化学
糖苷键
大肠杆菌
微生物学
体内
抗生素
连接器
抗菌剂
细菌粘附素
立体化学
药理学
生物化学
医学
生物
酶
基因
操作系统
生物技术
有机化学
计算机科学
作者
Laurel Mydock-McGrane,Zachary Cusumano,Zhenfu Han,Jana Binkley,Maria Kostakioti,Thomas J. Hannan,Jerome S. Pinkner,Roger D. Klein,Vasilios Kalas,Jan M. Crowley,Nigam P. Rath,Scott J. Hultgren,James W. Janetka
标识
DOI:10.1021/acs.jmedchem.6b00948
摘要
Gram-negative uropathogenic Escherichia coli (UPEC) bacteria are a causative pathogen of urinary tract infections (UTIs). Previously developed antivirulence inhibitors of the type 1 pilus adhesin, FimH, demonstrated oral activity in animal models of UTI but were found to have limited compound exposure due to the metabolic instability of the O-glycosidic bond (O-mannosides). Herein, we disclose that compounds having the O-glycosidic bond replaced with carbon linkages had improved stability and inhibitory activity against FimH. We report on the design, synthesis, and in vivo evaluation of this promising new class of carbon-linked C-mannosides that show improved pharmacokinetic (PK) properties relative to O-mannosides. Interestingly, we found that FimH binding is stereospecifically modulated by hydroxyl substitution on the methylene linker, where the R-hydroxy isomer has a 60-fold increase in potency. This new class of C-mannoside antagonists have significantly increased compound exposure and, as a result, enhanced efficacy in mouse models of acute and chronic UTI.
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