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Improvement of Aglycone π-Stacking Yields Nano- to Subnanomolar FimH Antagonists
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 4498507
Author(s) Schönemann, Wojciech; Cramer, Jonathan; Mühlethaler, Tobias; Fiege, Brigitte; Silbermann, Marleen; Rabbani, Said; Dätwyler, Philipp; Zihlmann, Pascal; Jakob, Roman P.; Sager, Christoph P.; Smiesko, Martin; Schwardt, Oliver; Maier, Timm; Ernst, Beat
Author(s) at UniBasel Maier, Timm
Ernst, Beat
Schönemann, Wojciech
Cramer, Jonathan
Mühlethaler, Tobias
Fiege, Brigitte
Silbermann, Marleen
Rabbani, Said
Dätwyler, Philipp
Zihlmann, Pascal
Jakob, Roman Peter
Sager, Christoph
Smiesko, Martin
Schwardt, Oliver
Year 2019
Title Improvement of Aglycone π-Stacking Yields Nano- to Subnanomolar FimH Antagonists
Journal ChemMedChem
Volume 14
Number 7
Pages / Article-Number 749-757
Abstract Antimicrobial resistance has become a serious concern for the treatment of urinary tract infections. In this context, an anti-adhesive approach targeting FimH, a bacterial lectin enabling the attachment of E. coli to host cells, attracted considerable interest. FimH can adopt a low/medium-affinity state in the absence and a high-affinity state in the presence of shear forces. Until recently, mostly the high-affinity state has been investigated, despite the fact that a therapeutic antagonist should bind predominantly to the low-affinity state. In this communication, we demonstrate that fluorination of biphenyl α-d-mannosides leads to compounds with perfect π-π stacking interactions with the tyrosine gate of FimH, yielding low nanomolar to subnanomolar KDs for the low- and the high-affinity state, respectively. The face-to-face alignment of the perfluorinated biphenyl of FimH ligands and Tyr48 was confirmed by crystal structures as well as 1H,15N-HSQC NMR analysis. Finally, fluorination improves pharmacokinetic parameters predictive for oral availability.
Publisher Wiley
ISSN/ISBN 1860-7179 ; 1860-7187
URL https://onlinelibrary.wiley.com/doi/full/10.1002/cmdc.201900051
edoc-URL https://edoc.unibas.ch/69167/
Full Text on edoc No
Digital Object Identifier DOI 10.1002/cmdc.201900051
PubMed ID http://www.ncbi.nlm.nih.gov/pubmed/30710416
 
   

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