Department of Chemistry, Basic Medical College of Tianjin Medical University, Tianjin, 300070, China.
Interdiscip Sci. 2011 Mar;3(1):17-21. doi: 10.1007/s12539-011-0056-y. Epub 2011 Mar 3.
Since there is no human homolog of this enzyme, HIV-1 integrase (IN) represents a rational and important target for treating HIV infection and preventing AIDS. The 3D structure of full-length HIV-1 IN, either separately or in complex with its inhibitors, has been lacking. Thus, scarce information about the interactions between the HIV-1 IN and its inhibitors can be referenced. To more rationally design potent HIV-1 IN inhibitors, we have previously constructed a model of the full-length HIV-1 IN tetramer and a model of the protein-viral DNA complex, as well as the pharmacophore model of HIV-1 IN strand transfer inhibitors (INSTIs). In this paper, the pharmacophore model of INSTIs was used as a 3D query to screen the Traditional Chinese Medicine Database (TCMD). The hit compounds were further filtered by Lipinski's Rule of Five and docking study to refine the retrieved hits. Finally, 9 suitable ligands with similar structures belonging to the thioglycosides were selected. Subsequent molecular dynamics simulation showed that these compounds had interactions with HIV-1 IN binding site and their possible function as IN inhibitors was discussed.
由于没有这种酶的人类同源物,HIV-1 整合酶(IN)成为治疗 HIV 感染和预防艾滋病的合理且重要的靶点。全长 HIV-1 IN 的 3D 结构,无论是单独的还是与抑制剂复合物的形式,都尚未被确定。因此,关于 HIV-1 IN 与其抑制剂之间相互作用的信息非常有限。为了更合理地设计有效的 HIV-1 IN 抑制剂,我们之前构建了全长 HIV-1 IN 四聚体模型和蛋白-病毒 DNA 复合物模型,以及 HIV-1 IN 链转移抑制剂(INSTIs)的药效团模型。在本文中,将 INSTIs 的药效团模型用作 3D 查询来筛选中药数据库(TCMD)。进一步通过 Lipinski 五规则和对接研究对命中化合物进行过滤,以优化检索到的命中化合物。最后,选择了 9 种具有类似结构的适合的硫代糖化合物作为配体。随后的分子动力学模拟表明,这些化合物与 HIV-1 IN 结合位点相互作用,并讨论了它们作为 IN 抑制剂的可能功能。