核糖开关
黄素单核苷酸
核糖核酸
化学
生物化学
黄素组
生物
立体化学
计算生物学
组合化学
非编码RNA
酶
基因
作者
Quentin Vicens,Estefanía Mondragón,F.E. Reyes,Philip Coish,Paul A. Aristoff,Judd Berman,Harpreet Kaur,Kevin W. Kells,P. Wickens,Jeffery Wilson,Robert C. Gadwood,Heinrich J. Schostarez,R.K. Suto,Ken Blount,Robert Batey
标识
DOI:10.1021/acschembio.8b00533
摘要
The flavin mononucleotide (FMN) riboswitch is an emerging target for the development of novel RNA-targeting antibiotics. We previously discovered an FMN derivative, 5FDQD, that protects mice against diarrhea-causing Clostridium difficile bacteria. Here, we present the structure-based drug design strategy that led to the discovery of this fluoro-phenyl derivative with antibacterial properties. This approach involved the following stages: (1) structural analysis of all available free and bound FMN riboswitch structures; (2) design, synthesis, and purification of derivatives; (3) in vitro testing for productive binding using two chemical probing methods; (4) in vitro transcription termination assays; and (5) resolution of the crystal structures of the FMN riboswitch in complex with the most mature candidates. In the process, we delineated principles for productive binding to this riboswitch, thereby demonstrating the effectiveness of a coordinated structure-guided approach to designing drugs against RNA.
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