化学学报 ›› 2008, Vol. 66 ›› Issue (7): 817-822. 上一篇    下一篇

研究简报

金属离子对HIV-1整合酶与硫氮硫扎平抑制剂作用模式影响的分子模拟研究

王丽东   

  1. 重庆工商大学药物化学与化学生物学研究中心
  • 投稿日期:2007-06-29 修回日期:2007-09-10 发布日期:2008-04-14
  • 通讯作者: 王丽东

Study on the influence of Mg2+on interaction between HIV-1 integrase and thiazolothiazepines inhibitors with molecular simulation methods

  • Received:2007-06-29 Revised:2007-09-10 Published:2008-04-14

HIV-1整合酶(IN)通过依赖金属离子的两步反应将病毒DNA整合入宿主细胞过程中。结合于HIV-1上的金属离子个数的变化直接影响整合酶与抑制剂之间的结合。本工作用同源模建方法搭建了每条单链核心区具有两个Mg2+ 的(2Mg-IN-Core)和具有一个Mg2+ 的HIV-1 IN二聚体核心区模型(1Mg-IN-Core)。分子对接分别得到它们与硫氮硫扎平类化合物能量较低的复合物结构,把对接结果进行了比较。研究发现:当整合酶中结合的Mg2+个数改变时,它与抑制剂的结合模式也会发生很大的变化;抑制剂能够特异的且稳定的与2Mg-IN-Core模型的活性位点结合;同时与ASP64和GLU152螯合的那个Mg2+离子对于硫氮硫扎平抑制剂与整合酶上的结合有很大的影响。2Mg-IN-Core模型与抑制剂的复合物平均结构进行了2000 ps的 分子动力学模拟,分析发现同时与ASP64及ASP116螯合的Mg2+与IN蛋白形成了四个稳定的螯合键;同时与ASP64及GLU152螯合的Mg2+可与IN结合、也可与抑制剂形成稳定的配位键,这个Mg2+对IN与硫氮硫扎平抑制剂之间的结合有较大影响。

关键词: HIV-1整合酶, 金属离子, 硫氮硫扎平类抑制剂, 分子模拟

HIV-1 IN integrates viral DNA into host cells through two-steps metal ions-dependent reactions. The number of metal ions binding with HIV-1 IN has very important influence on interactions between HIV-1 IN and inhibitors. At present, two HIV-1 IN dimer core structures (1Mg-IN-Core and 2Mg-IN-Core models) having one or two Mg2+ icons in each catalytic core domain were built in homology modeling methods. Docking them respectively with inhibitor thiazolothiazepines using the program Autodock, complexes with low energy were found. The two kinds of complex structures were compared. Docking results indicate that if the number of Mg2+ binding with IN changed, the interactional modes of IN and thiazolothiazepines will also change; thiazolothiazepines have highly binding specialty and stability with IN; the Mg2+ chelated with ASP64 and GLU152 simultaneously has great influence on IN binding with thiazolothiazepines. A 2000 ps molecular dynamics simulation was carried out on the 2Mg-IN-Core and thiazolothiazepines complex system. Analyzing the MD result, it is found that the metal ions Mg2+ chelated with ASP64 and ASP116 at the same time can form four stable chelate bonds with residues of IN, and the Mg2+ chelated with ASP64 and GLU152 simultaneously can bind with IN, and can make stable coordinate bonds with the inhibition. The latter Mg2+ ion has strong influence on IN stably binding with thiazolothiazepines.

Key words: HIV-1 integrase, Metal ions, Thiazolothiazepines, Molecular simulation