Harada Toshiyuki, Nakagawa Yoshiaki, Akamatsu Miki, Miyagawa Hisashi
Kyoto University, Japan.
Bioorg Med Chem. 2009 Aug 15;17(16):5868-73. doi: 10.1016/j.bmc.2009.07.011. Epub 2009 Jul 10.
The insect molting hormone, 20-hydroxyecdysone (20E) and its analogs (ecdysteroids) specifically bind to the ecdysone receptor. Previously, we synthesized various ecdysteroids containing the side chain moiety of ponasterone A (PonA), and measured the binding activity against Drosophila Kc cells to study the structure-activity relationship. Here we quantitatively analyzed the structure-activity relationship for the ligand binding of ecdysteroids including 20E and PonA. Since the hydrogen bonding (HB) is one of the important physicochemical properties for ligand binding to the ecdysteroid receptor, the number of possible HBs between the ligand molecule and the receptor was manually counted in the modeled ligand-receptor complex for all compounds. The construction of the ligand-receptor model was executed by the full-automatic modeling system (FAMS) in which calculation was done by simulated annealing. The binding potency of 15 ecdysteroids to Kc-cells were linearly correlated (r(2)=0.63) with the number of HBs which are observed between ligand and receptor molecule. Contribution of steric and electrostatic effects on the ligand-receptor binding was also examined using a three-dimensional quantitative structure-activity relationship (3-D QSAR), comparative molecular field analysis (CoMFA).
昆虫蜕皮激素20-羟基蜕皮酮(20E)及其类似物(蜕皮甾体)能特异性结合蜕皮激素受体。此前,我们合成了各种含有波那甾酮A(PonA)侧链部分的蜕皮甾体,并测定了其对果蝇Kc细胞的结合活性,以研究构效关系。在此,我们对包括20E和PonA在内的蜕皮甾体的配体结合构效关系进行了定量分析。由于氢键(HB)是配体与蜕皮甾体受体结合的重要物理化学性质之一,我们在所有化合物的模拟配体-受体复合物中手动计算了配体分子与受体之间可能形成的氢键数量。配体-受体模型的构建由全自动建模系统(FAMS)执行,该系统通过模拟退火进行计算。15种蜕皮甾体对Kc细胞的结合效力与配体和受体分子之间观察到的氢键数量呈线性相关(r(2)=0.63)。还使用三维定量构效关系(3-D QSAR)、比较分子场分析(CoMFA)研究了空间和静电效应在配体-受体结合中的作用。