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一种与细胞外基质结合的巨蛋白通过一种新的机制与表面固定化的纤维连接蛋白结合。

A Giant Extracellular Matrix Binding Protein of Binds Surface-Immobilized Fibronectin via a Novel Mechanism.

机构信息

Institut for Medical Microbiology, Virology, and Hygiene, University Medical Center Hamburg-Eppendorf, Hamburg-Eppendorf, Germany.

Institut for Medical Microbiology, Virology, and Hygiene, University Medical Center Hamburg-Eppendorf, Hamburg-Eppendorf, Germany

出版信息

mBio. 2020 Oct 20;11(5):e01612-20. doi: 10.1128/mBio.01612-20.

Abstract

Although it is normally an innocuous part of the human skin microbiota, has emerged as a major nosocomial pathogen, and implanted foreign materials are an essential risk factor for the development of an infection. The extraordinary efficiency of to colonize artificial surfaces is particularly related to the ability to form biofilms. Biofilm formation itself critically depends on stable pathogen binding to extracellular host matrix components, e.g. fibronectin (Fn), covering inserted devices in vast amounts. Extracellular matrix binding protein (Embp) and its subdomains referred to as the F-repeat and the FG-repeat are critical for adherence of to surface-immobilized Fn. Embp-Fn interactions preferentially occur with surface-bound, but not folded, globular Fn via binding to the F3 domain. High-resolution structure analysis of F- and FG-repeats revealed that both repeats are composed of two tightly connected triple α-helix bundles, exhibiting an elongated but rather rigid structural organization in solution. Both F- and FG-repeat possess Fn-binding capacity via interactions with type III subdomain FN12, involving residues within the C and F β-sheet. FN12 essentially supports stability of the globular Fn state, and thus these findings reasonably explain why Embp-mediated interaction of necessitates Fn surface immobilization. Thus, Embp employs an uncharacterized bacterial Fn-binding mechanism to promote staphylococcal adherence. is a leading pathogen in implant-associated hospital infections. The pathogenesis critically depends on bacterial binding to ECM components, specifically fibronectin (Fn). The cell surface-localized, 1-MDa extracellular matrix binding protein (Embp) is essentially characterized by 10 F- and 40 FG-repeats. These repetitive units, each characterized by two α-helical bundles, organize themselves in a rigid, elongated form. Embp binds preferentially to surface-localized but not soluble Fn, with both F- and FG-repeats being sufficient for Fn binding and resulting bacterial adherence. Binding preferentially involves Fn type III domain, specifically residues of FN12 β-sheets C and F. Both play key role in stabilizing the globular Fn conformation, explaining the necessity of Fn surface immobilization for a subsequent interaction with Embp. In comparison to many other bacterial Fn-binding proteins using the Fn N terminus, Embp employs a previously undescribed mechanism supporting the adhesion of to surface-immobilized Fn.

摘要

虽然 通常是人体皮肤微生物群的无害部分,但它已成为主要的医院病原体,植入的异物是感染发展的一个重要危险因素。 定植于人工表面的非凡效率特别与形成生物膜的能力有关。生物膜的形成本身严重依赖于病原体稳定地结合到大量存在于插入设备上的细胞外宿主基质成分,例如纤连蛋白(Fn)。细胞外基质结合蛋白(Embp)及其亚结构域,称为 F 重复序列和 FG 重复序列,对于 与表面固定化 Fn 的黏附至关重要。Embp-Fn 相互作用优先通过与 F3 结构域结合,发生在表面结合的而非折叠的球状 Fn 上。Fn 和 FG 重复序列的高分辨率结构分析表明,这两个重复序列都由两个紧密连接的三螺旋束组成,在溶液中呈现出拉长但相当刚性的结构组织。Fn 和 FG 重复序列都通过与 III 型亚结构域 FN12 的相互作用具有 Fn 结合能力,涉及 C 和 F β-折叠中的残基。FN12 基本上支持球状 Fn 状态的稳定性,因此这些发现合理地解释了为什么 Embp 介导的 相互作用需要 Fn 表面固定化。因此,Embp 采用了一种未被描述的细菌 Fn 结合机制来促进葡萄球菌的黏附。 是与植入物相关的医院感染中的主要病原体。发病机制严重依赖于细菌与细胞外基质成分(特别是纤连蛋白[Fn])的结合。细胞表面定位的 1-MDa 细胞外基质结合蛋白(Embp)主要由 10 个 F 重复序列和 40 个 FG 重复序列组成。这些重复单元,每个都由两个α-螺旋束组成,以刚性、拉长的形式组织在一起。Embp 优先结合表面定位而非可溶性 Fn,F 重复序列和 FG 重复序列都足以结合 Fn 并导致细菌黏附。结合优先涉及 Fn Ⅲ型结构域,特别是 FN12 β-折叠 C 和 F 的残基。两者都在稳定球状 Fn 构象中发挥关键作用,解释了 Fn 表面固定化对于随后与 Embp 相互作用的必要性。与使用 Fn N 端的许多其他细菌 Fn 结合蛋白相比,Embp 采用了以前未描述的机制,支持 与表面固定化 Fn 的黏附。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c123/7587433/6d4757f3c12f/mBio.01612-20-f0001.jpg

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