首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Identification of small-molecule ligands that bind to MiR-21 as potential therapeutics for endometriosis by screening ZINC database and in-vitro assays
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Identification of small-molecule ligands that bind to MiR-21 as potential therapeutics for endometriosis by screening ZINC database and in-vitro assays

机译:通过筛选锌库和体外测定,鉴定与miR-21结合的小分子配体作为子宫内膜异位症的潜在治疗方法

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摘要

MicroRNA-21 (miR-21) is an important regulator of cell signaling pathways involved in the pathogenesis of endometriosis. Here, we attempted to discover new ligands of miR-21 pre-element by carrying out stepwise high throughput virtual screening against a chemical library consisting of over 4 million lead-like compounds. In the procedure, a synthetic strategy that integrated empirical exclusion, molecular docking, druglikeness evaluation, consensus scoring and manual culling was employed to computationally identify seven promising hits from the large compound library, of which four were determined to have moderate or high affinity for miR-21 pre-element (K-D range between 3.7 and 109 mu M). We also evaluated the putative binding site and predicted interaction mode of pre-element with its identified compound ligands by inversion mutation of the wild-type pre-element to mutant [U11A/A20U], and explored the sequence-specific recognition in pre-element-ligand interactions by generating a background of numerous random RNA decoys. It was revealed that most of identified pre-element binders are positively charged to meet the electrostatic complementarity with the negative electrostatic potential surface of RNA molecule, and the compound selectivity seems related partially to their affinity.
机译:microRNA-21(miR-21)是参与子宫内膜异位症发病机制的细胞信号传导途径的重要调节因子。在这里,我们试图通过对由400多万铅状化合物组成的化学文本进行逐步的高通量虚拟筛选来发现MiR-21预元件的新配体。在该程序中,使用综合策略,即综合经验排除,分子对接,药物性能评估,共识评分和手动剔除来计算来自大型复合文库的七次有希望的次数,其中确定了对mir具有中等或高亲和力的-21预元件(3.7和109 mu m之间的KD范围)。我们还通过野生型预元素对突变体[U11a / a20u]的反转突变,评估预推定的结合位点和预测的预元素与其鉴定的化合物配体,并探讨了预元件中的序列特异性识别 - 通过产生多种随机RNA诱饵的背景来相互作用。揭示了大多数所识别的预元件粘合剂正电荷以满足RNA分子的负静电电位表面的静电互补性,并且复合选择性似乎部分地与其亲和力相关。

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