Saparpakorn P, Hannongbua S, Rognan D
Department of Chemistry, Faculty of Science, Kasetsart University, Bangkok, 10900, Thailand.
SAR QSAR Environ Res. 2006 Apr;17(2):183-94. doi: 10.1080/10659360600636147.
Nevirapine (Viramune) belongs to the first generation of non-nucleoside reverse transcriptase inhibitors (NNRTIs). Its efficiency is limited by drug resistant mutations, such as K103N and Y181C, so, the aim of this work was to design novel nevirapine analogues insensitive to the K103N and Y181C HIV-1 RT. 360 Nevirapine derivatives were designed using a combinatorial library design approach and these compounds were docked into the binding pocket of mutant HIV-1 RT enzyme structures, using the GOLD program. 124 Compounds having a GoldScore higher than that of nevirapine (55.00 and 52.00 for K103N and Y181C mutants, respectively) were first retrieved and submitted to a topological analysis with the SILVER program. Consequently, 31 compounds presenting a significant percentage of the surfaces buried upon binding (>80%) and exhibiting hydrogen bonds to either N103 or C181 residues of the HIV-RT were selected. To ensure that these compounds had hydrogen bonding interaction to either N103 or C181 residues, their interaction energies were estimated by quantum chemical calculations (QCCs). Finally, QCCs represent an alternative method for performing post docking procedure.
奈韦拉平(维乐命)属于第一代非核苷类逆转录酶抑制剂(NNRTIs)。其疗效受耐药性突变(如K103N和Y181C)的限制,因此,本研究的目的是设计对K103N和Y181C HIV-1逆转录酶不敏感的新型奈韦拉平类似物。采用组合文库设计方法设计了360种奈韦拉平衍生物,并使用GOLD程序将这些化合物对接至突变型HIV-1逆转录酶结构的结合口袋中。首先筛选出124种GoldScore高于奈韦拉平(K103N和Y181C突变体的GoldScore分别为55.00和52.00)的化合物,并使用SILVER程序进行拓扑分析。因此,选择了31种化合物,这些化合物在结合时具有显著比例的表面埋藏(>80%),并且与HIV逆转录酶的N103或C181残基形成氢键。为确保这些化合物与N103或C181残基具有氢键相互作用,通过量子化学计算(QCCs)估算了它们的相互作用能。最后,QCCs代表了一种进行对接后程序的替代方法。