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平行发现策略为核糖开关配体设计提供了基础。

Parallel Discovery Strategies Provide a Basis for Riboswitch Ligand Design.

机构信息

Biochemistry and Biophysics Center, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD, USA.

Chemical Biology Laboratory, National Cancer Institute, Frederick, MD, USA.

出版信息

Cell Chem Biol. 2020 Oct 15;27(10):1241-1249.e4. doi: 10.1016/j.chembiol.2020.07.021. Epub 2020 Aug 13.

Abstract

Riboswitches are mRNA domains that make gene-regulatory decisions upon binding their cognate ligands. Bacterial riboswitches that specifically recognize 5-aminoimidazole-4-carboxamide riboside 5'-monophosphate (ZMP) and 5'-triphosphate (ZTP) regulate genes involved in folate and purine metabolism. Now, we have developed synthetic ligands targeting ZTP riboswitches by replacing the sugar-phosphate moiety of ZMP with various functional groups, including simple heterocycles. Despite losing hydrogen bonds from ZMP, these analogs bind ZTP riboswitches with similar affinities as the natural ligand, and activate transcription more strongly than ZMP in vitro. The most active ligand stimulates gene expression ∼3 times more than ZMP in a live Escherichia coli reporter. Co-crystal structures of the Fusobacterium ulcerans ZTP riboswitch bound to synthetic ligands suggest stacking of their pyridine moieties on a conserved RNA nucleobase primarily determines their higher activity. Altogether, these findings guide future design of improved riboswitch activators and yield insights into how RNA-targeted ligand discovery may proceed.

摘要

Riboswitches 是一种 mRNA 结构域,在与相应配体结合时会做出基因调控决策。专门识别 5-氨基咪唑-4-羧酰胺核苷 5′-单磷酸(ZMP)和 5′-三磷酸(ZTP)的细菌 riboswitches 调节参与叶酸和嘌呤代谢的基因。现在,我们通过用各种功能基团(包括简单的杂环)取代 ZMP 的糖磷酸部分,开发了针对 ZTP riboswitches 的合成配体。尽管失去了 ZMP 的氢键,但这些类似物与天然配体结合的亲和力相似,并且在体外比 ZMP 更强烈地激活转录。最活跃的配体在活大肠杆菌报告基因中的基因表达刺激作用比 ZMP 高约 3 倍。结合合成配体的梭状芽胞杆菌溃疡 ZTP riboswitch 的共晶结构表明,其吡啶部分的堆积主要决定了它们更高的活性,堆积在保守的 RNA 碱基上。总之,这些发现为进一步设计改良的 riboswitch 激活剂提供了指导,并深入了解 RNA 靶向配体发现的可能进展。

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