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Crystallographic analysis of TPP riboswitch binding by small molecule ligands discovered through fragment-based drug discovery approaches

机译:通过基于片段的药物发现方法发现的小分子配体对TPP核糖开关结合的晶体学分析

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摘要

Riboswitches are structured mRNA elements that regulate gene expression in response to metabolite or second messenger binding, and are promising targets for drug discovery. Fragment-based drug discovery methods have identified weakly binding small molecule “fragments” that bind a thiamine pyrophosphate (TPP) riboswitch. However, these fragments require substantial chemical elaboration into more potent, drug-like molecules. Structure determination of the fragments bound to the riboswitch is the necessary next step. In this chapter, we describe the methods for co-crystallization and structure determination of fragment-bound TPP riboswitch structures. We focus on considerations for screening crystallization conditions across multiple crystal forms and provide guidance for building the fragment into the refined crystallographic model. These methods are broadly applicable for crystallographic analyses of any small molecules that bind structured RNAs.
机译:核糖开关是结构化的mRNA元件,可响应代谢物或第二信使结合而调节基因表达,是药物发现的有希望的目标。基于片段的药物发现方法已经确定了与硫胺素焦磷酸(TPP)核糖开关结合的弱结合小分子“片段”。但是,这些片段需要大量化学精加工成更有效的药物样分子。下一步是确定与核糖开关结合的片段的结构。在本章中,我们描述了片段结合TPP核糖开关结构的共结晶和结构确定的方法。我们重点考虑跨多种晶体形式筛选结晶条件的考虑,并为将片段构建到精炼晶体学模型中提供指导。这些方法广泛适用于结合结构化RNA的任何小分子的晶体学分析。

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