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首页> 外文期刊>Journal of Computer-Aided Molecular Design >Identification of novel inhibitors for Pim-1 kinase using pharmacophore modeling based on a novel method for selecting pharmacophore generation subsets
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Identification of novel inhibitors for Pim-1 kinase using pharmacophore modeling based on a novel method for selecting pharmacophore generation subsets

机译:基于选择药效团产生子集的新方法的药效团建模,鉴定Pim-1激酶的新型抑制剂

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Targeting Proviral integration-site of murine Moloney leukemia virus 1 kinase, hereafter called Pim-1 kinase, is a promising strategy for treating different kinds of human cancer. Headed for this a total list of 328 formerly reported Pim-1 kinase inhibitors has been explored and divided based on the pharmacophoric features of the most active molecules into 10 subsets projected to represent potential active binding manners accessible to ligands within the binding pocket of Pim-1 kinase. Discovery Studio 4.1 (DS 4.1) was employed to detect potential pharmacophoric active binding manners anticipated by Pim-1 Kinase inhibitors. The pharmacophoric models were then allowed to compete within Quantitative Structure Activity Relationship (QSAR) framework with other 2D descriptors. Accordingly Genetic algorithm and multiple linear regression investigation were engaged to find the finest QSAR equation that has the best predictive power r (262) (2) = 0.70, F = 119.14, r (LOO) (2) = 0.693, r (PRESS) (2) against 66 external test inhibitors = 0.71 q(2) = 0.55. Three different pharmacophores appeared in the successful QSAR equation this represents three different binding modes for inhibitors within the Pim-1 kinase binding pocket. Pharmacophoric models were later used to screen compounds within the National Cancer Institute database. Several low micromolar Pim-1 Kinase inhibitors were captured. The most potent hits show IC50 values of 0.77 and 1.03 A mu M. Also, upon analyzing the successful QSAR Equation we found that some polycyclic aromatic electron-rich structures namely 6-Chloro-2-methoxy-acridine can be considered as putative hits for Pim-1 kinase inhibition.
机译:靶向鼠莫洛尼氏白血病病毒1激酶(以下称为Pim-1激酶)的原病毒整合位点是治疗各种人类癌症的有前途的策略。为此,已对328种先前报道的Pim-1激酶抑制剂的总清单进行了研究,并根据活性最高的分子的药效学特征将其分为10个子集,这些子集代表了Pim- 1种激酶。使用Discovery Studio 4.1(DS 4.1)检测Pim-1激酶抑制剂预期的潜在药效学活性结合方式。然后使药效团模型在定量结构活性关系(QSAR)框架内与其他2D描述子竞争。因此,进行了遗传算法和多元线性回归研究,找到了具有最佳预测能力的最佳QSAR方程r(262)(2)= 0.70,F = 119.14,r(LOO)(2)= 0.693,r(PRESS) (2)针对66个外部测试抑制剂= 0.71 q(2)= 0.55。在成功的QSAR方程中出现了三种不同的药效基团,代表了Pim-1激酶结合口袋中抑制剂的三种不同结合模式。药理模型后来用于在美国国家癌症研究所数据库中筛选化合物。捕获了几种低微摩尔浓度的Pim-1激酶抑制剂。最有效的命中值显示IC50值为0.77和1.03 AμM。此外,通过分析成功的QSAR方程,我们发现某些多环芳族富电子结构,即6-氯-2-甲氧基-ac啶可被认为是Pim-1激酶抑制作用。

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