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Development of a Novel Cell-Permeable Protein–Protein Interaction Inhibitor for the Polo-box Domain of Polo-like Kinase 1

机译:马球样激酶1马球域的新型细胞渗透性蛋白质-蛋白质相互作用抑制剂的开发。

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Polo-like kinase 1 (PLK1) is a key regulator of mitosis and a recognized drug target for cancer therapy. Inhibiting the polo-box domain of PLK1 offers potential advantages of increased selectivity and subsequently reduced toxicity compared with targeting the kinase domain. However, many if not all existing polo-box domain inhibitors have been shown to be unsuitable for further development. In this paper, we describe a novel compound series, which inhibits the protein–protein interactions of PLK1 via the polo-box domain. We combine high throughput screening with molecular modeling and computer-aided design, synthetic chemistry, and cell biology to address some of the common problems with protein–protein interaction inhibitors, such as solubility and potency. We use molecular modeling to improve the solubility of a hit series with initially poor physicochemical properties, enabling biophysical and biochemical characterization. We isolate and characterize enantiomers to improve potency and demonstrate on-target activity in both cell-free and cell-based assays, entirely consistent with the proposed binding model. The resulting compound series represents a promising starting point for further progression along the drug discovery pipeline and a new tool compound to study kinase-independent PLK functions.
机译:Polo样激酶1(PLK1)是有丝分裂的关键调节剂,是公认的癌症治疗药物靶标。与靶向激酶结构域相比,抑制PLK1的polo-box结构域具有增加选择性和降低毒性的潜在优势。但是,许多(如果不是全部)现有的polo-box域抑制剂已被证明不适合进一步开发。在本文中,我们描述了一个新的化合物系列,该化合物通过polo-box域抑制PLK1的蛋白-蛋白相互作用。我们将高通量筛选与分子建模和计算机辅助设计,合成化学和细胞生物学相结合,以解决蛋白质-蛋白质相互作用抑制剂的一些常见问题,例如溶解性和效力。我们使用分子建模来改善具有最初较差的理化性质的命中系列的溶解度,从而实现生物物理和生化表征。我们分离和表征对映异构体,以提高效能,并证明在无细胞和基于细胞的测定中的靶标活性,与所提出的结合模型完全一致。所得的化合物系列代表了沿着药物开发流程进一步发展的有希望的起点,也是研究激酶非依赖性PLK功能的新工具化合物。

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