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核糖开关配体相互作用的机制分析为基因表达的药理学控制提供了深入了解。

Mechanistic analysis of Riboswitch Ligand interactions provides insights into pharmacological control over gene expression.

机构信息

Chemical Biology Laboratory, Center for Cancer Research, National Cancer Institute, Frederick, MD, USA.

Depixus SAS, Paris, France.

出版信息

Nat Commun. 2024 Sep 17;15(1):8173. doi: 10.1038/s41467-024-52235-3.

Abstract

Riboswitches are structured RNA elements that regulate gene expression upon binding to small molecule ligands. Understanding the mechanisms by which small molecules impact riboswitch activity is key to developing potent, selective ligands for these and other RNA targets. We report the structure-informed design of chemically diverse synthetic ligands for PreQ riboswitches. Multiple X-ray co-crystal structures of synthetic ligands with the Thermoanaerobacter tengcongensis (Tte)-PreQ riboswitch confirm a common binding site with the cognate ligand, despite considerable chemical differences among the ligands. Structure probing assays demonstrate that one ligand causes conformational changes similar to PreQ in six structurally and mechanistically diverse PreQ riboswitch aptamers. Single-molecule force spectroscopy is used to demonstrate differential modes of riboswitch stabilization by the ligands. Binding of the natural ligand brings about the formation of a persistent, folded pseudoknot structure, whereas a synthetic ligand decreases the rate of unfolding through a kinetic mechanism. Single round transcription termination assays show the biochemical activity of the ligands, while a GFP reporter system reveals compound activity in regulating gene expression in live cells without toxicity. Taken together, this study reveals that diverse small molecules can impact gene expression in live cells by altering conformational changes in RNA structures through distinct mechanisms.

摘要

Riboswitches 是一种结构 RNA 元件,在与小分子配体结合后会调节基因表达。了解小分子如何影响 riboswitch 活性对于开发针对这些和其他 RNA 靶标的有效、选择性配体至关重要。我们报告了基于结构的、具有化学多样性的 PreQ riboswitches 合成配体的设计。与 Thermoanaerobacter tengcongensis (Tte)-PreQ riboswitch 的多个合成配体的 X 射线共晶结构证实了与同源配体的共同结合位点,尽管配体之间存在相当大的化学差异。结构探测实验表明,一种配体在六个结构和机制上不同的 PreQ riboswitch 适体中引起类似于 PreQ 的构象变化。单分子力谱用于证明配体对 riboswitch 的稳定作用的不同模式。天然配体的结合导致持久折叠的假结结构的形成,而合成配体通过动力学机制降低解折叠的速率。单次转录终止测定显示了配体的生化活性,而 GFP 报告系统揭示了化合物在不产生毒性的情况下在活细胞中调节基因表达的活性。总的来说,这项研究表明,通过通过不同的机制改变 RNA 结构的构象变化,各种小分子可以影响活细胞中的基因表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4514/11408619/71f1ce72d7e8/41467_2024_52235_Fig1_HTML.jpg

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