Department of Chemistry, The Scripps Research Institute & UF Scripps Biomedical Research, 130 Scripps Way, Jupiter, Florida 33458, United States.
Bioinformatics and Statistics Core, The Scripps Research Institute & UF Scripps Biomedical Research, 130 Scripps Way, Jupiter, Florida 33458, United States.
J Am Chem Soc. 2022 Nov 16;144(45):20815-20824. doi: 10.1021/jacs.2c08770. Epub 2022 Nov 2.
RNA is challenging to target with bioactive small molecules, particularly those of low molecular weight that bind with sufficient affinity and specificity. In this report, we developed a platform to address this challenge, affording a novel bioactive interaction. An RNA-focused small-molecule fragment collection ( = 2500) was constructed by analyzing features in all publicly reported compounds that bind RNA, the largest collection of RNA-focused fragments to date. The RNA-binding landscape for each fragment was studied by using a library-versus-library selection with an RNA library displaying a discrete structural element, probing over 12.8 million interactions, the greatest number of interactions between fragments and biomolecules probed experimentally. Mining of this dataset across the human transcriptome defined a drug-like fragment that potently and specifically targeted the microRNA-372 hairpin precursor, inhibiting its processing into the mature, functional microRNA and alleviating invasive and proliferative oncogenic phenotypes in gastric cancer cells. Importantly, this fragment has favorable properties, including an affinity for the RNA target of 300 ± 130 nM, a molecular weight of 273 Da, and quantitative estimate of drug-likeness (QED) score of 0.8. (For comparison, the mean QED of oral medicines is 0.6 ± 0.2). Thus, these studies demonstrate that a low-molecular weight, fragment-like compound can specifically and potently modulate RNA targets.
RNA 很难用生物活性小分子进行靶向治疗,特别是那些结合亲和力和特异性足够的低分子量小分子。在本报告中,我们开发了一个平台来解决这一挑战,提供了一种新的生物活性相互作用。通过分析所有已报道的与 RNA 结合的化合物的特征,构建了一个针对 RNA 的小分子片段库(=2500 个),这是迄今为止最大的针对 RNA 的片段库。通过使用带有显示离散结构元件的 RNA 文库的文库对文库选择,研究了每个片段的 RNA 结合景观,探测了超过 1280 万个相互作用,这是实验中探测到的片段和生物分子之间相互作用的最大数量。对这个数据集在人类转录组中的挖掘定义了一个具有潜力和特异性的药物样片段,该片段可以靶向 microRNA-372 发夹前体,抑制其加工成成熟的、有功能的 microRNA,并缓解胃癌细胞中的侵袭性和增殖性致癌表型。重要的是,该片段具有良好的特性,包括对 RNA 靶标的亲和力为 300±130 nM、分子量为 273 Da 以及药物样性(QED)评分 0.8。(相比之下,口服药物的平均 QED 为 0.6±0.2)。因此,这些研究表明,低分子量的片段样化合物可以特异性和有效地调节 RNA 靶标。