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吲哚衍生物作为抗HIV-1药物的计算机模拟研究:结合对接、分子动力学和三维定量构效关系研究

In silico study on indole derivatives as anti HIV-1 agents: a combined docking, molecular dynamics and 3D-QSAR study.

作者信息

Balupuri Anand, Gadhe Changdev G, Balasubramanian Pavithra K, Kothandan Gugan, Cho Seung Joo

机构信息

Department of Bio-New Drug Development, College of Medicine, Chosun University, 375 Seosuk-dong, Dong-gu, Gwangju, 501-759, Republic of Korea.

出版信息

Arch Pharm Res. 2014 Aug;37(8):1001-15. doi: 10.1007/s12272-013-0313-1. Epub 2013 Dec 14.

Abstract

The HIV-1 envelope glycoprotein gp120 plays a vital role in the entry of virus into the host cells and is a potential antiviral drug target. Recently, indole derivatives have been reported to inhibit HIV-1 through binding to gp120, and this prevents gp120 and CD4 interaction to inhibit the infectivity of HIV-1. In this work, molecular docking, molecular dynamics (MD) and three-dimensional quantitative structure-activity relationship studies were carried out. Molecular docking studies of the most active and the least active compounds were performed to identify important residues in the binding pocket. We refined the docked poses by MD simulations which resulted in conformational changes. After equilibration, the structure of the ligand and receptor complex was stable. Therefore, we just took the last snapshot as the representative binding pose for this study. This pose for the most active inhibitor was used as a template for receptor-based alignment which was subsequently used for comparative molecular field analysis. Resultant 3D contour maps suggested smaller substituents are desirable at the 7-position of indole ring to avoid steric interactions with Ser375, Phe382 and Tyr384 residues in the active site. These results can be exploited to develop potential leads and for structure-based drug design of novel HIV-1 inhibitors.

摘要

人类免疫缺陷病毒1型包膜糖蛋白gp120在病毒进入宿主细胞的过程中起着至关重要的作用,是一个潜在的抗病毒药物靶点。最近,有报道称吲哚衍生物通过与gp120结合来抑制HIV-1,这会阻止gp120与CD4的相互作用,从而抑制HIV-1的感染性。在这项研究中,进行了分子对接、分子动力学(MD)和三维定量构效关系研究。对活性最高和最低的化合物进行了分子对接研究,以确定结合口袋中的重要残基。我们通过MD模拟优化了对接姿势,这导致了构象变化。平衡后,配体和受体复合物的结构稳定。因此,我们仅将最后一帧作为本研究的代表性结合姿势。将这种活性最高的抑制剂的姿势用作基于受体的比对模板,随后用于比较分子场分析。所得的三维等高线图表明,吲哚环7位上需要较小的取代基,以避免与活性位点中的Ser375、Phe382和Tyr384残基发生空间相互作用。这些结果可用于开发潜在的先导化合物,并用于新型HIV-1抑制剂的基于结构的药物设计。

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