the adhesive properties and thickness of the UspA1 layer at the cell surface varies on addition of either fibronectin or CEACAM1. This in situ analysis is then correlated with the molecular structure of UspA1. To provide an overall model for UspA1, we have determined crystal structures for two N-terminal fragments which are then combined with a previous structure of the CEACAM1-binding site. We show that the UspA1-fibronectin complex is formed between UspA1 head region and the 13th type-III domain of fibronectin and, using X-ray scattering, that the complex involves an angular association between these two proteins. In combination with a previous study, which showed that the CEACAM1-UspA1 complex is distinctively bent in solution, we correlate these observations on isolated fragments of UspA1 with its in situ response on the cell surface. This study therefore provides a rare direct demonstration of protein conformational change at the cell surface.

摘要

细菌细胞表面通常被一层由多个黏附蛋白组成的层所修饰,这些黏附蛋白的结合相互作用启动了定植和感染过程。在这项研究中,我们研究了粘蛋白相关表面蛋白 A1(UspA1)的物理可变形性,它是人类中耳感染的致病因子。UspA1 结合了一系列细胞外蛋白,包括纤维连接蛋白和上皮细胞受体癌胚抗原相关细胞黏附分子 1(CEACAM1)。电子显微镜表明,未配体结合的 UspA1 在莫拉氏菌表面密集堆积,并延伸约 800Å。使用改良原子力显微镜,我们表明,在添加纤维连接蛋白或 CEACAM1 时,UspA1 层在细胞表面的粘附特性和厚度会发生变化。这种原位分析与 UspA1 的分子结构相关。为了提供 UspA1 的整体模型,我们确定了两个 N 端片段的晶体结构,然后将其与之前的 CEACAM1 结合位点结构相结合。我们表明,UspA1-纤维连接蛋白复合物是在 UspA1 头部区域和纤维连接蛋白的第 13 型 III 结构域之间形成的,并且使用 X 射线散射表明,该复合物涉及这两种蛋白质之间的角关联。结合之前的研究表明,CEACAM1-UspA1 复合物在溶液中明显弯曲,我们将这些对 UspA1 分离片段的观察结果与它在细胞表面的原位反应相关联。因此,这项研究提供了一个罕见的直接证明蛋白质在细胞表面的构象变化的例子。

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