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2-苯基嘧啶类似物作为选择性磷酸二酯酶4B(PDE4B)抑制剂的药效团建模、三维定量构效关系(3D-QSAR)及对接研究

Pharmacophore modeling, 3D-QSAR and docking study of 2-phenylpyrimidine analogues as selective PDE4B inhibitors.

作者信息

Tripuraneni Naga Srinivas, Azam Mohammed Afzal

机构信息

Department of Pharmaceutical Chemistry, JSS College of Pharmacy, Ooty, Udhagamandalam 643001, Tamil Nadu, India; Constituent College of JSS University, Mysore, India.

Department of Pharmaceutical Chemistry, JSS College of Pharmacy, Ooty, Udhagamandalam 643001, Tamil Nadu, India; Constituent College of JSS University, Mysore, India.

出版信息

J Theor Biol. 2016 Apr 7;394:117-126. doi: 10.1016/j.jtbi.2016.01.007. Epub 2016 Jan 22.

Abstract

Pharmacophore modeling, molecular docking, and molecular dynamics (MD) simulation studies have been performed, to explore the putative binding modes of 2-phenylpyrimidine series as PDE4B selective inhibitors. A five point pharmacophore model was developed using 87 molecules having pIC50 ranging from 8.52 to 5.07. The pharmacophore hypothesis yielded a statistically significant 3D-QSAR model, with a high correlation coefficient (R(2)=0.918), cross validation coefficient (Q(2)=0.852), and F value (175) at 4 component PLS factor. The external validation indicated that our QSAR model possessed high predictive power (R(2)=0.70). The generated model was further validated by enrichment studies using the decoy test. To evaluate the effectiveness of docking protocol in flexible docking, we have selected crystallographic bound compound to validate our docking procedure as evident from root mean square deviation. A 10ns molecular dynamics simulation confirmed the docking results of both stability of the 1XMU-ligand complex and the presumed active conformation. Further, similar orientation was observed between the superposition of the conformations of 85 after MD simulation and best XP-docking pose; MD simulation and 3D-QSAR pose; best XP-docking and 3D-QSAR poses. Outcomes of the present study provide insight in designing novel molecules with better PDE4B selective inhibitory activity.

摘要

已开展药效团建模、分子对接和分子动力学(MD)模拟研究,以探索2-苯基嘧啶系列作为PDE4B选择性抑制剂的假定结合模式。使用87个pIC50范围为8.52至5.07的分子构建了一个五点药效团模型。该药效团假说产生了一个具有统计学意义的3D-QSAR模型,在4个组分的PLS因子下,相关系数(R(2)=0.918)、交叉验证系数(Q(2)=0.852)和F值(175)都很高。外部验证表明我们的QSAR模型具有较高的预测能力(R(2)=0.70)。通过使用诱饵测试的富集研究进一步验证了所生成的模型。为了评估柔性对接中对接协议的有效性,我们选择了晶体结合化合物来验证我们的对接程序,均方根偏差证明了这一点。10纳秒的分子动力学模拟证实了1XMU-配体复合物稳定性和假定活性构象的对接结果。此外,MD模拟后的85构象叠加与最佳XP对接姿势之间;MD模拟与3D-QSAR姿势之间;最佳XP对接与3D-QSAR姿势之间观察到相似取向。本研究结果为设计具有更好PDE4B选择性抑制活性的新型分子提供了见解。

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