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Identification of Potential Mps1 Inhibitors Through Multiple Pharmacophore-based Virtual Screening and Molecular Docking

机译:通过多个基于药理学的虚拟筛选和分子对接鉴定潜在的Mps1抑制剂

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摘要

Monopolar spindle 1 (Mps1), a crucial component of spindle assembly checkpoint, essential to maintain the chromosomal stability, is an attractive cancer drug target. Now the accessibility to multiple crystal structures of Mps1 ligand complexes and inhibitors with known biological activities have accelerated the identification of novel molecular scaffolds by means of computer. In this paper, we developed the structure-based and ligand-based phormacophores, and the two approaches were cascaded together for comparative analysis. The multiple pharmacophore models were evaluated using enrichment analysis. Then the six models were used for virtual screening of chemical databases. The retrieved compounds with novel scaffolds and good fitness were further refined by docking studies and ADME profiling. Finally, 16 hits were identified and the binding modes observed through docking the hits to the ATP binding domain gave valuable insights into the relationship between structural features and inhibitory activity. The present research work provides valuable information for rational design of potent and selective Mps1 agents.
机译:单极纺锤体1(Mps1)是纺锤体装配检查点的关键组成部分,对维持染色体稳定性至关重要,是一种有吸引力的抗癌药物。现在,具有已知生物学活性的Mps1配体复合物和抑制剂的多种晶体结构的可及性,已通过计算机加速了新型分子支架的鉴定。在本文中,我们开发了基于结构和基于配体的phormacophores,并将这两种方法层叠在一起以进行比较分析。使用富集分析评估了多个药效团模型。然后将这六个模型用于化学数据库的虚拟筛选。通过对接研究和ADME分析,进一步精炼了具有新颖支架和良好适应性的化合物。最后,鉴定了16个命中,并且通过将命中与ATP结合域对接观察到的结合模式对结构特征和抑制活性之间的关系提供了有价值的见解。本研究工作为有效和选择性Mps1剂的合理设计提供了有价值的信息。

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