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理解类药性化合物与典型茎环 RNA 非特异性结合的特点及其对功能性细胞检测的影响。

Understanding the characteristics of nonspecific binding of drug-like compounds to canonical stem-loop RNAs and their implications for functional cellular assays.

机构信息

Department of Biochemistry, Center for Virology, Duke University Medical Center, Durham, North Carolina 27710, USA.

Department of Chemistry, Center for Virology, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

RNA. 2021 Jan;27(1):12-26. doi: 10.1261/rna.076257.120. Epub 2020 Oct 7.

Abstract

Identifying small molecules that selectively bind an RNA target while discriminating against all other cellular RNAs is an important challenge in RNA-targeted drug discovery. Much effort has been directed toward identifying drug-like small molecules that minimize electrostatic and stacking interactions that lead to nonspecific binding of aminoglycosides and intercalators to many stem-loop RNAs. Many such compounds have been reported to bind RNAs and inhibit their cellular activities. However, target engagement and cellular selectivity assays are not routinely performed, and it is often unclear whether functional activity directly results from specific binding to the target RNA. Here, we examined the propensities of three drug-like compounds, previously shown to bind and inhibit the cellular activities of distinct stem-loop RNAs, to bind and inhibit the cellular activities of two unrelated HIV-1 stem-loop RNAs: the transactivation response element (TAR) and the rev response element stem IIB (RREIIB). All compounds bound TAR and RREIIB in vitro, and two inhibited TAR-dependent transactivation and RRE-dependent viral export in cell-based assays while also exhibiting off-target interactions consistent with nonspecific activity. A survey of X-ray and NMR structures of RNA-small molecule complexes revealed that aminoglycosides and drug-like molecules form hydrogen bonds with functional groups commonly accessible in canonical stem-loop RNA motifs, in contrast to ligands that specifically bind riboswitches. Our results demonstrate that drug-like molecules can nonspecifically bind stem-loop RNAs most likely through hydrogen bonding and electrostatic interactions and reinforce the importance of assaying for off-target interactions and RNA selectivity in vitro and in cells when assessing novel RNA-binders.

摘要

鉴定能够选择性结合 RNA 靶标而不与其他细胞 RNA 结合的小分子是 RNA 靶向药物发现中的一个重要挑战。人们已经投入了大量精力来鉴定具有药物样特性的小分子,这些小分子可最大限度地减少导致氨基糖苷类和嵌入剂与许多茎环 RNA 非特异性结合的静电和堆积相互作用。许多此类化合物已被报道可与 RNA 结合并抑制其细胞活性。然而,通常不进行靶标结合和细胞选择性测定,也不清楚功能活性是否直接源自与靶 RNA 的特异性结合。在这里,我们研究了三种先前已被证明可结合并抑制不同茎环 RNA 细胞活性的药物样化合物与两种不相关的 HIV-1 茎环 RNA(转录激活反应元件 (TAR) 和 rev 反应元件茎 IIB (RREIIB))结合并抑制其细胞活性的倾向。所有化合物均在体外与 TAR 和 RREIIB 结合,其中两种化合物在基于细胞的测定中抑制 TAR 依赖性转录激活和 RRE 依赖性病毒输出,同时还表现出与非特异性活性一致的非靶标相互作用。对 RNA-小分子复合物的 X 射线和 NMR 结构的调查显示,氨基糖苷类和药物样分子与通常在典型茎环 RNA 基序中可及的官能团形成氢键,与特异性结合核酶的配体形成氢键形成对比。我们的结果表明,药物样分子很可能通过氢键和静电相互作用非特异性地结合茎环 RNA,并强调在评估新型 RNA 结合物时,在体外和细胞中测定非靶标相互作用和 RNA 选择性的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e170/7749633/0bd734e2d4bf/12f01.jpg

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