CSIRO Molecular and Health Technologies, Ian Wark Laboratory, Bag 10, Clayton South, Vic 3169, Australia.
Bioorg Med Chem. 2010 Aug 1;18(15):5647-60. doi: 10.1016/j.bmc.2010.06.020. Epub 2010 Jun 15.
Nuclear hormone receptors, such as the ecdysone receptor, often display a large amount of induced fit to ligands. The size and shape of the binding pocket in the EcR subunit changes markedly on ligand binding, making modelling methods such as docking extremely challenging. It is, however, possible to generate excellent 3D QSAR models for a given type of ligand, suggesting that the receptor adopts a relatively restricted number of binding site configurations or 'attractors'. We describe the synthesis, in vitro binding and selected in vivo toxicity data for gamma-methylene gamma-lactams, a new class of high-affinity ligands for ecdysone receptors from Bovicola ovis (Phthiraptera) and Lucilia cuprina (Diptera). The results of a 3D QSAR study of the binding of methylene lactams to recombinant ecdysone receptor protein suggest that this class of ligands is indeed recognised by a single conformation of the EcR binding pocket.
核激素受体,如蜕皮激素受体,通常对配体表现出大量的诱导契合。蜕皮激素受体亚基的结合口袋在配体结合时的大小和形状会发生明显变化,这使得对接等建模方法极具挑战性。然而,对于给定类型的配体,有可能生成出色的 3D QSAR 模型,这表明受体采用了相对受限的结合位点构象或“吸引子”。我们描述了γ-亚甲基γ-内酰胺的合成、体外结合和选定的体内毒性数据,γ-亚甲基γ-内酰胺是一种新型的高亲和力蜕皮激素受体配体,来自羊虱(Phthiraptera)和丽蝇(双翅目)。对亚甲基内酰胺与重组蜕皮激素受体蛋白结合的 3D QSAR 研究结果表明,这类配体确实是通过 EcR 结合口袋的单一构象来识别的。