Laboratory of Organic Chemistry, Department of Chemistry, University of Athens, Panepistimiopolis, 15771, Athens, Greece.
J Comput Aided Mol Des. 2010 Feb;24(2):107-15. doi: 10.1007/s10822-010-9319-7. Epub 2010 Feb 4.
Docking calculations that allow the estimation of the binding energy of small ligands in the GIIA sPLA(2) active site were used in a structure-based design protocol. Four GIIA sPLA(2) inhibitors co-crystallised with the enzyme, were used for examining the enzyme active site and for testing the FlexX in SYBYL 6.8 molecular docking program to reproduce the crystallographic experimental data. The FPL67047XX inhibitor was chosen as a prototype structure for applying free energy perturbation (FEP) studies. Structural modifications of the initial structure of the FPL67047XX inhibitor (IC(50) 0.013 microM) were performed in an effort to optimise the interactions in the GIIA sPLA(2) active site. The structural modifications were based on: (1) the exploration of absolute configuration (i.e. comparison of the binding score of (R)- and (S)-enantiomers); (2) bioisosterism (i.e. replacement of the carboxylate group with the bioisosteric sulphonate and phosphonate groups); (3) insertion of substituents that fit better in the active site. The generated new structures exhibited higher binding energy. Such structures may spark off the interest of medicinal chemists for synthesizing potentially more active GIIA sPLA(2) inhibitors.
对接计算允许估计在 GIIA sPLA(2) 活性部位中小配体的结合能,被用于基于结构的设计方案中。四个与酶共结晶的 GIIA sPLA(2)抑制剂被用于检查酶的活性部位,并在 SYBYL 6.8 分子对接程序中测试 FlexX 以重现晶体学实验数据。FPL67047XX 抑制剂被选为应用自由能微扰 (FEP) 研究的原型结构。为了优化 GIIA sPLA(2) 活性部位的相互作用,对初始 FPL67047XX 抑制剂结构进行了结构修饰(IC(50) 0.013 microM)。结构修饰基于:(1) 绝对构型的探索(即比较 (R)-和 (S)-对映异构体的结合评分);(2) 生物等排性(即羧酸根用生物等排的磺酸盐和膦酸盐取代);(3) 插入更适合活性部位的取代基。生成的新结构表现出更高的结合能。这些结构可能会激发药物化学家合成潜在更有效的 GIIA sPLA(2)抑制剂的兴趣。