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细菌黏附素 FimH 与其天然的、多价高甘露糖型聚糖靶标的结合。

Binding of the Bacterial Adhesin FimH to Its Natural, Multivalent High-Mannose Type Glycan Targets.

机构信息

Institute of Molecular Biology & Biophysics , ETH Zurich , Otto-Stern-Weg 5 , CH-8093 Zurich , Switzerland.

Biozentrum , University of Basel , Klingelbergstrasse 50/70 , CH-4056 Basel , Switzerland.

出版信息

J Am Chem Soc. 2019 Jan 16;141(2):936-944. doi: 10.1021/jacs.8b10736. Epub 2018 Dec 28.

Abstract

Multivalent carbohydrate-lectin interactions at host-pathogen interfaces play a crucial role in the establishment of infections. Although competitive antagonists that prevent pathogen adhesion are promising antimicrobial drugs, the molecular mechanisms underlying these complex adhesion processes are still poorly understood. Here, we characterize the interactions between the fimbrial adhesin FimH from uropathogenic Escherichia coli strains and its natural high-mannose type N-glycan binding epitopes on uroepithelial glycoproteins. Crystal structures and a detailed kinetic characterization of ligand-binding and dissociation revealed that the binding pocket of FimH evolved such that it recognizes the terminal α(1-2)-, α(1-3)-, and α(1-6)-linked mannosides of natural high-mannose type N-glycans with similar affinity. We demonstrate that the 2000-fold higher affinity of the domain-separated state of FimH compared to its domain-associated state is ligand-independent and consistent with a thermodynamic cycle in which ligand-binding shifts the association equilibrium between the FimH lectin and the FimH pilin domain. Moreover, we show that a single N-glycan can bind up to three molecules of FimH, albeit with negative cooperativity, so that a molar excess of accessible N-glycans over FimH on the cell surface favors monovalent FimH binding. Our data provide pivotal insights into the adhesion properties of uropathogenic Escherichia coli strains to their target receptors and a solid basis for the development of effective FimH antagonists.

摘要

宿主-病原体界面上的多价碳水化合物-凝集素相互作用在感染的建立中起着至关重要的作用。虽然竞争性拮抗剂可以阻止病原体黏附,是很有前途的抗菌药物,但这些复杂黏附过程的分子机制仍知之甚少。在这里,我们描述了尿路致病性大肠杆菌菌株的纤毛黏附素 FimH 与其天然高甘露糖型 N-聚糖结合表位在上皮糖蛋白上的相互作用。配体结合和解离的晶体结构和详细的动力学特征表明,FimH 的结合口袋进化为能够以相似亲和力识别天然高甘露糖型 N-聚糖的末端α(1-2)-、α(1-3)-和α(1-6)-连接的甘露糖。我们证明了 FimH 分离状态与结合状态相比,其 2000 倍的高亲和力是配体非依赖性的,与热力学循环一致,其中配体结合使 FimH 凝集素与 FimH 菌毛域之间的缔合平衡发生转移。此外,我们表明,单个 N-聚糖可以结合多达三个 FimH 分子,尽管存在负协同作用,因此细胞表面上可及的 N-聚糖摩尔数超过 FimH 时有利于单价 FimH 结合。我们的数据为尿路致病性大肠杆菌菌株与其靶受体的黏附特性提供了重要的见解,并为有效 FimH 拮抗剂的开发提供了坚实的基础。

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