核糖核酸
小分子
计算生物学
基因组
核糖开关
生物
平移移码
化学
病毒学
遗传学
非编码RNA
基因
核糖体
作者
Mo Yang,Feyisola P. Olatunji,Curran A. Rhodes,Sumirtha Balaratnam,Kara Dunne-Dombrink,Srinath Seshadri,Liang Xiao,Christopher P. Jones,Stuart F.J. Le Grice,A.R. Ferré-D′Amaré,John S. Schneekloth
标识
DOI:10.1021/acsmedchemlett.3c00051
摘要
Targeting structured RNA elements in the SARS-CoV-2 viral genome with small molecules is an attractive strategy for pharmacological control over viral replication. In this work, we report the discovery of small molecules that target the frameshifting element (FSE) in the SARS-CoV-2 RNA genome using high-throughput small-molecule microarray (SMM) screening. A new class of aminoquinazoline ligands for the SARS-CoV-2 FSE are synthesized and characterized using multiple orthogonal biophysical assays and structure–activity relationship (SAR) studies. This work reveals compounds with mid-micromolar binding affinity (KD = 60 ± 6 μM) to the FSE RNA and supports a binding mode distinct from previously reported FSE binders MTDB and merafloxacin. In addition, compounds are active in in vitro dual-luciferase and in-cell dual-fluorescent-reporter frameshifting assays, highlighting the promise of targeting structured elements of RNAs with druglike compounds to alter expression of viral proteins.
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