BioOrg NMR Lab, Department of Biotechnology and Biosciences, University of Milano-Bicocca, P.zza della Scienza, 2, 20126 Milan, Italy.
Department of Pharmacological and Biomolecular Sciences, University of Milano, Via Balzaretti, 9/11/13, 20133 Milano, Italy.
Bioorg Chem. 2021 Jul;112:104876. doi: 10.1016/j.bioorg.2021.104876. Epub 2021 Mar 29.
We describe the development of an on-cell NMR method for the rapid screening of FimH ligands and the structural identification of ligand binding epitopes. FimH is a mannose-binding bacterial adhesin expressed at the apical end of type 1 pili of uropathogenic bacterial strains and responsible for their d-mannose sensitive adhesion to host mammalian epithelial cells. Because of these properties, FimH is a key virulence factor and an attractive therapeutic target for urinary tract infection. We prepared synthetic d-mannose decorated dendrimers, we tested their ability to prevent the FimH-mediated yeast agglutination, and thus we used the compounds showing the best inhibitory activity as models of FimH multivalent ligands to set up our NMR methodology. Our experimental protocol, based on on-cell STD NMR techniques, is a suitable tool for the screening and the epitope mapping of FimH ligands aimed at the development of new antiadhesive and diagnostic tools against urinary tract infection pathogens. Notably, the study is carried out in a physiological environment, i.e. at the surface of living pathogen cells expressing FimH.
我们描述了一种用于快速筛选 FimH 配体和鉴定配体结合表位的细胞内 NMR 方法。FimH 是一种甘露糖结合的细菌黏附素,表达在尿路致病性细菌株的 1 型菌毛的顶端,负责其对宿主哺乳动物上皮细胞的 d-甘露糖敏感黏附。由于这些特性,FimH 是一种关键的毒力因子,也是尿路感染的一个有吸引力的治疗靶点。我们制备了合成的甘露糖修饰树状大分子,测试了它们预防 FimH 介导的酵母凝集的能力,因此我们将显示最佳抑制活性的化合物用作 FimH 多价配体的模型,建立了我们的 NMR 方法。我们的实验方案基于细胞内 STD NMR 技术,是一种用于筛选和鉴定 FimH 配体的表位的合适工具,旨在开发针对尿路感染病原体的新型抗黏附和诊断工具。值得注意的是,该研究是在生理环境中进行的,即在表达 FimH 的活病原体细胞表面进行。