Laboratory of Genomic Screening, Centre for Integrative Biology, University of Trento, Mattarello, Trento, Italy.
PLoS One. 2013 Aug 12;8(8):e72426. doi: 10.1371/journal.pone.0072426. eCollection 2013.
The RNA binding protein HuR/ELAVL1 binds to AU-rich elements (AREs) promoting the stabilization and translation of a number of mRNAs into the cytoplasm, dictating their fate. We applied the AlphaScreen technology using purified human HuR protein, expressed in a mammalian cell-based system, to characterize in vitro its binding performance towards a ssRNA probe whose sequence corresponds to the are present in TNFα 3' untranslated region. We optimized the method to titrate ligands and analyzed the kinetic in saturation binding and time course experiments, including competition assays. The method revealed to be a successful tool for determination of HuR binding kinetic parameters in the nanomolar range, with calculated Kd of 2.5±0.60 nM, k on of 2.76±0.56*10(6) M(-1) min(-1), and k off of 0.007±0.005 min(-1). We also tested the HuR-RNA complex formation by fluorescent probe-based RNA-EMSA. Moreover, in a 384-well plate format we obtained a Z-factor of 0.84 and an averaged coefficient of variation between controls of 8%, indicating that this biochemical assay fulfills criteria of robustness for a targeted screening approach. After a screening with 2000 small molecules and secondary verification with RNA-EMSA we identified mitoxantrone as an interfering compound with rHuR and TNFα probe complex formation. Notably, this tool has a large versatility and could be applied to other RNA Binding Proteins recognizing different RNA, DNA, or protein species. In addition, it opens new perspectives in the identification of small-molecule modulators of RNA binding proteins activity.
RNA 结合蛋白 HuR/ELAVL1 与富含 AU 的元件 (AREs) 结合,促进许多 mRNA 稳定并翻译到细胞质中,从而决定它们的命运。我们应用纯化的在哺乳动物细胞中表达的人 HuR 蛋白的 AlphaScreen 技术,使用与其在 TNFα 3'非翻译区中存在的 ARE 序列相对应的 ssRNA 探针来表征其体外结合性能。我们优化了该方法来滴定配体,并分析了在饱和结合和时程实验中的动力学,包括竞争测定。该方法成功地成为确定 HuR 在纳摩尔范围内结合动力学参数的工具,计算得到的 Kd 为 2.5±0.60 nM,k on 为 2.76±0.56*10(6) M(-1) min(-1),k off 为 0.007±0.005 min(-1)。我们还通过基于荧光探针的 RNA-EMSA 测试了 HuR-RNA 复合物的形成。此外,在 384 孔板格式中,我们获得了 0.84 的 Z 因子和对照之间的平均变异系数为 8%,表明该生化测定满足针对特定筛选方法的稳健性标准。在用 2000 种小分子进行筛选并通过 RNA-EMSA 进行二次验证后,我们确定米托蒽醌是与 rHuR 和 TNFα 探针复合物形成的干扰化合物。值得注意的是,该工具具有很大的通用性,可以应用于识别不同 RNA、DNA 或蛋白质的其他 RNA 结合蛋白。此外,它为鉴定 RNA 结合蛋白活性的小分子调节剂开辟了新的前景。