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首页> 外文期刊>Medicinal chemistry >Insight into the binding mode between HIV-1 integrase and pyrimidone analogue inhibitors with MD simulation and 3D-QSAR
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Insight into the binding mode between HIV-1 integrase and pyrimidone analogue inhibitors with MD simulation and 3D-QSAR

机译:使用MD模拟和3D-QSAR洞察HIV-1整合酶和嘧啶酮类似物抑制剂之间的结合方式

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摘要

HIV-1 integrase (HIVIN) plays a key role in the replication of the HIV-1 virus and represents an attractive target for anti-HIV drug design. Experimental observation suggests that pyrimidone analogues have potent anti-HIV activity. Then, we modeled an HIVIN catalytic core domain based on the crystal structure of the prototype foamy virus (PFV) integrase. Molecular docking and molecular dynamics simulations were used to investigate the interaction mechanism between pyrimidone analogues and the HIVIN catalytic core domain. MD results suggest that the most active molecule (6K) has more stable hydrogen bonds and hydrophobic contacts than the FDA approved anti-HIV drug Raltegravir. Furthermore, the analogues and Raltegravir might have similar binding modes with HIVIN. Finally, Comparative Molecular Field Analysis (CoMFA) and Comparative Molecular Similarity Indices Analysis (CoMSIA) methods were used to construct three dimensional quantitative structure-activity (3D-QSAR) models. Eleven test set compounds which are not included in the training set were used to evaluate these models. The results suggest that these models are robust and have good prediction abilities.
机译:HIV-1整合酶(HIVIN)在HIV-1病毒的复制中起关键作用,并且是抗HIV药物设计的有吸引力的目标。实验观察表明,嘧啶酮类似物具有有效的抗HIV活性。然后,我们基于原型泡沫病毒(PFV)整合酶的晶体结构对HIVIN催化核心结构域进行建模。分子对接和分子动力学模拟被用来研究嘧啶酮类似物和HIVIN催化核心域之间的相互作用机制。 MD结果表明,与FDA批准的抗HIV药物Raltegravir相比,活性最高的分子(6K)具有更稳定的氢键和疏水接触。此外,类似物和Raltegravir与HIVIN的结合方式可能相似。最后,使用比较分子场分析(CoMFA)和比较分子相似性指标分析(CoMSIA)方法构建三维定量结构活性(3D-QSAR)模型。训练集中未包含的11种测试集化合物用于评估这些模型。结果表明,这些模型是鲁棒的并且具有良好的预测能力。

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