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首页> 外文期刊>Journal of molecular graphics & modelling >Pharmacophore modeling, virtual screening, docking and in silico ADMET analysis of protein kinase B (PKB β) inhibitors
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Pharmacophore modeling, virtual screening, docking and in silico ADMET analysis of protein kinase B (PKB β) inhibitors

机译:蛋白激酶B(PKBβ)抑制剂的药理学建模,虚拟筛选,对接和计算机模拟ADMET分析

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Protein kinase B (PKB) is a key mediator of proliferation and survival pathways that are critical for cancer growth. Therefore, inhibitors of PKB are useful agents for the treatment of cancer. Herein, we describe pharmacophore-based virtual screening combined with docking study as a rational strategy for identification of novel hits or leads. Pharmacophore models of PKB β inhibitors were established using the DISCOtech and refined with GASP from compounds with IC_(50) values ranging from 2.2 to 246 nM. The best pharmacophore model consists of one hydrogen bond acceptor (HBA), one hydrogen bond donor (HBD) site and two hydrophobic (HY) features. The pharmacophore models were validated through receiver operating characteristic (ROC) and Güner-Henry (GH) scoring methods indicated that the model-3 was statistically valuable and reliable in identifying PKB β inhibitors. Pharmacophore model as a 3D search query was searched against NCI database. Several compounds with different structures (scaffolds) were retrieved as hits. Molecules with a Q_(fit) value of more than 95 and three other known inhibitors were docked in the active site of PKB to further explore the binding mode of these compounds. Finally in silico pharmacokinetic and toxicities were predicted for active hit molecules. The hits reported here showed good potential to be PKB β inhibitors.
机译:蛋白激酶B(PKB)是对癌症生长至关重要的增殖和生存途径的关键介质。因此,PKB抑制剂是用于治疗癌症的有用试剂。在本文中,我们将基于药效团的虚拟筛选与对接研究相结合,作为识别新型命中或线索的合理策略。使用DISCOtech建立了PKBβ抑制剂的药理模型,并用GASP对IC_(50)值在2.2至246 nM之间的化合物进行了改进。最好的药效团模型包括一个氢键受体(HBA),一个氢键供体(HBD)位和两个疏水(HY)功能。通过接收器操作特征(ROC)验证了药效团模型,Güner-Henry(GH)评分方法表明,该模型3具有统计学上的价值,并且在鉴定PKBβ抑制剂方面可靠。针对NCI数据库搜索了作为3D搜索查询的Pharmacophore模型。检索了几种具有不同结构(支架)的化合物作为命中物。 Q_(fit)值大于95的分子和其他三种已知的抑制剂停靠在PKB的活性位点,以进一步探索这些化合物的结合方式。最终预测了活性命中分子的计算机药代动力学和毒性。此处报道的命中数据显示出有可能成为PKBβ抑制剂。

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