Department of Applied Chemistry, College of Science, China Agricultural University, Beijing, 100193, China.
J Mol Model. 2017 May;23(5):166. doi: 10.1007/s00894-017-3329-5. Epub 2017 Apr 24.
Ecdysone receptor (EcR) is a significant target in the identification of new environmentally friendly pesticides. There are two types of ecdysone agonists: steroidal ecdysone agonists and dibenzoylhydrazines (DBHs). In this study, various modeling methods (homology modeling, molecular docking, MD simulation, binding free energy calculation, and per-residue binding free energy decomposition) were utilized to study the different binding mechanisms of two types of ecdysone agonists. Our theoretical results indicated that the relative binding potencies of DBHs can be ranked sufficiently accurately using the MOE docking method. However, MM/PBSA calculations more accurately predicted the binding affinities between steroidal ecdysone agonists and EcR-LBD. To identify the key residues involved in ecdysone agonist binding, the binding free energy (ΔG ) was decomposed into the energy contributions of individual residues. The results revealed that nine residues-Ile339, Thr343, Met380, Met381, Tyr403, Tyr408, Asp419, Gln503, and Asn504-determined the binding affinities of the DBHs. Glu309, Met342, Arg383, Arg387, and Leu396 were important influences on the binding affinities of the steroidal ecdysone agonists. Graphical abstract The ecdysone receptor (EcR) is related to insect growth and has been shown to be a useful target for insecticides.
蜕皮激素受体 (EcR) 是鉴定新型环保杀虫剂的重要靶标。蜕皮激素激动剂有两种类型:甾体蜕皮激素激动剂和二苯甲酰肼 (DBHs)。在这项研究中,使用了各种建模方法(同源建模、分子对接、MD 模拟、结合自由能计算和残基结合自由能分解)来研究两种类型的蜕皮激素激动剂的不同结合机制。我们的理论结果表明,MOE 对接方法可以充分准确地对 DBHs 的相对结合效力进行排序。然而,MM/PBSA 计算更准确地预测了甾体蜕皮激素激动剂与 EcR-LBD 之间的结合亲和力。为了确定参与蜕皮激素激动剂结合的关键残基,将结合自由能 (ΔG) 分解为单个残基的能量贡献。结果表明,九个残基(Ile339、Thr343、Met380、Met381、Tyr403、Tyr408、Asp419、Gln503 和 Asn504)决定了 DBHs 的结合亲和力。Glu309、Met342、Arg383、Arg387 和 Leu396 对甾体蜕皮激素激动剂的结合亲和力有重要影响。