Department of Chemistry , The Scripps Research Institute , Jupiter , Florida 33458 , United States.
ACS Comb Sci. 2018 Aug 13;20(8):482-491. doi: 10.1021/acscombsci.8b00049. Epub 2018 Jul 31.
Many types of RNAs exist in the human transcriptome, yet only the bacterial ribosome has been exploited as a small molecule drug target. Aside from rRNA, other cellular RNAs such as noncoding RNAs have primarily secondary structure and limited tertiary structure. Within these secondary structures of noncanonically paired and unpaired regions, more than 50% are base paired, with most efforts to target these structures focused on looped regions. A void exists in the availability of small molecules capable of targeting RNA base pairs. Using chemoinformatics, an RNA-focused library enriched for nitrogen-containing heterocycles was developed and tested for binding RNA base pairs, leading to the identification of six selective and previously unknown binders. While all binders were derivatives of benzimidazoles, those with expanded aromatic polycycles bound selectively to AU pairs, while those with flexible urea side chains bound selectively to GC pairs. Two of the three selective GC pair binders can distinguish between two different orientations, 5'GG/3'CC and 5'GC/3'CG pairs. Furthermore, all six molecules showed >50-fold selectivity for RNA over DNA. These studies provide foundational knowledge to better exploit RNA as targets for small molecule chemical probes or lead therapeutics by using modules that target RNA base pairs.
人类转录组中存在多种类型的 RNA,但仅有细菌核糖体被开发为小分子药物靶点。除了 rRNA,其他细胞 RNA,如非编码 RNA,主要具有二级结构和有限的三级结构。在这些非规范配对和未配对区域的二级结构中,超过 50%是碱基配对的,大多数靶向这些结构的努力都集中在环化区域。目前缺乏能够靶向 RNA 碱基对的小分子。使用化学生物信息学,开发了一个富含含氮杂环的 RNA 靶向文库,并对其与 RNA 碱基对的结合进行了测试,从而鉴定出六种选择性的、以前未知的结合物。虽然所有结合物都是苯并咪唑的衍生物,但那些具有扩展芳香多环的结合物选择性地结合 AU 对,而那些具有柔性脲侧链的结合物选择性地结合 GC 对。在三个选择性 GC 对结合物中,有两个可以区分两种不同的取向,即 5'GG/3'CC 和 5'GC/3'CG 对。此外,所有六种分子对 RNA 的选择性都大于 DNA 的 50 倍。这些研究为更好地利用 RNA 作为小分子化学探针或先导治疗药物的靶点提供了基础知识,方法是使用靶向 RNA 碱基对的模块。