Arhin Grace, Haghpassand Lily, Keane Sarah C
Biophysics Program, University of Michigan USA
Department of Chemistry, University of Michigan USA.
RSC Med Chem. 2025 Jul 25. doi: 10.1039/d5md00553a.
MicroRNAs (miRNAs) regulate gene expression and the dysregulation in mature miRNA levels has been implicated in a wide variety of diseases. In particular, altered levels of mature microRNA-31 (miR-31) has been linked to a variety of different cancers. Targeting functionally relevant sites of the precursor structure of miR-31 with small molecules offer a strategy to regulate miR-31 maturation. Herein we describe a virtual screening approach to explore the druggability of the precursor structure of microRNA-31 (pre-miR-31). We used a structure-guided approach to virtually screen a fragment library and followed up with experimental characterization of top-ranking candidates, leading to the identification of several compounds that bound to pre-miR-31. Further characterization of the RNA-ligand complexes by heteronuclear single quantum coherence (HSQC) NMR spectroscopy revealed three compounds bound pre-miR-31 at the Dicer cleavage site, suggesting that these compounds may function to inhibit Dicer processing. Using these initial hits, we performed chemical structure similarity searches and identified additional binders of pre-miR-31 that had equivalent or enhanced binding relative to the parent compounds. These studies suggest a generalizable approach by which RNA-binding ligands can be identified from large chemical databases. These hits can then be further optimized to improve affinity and specificity for downstream functional assays.
微小RNA(miRNA)调控基因表达,成熟miRNA水平的失调与多种疾病有关。特别是,成熟微小RNA - 31(miR - 31)水平的改变与多种不同癌症相关。用小分子靶向miR - 31前体结构的功能相关位点提供了一种调节miR - 31成熟的策略。在此,我们描述了一种虚拟筛选方法,以探索微小RNA - 31(pre - miR - 31)前体结构的可成药性。我们使用结构导向方法对片段库进行虚拟筛选,并对排名靠前的候选物进行实验表征,从而鉴定出几种与pre - miR - 31结合的化合物。通过异核单量子相干(HSQC)核磁共振光谱对RNA - 配体复合物进行进一步表征,发现三种化合物在Dicer切割位点与pre - miR - 31结合,表明这些化合物可能起到抑制Dicer加工的作用。利用这些初步筛选出的化合物,我们进行了化学结构相似性搜索,并鉴定出pre - miR - 31的其他结合物,其结合能力相对于母体化合物相当或有所增强。这些研究表明了一种可推广的方法,通过该方法可以从大型化学数据库中识别RNA结合配体。然后可以对这些筛选出的化合物进行进一步优化,以提高其对下游功能测定的亲和力和特异性。