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Tertiary RNA Folding-Targeted Drug Screening Strategy Using a Protein Nanopore

机译:使用蛋白质纳米孔的三级RNA折叠靶向药物筛选策略

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摘要

Bacterial riboswitch RNAs are attractive targets for novel antibiotics against antibiotic-resistant superbacteria. Their binding to cognate metabolites is essential for the regulation of bacterial gene expression. Despite the importance of RNAs as therapeutic targets, the development of RNA-targeted, small-molecule drugs is limited by current biophysical methods. Here, we monitored the specific interaction between the adenine-sensing riboswitch aptamer domain (ARS) and adenine at the single-molecule level using α-hemolysin (αHL) nanopores. During adenine-induced tertiary folding, adenine-bound ARS intermediates exhibited characteristic nanopore events, including a two-level ionic current blockade and a ~ 5.6-fold longer dwell time than that of free RNA. In a proof-of-concept experiment, tertiary RNA folding-targeted drug screening was performed using a protein nanopore, which resulted in the discovery of three new ARS-targeting hit compounds from a natural compound library. Taken together, these results reveal that αHL nanopores are a valuable platform for ultrasensitive, label-free, and single-molecule-based drug screening against therapeutic RNA targets.
机译:细菌核糖开关RNA是对抗抗生素耐药超级细菌的新型抗生素的有吸引力的靶点。它们与同源代谢物的结合对于调节细菌基因表达至关重要。尽管RNA作为治疗靶点具有重要意义,但RNA靶向小分子药物的开发受到当前生物物理方法的限制。在这里,我们使用α-溶血素(α-HL)纳米孔在单分子水平上监测腺嘌呤感应核糖开关适体结构域(ARS)和腺嘌呤之间的特异性相互作用。在腺嘌呤诱导的三级折叠过程中,腺嘌呤结合的ARS中间体表现出特征性的纳米孔事件,包括两级离子电流阻断和比游离RNA长约5.6倍的停留时间。在一项概念验证实验中,使用蛋白质纳米孔进行了三级RNA折叠靶向药物筛选,结果从天然化合物库中发现了三种新的ARS靶向hit化合物。综上所述,这些结果表明α-HL纳米孔是针对治疗性RNA靶点进行超灵敏、无标记和单分子药物筛选的一个有价值的平台。

著录项

  • 来源
    《Analytical chemistry》 |2021年第5期|共9页
  • 作者单位

    Disease Target Structure Research Center KRIBB;

    Disease Target Structure Research Center KRIBB;

    Disease Target Structure Research Center KRIBB;

    Department of Bio and Brain Engineering;

    Department of Bio and Brain Engineering;

    Graduate School of Biotechnology &

    Department of Food Science and Biotechnology College of Life Sciences Kyung Hee University;

    Department of Materials Science and Engineering Seoul National University;

    College of Pharmacy Chungbuk National University;

    Disease Target Structure Research Center KRIBB;

    Disease Target Structure Research Center KRIBB;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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