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首页> 外文期刊>Nucleic acids research >A screening platform to monitor RNA processing and protein-RNA interactions in ribonuclease P uncovers a small molecule inhibitor
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A screening platform to monitor RNA processing and protein-RNA interactions in ribonuclease P uncovers a small molecule inhibitor

机译:监测核糖核酸酶P中RNA加工和蛋白质-RNA相互作用的筛选平台发现了一种小分子抑制剂

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Ribonucleoprotein (RNP) complexes and RNA-processing enzymes are attractive targets for antibiotic development owing to their central roles in microbial physiology. For many of these complexes, comprehensive strategies to identify inhibitors are either lacking or suffer from substantial technical limitations. Here, we describe an activity-binding-structure platform for bacterial ribonuclease P (RNase P), an essential RNP ribozyme involved in 5′ tRNA processing. A novel, real-time fluorescence-based assay was used to monitor RNase P activity and rapidly identify inhibitors using a mini-helix and a pre-tRNA-like bipartite substrate. Using the mini-helix substrate, we screened a library comprising 2560 compounds. Initial hits were then validated using pre-tRNA and the pre-tRNA-like substrate, which ultimately verified four compounds as inhibitors. Biolayer interferometry-based binding assays and molecular dynamics simulations were then used to characterize the interactions between each validated inhibitor and the P protein, P RNA and pre-tRNA. X-ray crystallographic studies subsequently elucidated the structure of the P protein bound to the most promising hit, purpurin, and revealed how this inhibitor adversely affects tRNA 5′ leader binding. This integrated platform affords improved structure-function studies of RNA processing enzymes and facilitates the discovery of novel regulators or inhibitors.
机译:核糖核蛋白(RNP)复合物和RNA加工酶由于在微生物生理学中起着重要作用,因此成为抗生素开发的诱人靶标。对于许多这些复合物,缺乏识别抑制剂的综合策略或者缺乏实质性的技术限制。在这里,我们描述了细菌核糖核酸酶P(RNase P)的活性结合结构平台,该酶是参与5'tRNA加工的必需RNP核酶。一种新颖的,基于荧光的实时测定法用于监测RNase P的活性,并使用小螺旋和类似tRNA的二分体底物快速鉴定抑制剂。使用微型螺旋底物,我们筛选了包含2560种化合物的文库。然后使用pre-tRNA和pre-tRNA样底物验证最初的命中,最终验证了四种化合物作为抑制剂。然后使用基于生物层干涉术的结合测定和分子动力学模拟来表征每种经过验证的抑制剂与P蛋白,P RNA和pre-tRNA之间的相互作用。 X射线晶体学研究随后阐明了与最有希望的命中紫嘌呤结合的P蛋白的结构,并揭示了该抑制剂如何对tRNA 5'前导结合产生不利影响。这个集成的平台提供了改进的RNA处理酶的结构功能研究,并促进了新型调节剂或抑制剂的发现。

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