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Structure-Activity Relationship of Flavin Analogues That Target the Flavin Mononucleotide Riboswitch

机译:Flavin单核苷酸核苷酸核糖蛋白的体状 - 活性关系

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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.
机译:Flavin单核苷酸(FMN)Riboswitch是一种新出现的新型RNA靶向抗生素的目标。我们以前发现了一个FMN衍生物,5FDQD,保护小鼠免受腹泻引起梭菌细菌的腹泻。在这里,我们介绍了基于结构的药物设计策略,其导致该氟 - 苯基衍生物的发现具有抗菌性质。这种方法涉及以下阶段:(1)所有可用的自由和结合的FMN核心线结构的结构分析; (2)衍生物的设计,合成和纯化; (3)使用两种化学探测方法对生产性结合的体外测试; (4)体外转录终止测定; (5)与最成熟的候选物复合物的FMN核糖开关的晶体结构的分辨率。在该过程中,我们描绘了对该核素开关的生产性结合的原理,从而证明了协调结构引导方法对抗RNA的造成药物的有效性。

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