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受体结合研究揭示了一类新型的大肠杆菌FimH粘附素高亲和力抑制剂。

Receptor binding studies disclose a novel class of high-affinity inhibitors of the Escherichia coli FimH adhesin.

作者信息

Bouckaert Julie, Berglund Jenny, Schembri Mark, De Genst Erwin, Cools Lieve, Wuhrer Manfred, Hung Chia-Suei, Pinkner Jerome, Slättegård Rikard, Zavialov Anton, Choudhury Devapriya, Langermann Solomon, Hultgren Scott J, Wyns Lode, Klemm Per, Oscarson Stefan, Knight Stefan D, De Greve Henri

机构信息

Laboratorium voor Ultrastructuur, Vrije Universiteit Brussel and Vlaams Interuniversitair Instituut voor Biotechnologie, Building E, Pleinlaan 2, 1050 Brussels, Belgium.

出版信息

Mol Microbiol. 2005 Jan;55(2):441-55. doi: 10.1111/j.1365-2958.2004.04415.x.

Abstract

Mannose-binding type 1 pili are important virulence factors for the establishment of Escherichia coli urinary tract infections (UTIs). These infections are initiated by adhesion of uropathogenic E. coli to uroplakin receptors in the uroepithelium via the FimH adhesin located at the tips of type 1 pili. Blocking of bacterial adhesion is able to prevent infection. Here, we provide for the first time binding data of the molecular events underlying type 1 fimbrial adherence, by crystallographic analyses of the FimH receptor binding domains from a uropathogenic and a K-12 strain, and affinity measurements with mannose, common mono- and disaccharides, and a series of alkyl and aryl mannosides. Our results illustrate that the lectin domain of the FimH adhesin is a stable and functional entity and that an exogenous butyl alpha-D-mannoside, bound in the crystal structures, exhibits a significantly better affinity for FimH (Kd = 0.15 microM) than mannose (Kd = 2.3 microM). Exploration of the binding affinities of alpha- d-mannosides with longer alkyl tails revealed affinities up to 5 nM. Aryl mannosides and fructose can also bind with high affinities to the FimH lectin domain, with a 100-fold improvement and 15-fold reduction in affinity, respectively, compared with mannose. Taken together, these relative FimH affinities correlate exceptionally well with the relative concentrations of the same glycans needed for the inhibition of adherence of type 1 piliated E. coli. We foresee that our findings will spark new ideas and initiatives for the development of UTI vaccines and anti-adhesive drugs to prevent anticipated and recurrent UTIs.

摘要

1型菌毛甘露糖结合蛋白是大肠杆菌引发尿路感染(UTIs)的重要毒力因子。这些感染是由致病性大肠杆菌通过位于1型菌毛尖端的FimH黏附素与尿路上皮中的uroplakin受体黏附而引发的。阻断细菌黏附能够预防感染。在此,我们首次通过对一株致病性菌株和一株K - 12菌株的FimH受体结合结构域进行晶体学分析,以及对甘露糖、常见单糖和双糖以及一系列烷基和芳基甘露糖苷进行亲和力测量,提供了1型菌毛黏附背后分子事件的结合数据。我们的结果表明,FimH黏附素的凝集素结构域是一个稳定且有功能的实体,并且在晶体结构中结合的外源性丁基α - D - 甘露糖苷对FimH的亲和力(Kd = 0.15 microM)明显高于甘露糖(Kd = 2.3 microM)。对具有更长烷基链的α - D - 甘露糖苷的结合亲和力探索显示亲和力高达5 nM。芳基甘露糖苷和果糖也能与FimH凝集素结构域高亲和力结合,与甘露糖相比,亲和力分别提高了100倍和降低了15倍。综上所述,这些相对的FimH亲和力与抑制1型菌毛大肠杆菌黏附所需的相同聚糖的相对浓度具有非常好的相关性。我们预计,我们的发现将为开发预防预期和复发性尿路感染的UTI疫苗和抗黏附药物引发新的思路和举措。

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