Departamento de Farmacología, Universidad de Alcalá, Edificio Medicina, Alcalá de Henares, Madrid, Spain.
ChemMedChem. 2012 May;7(5):836-43. doi: 10.1002/cmdc.201200065. Epub 2012 Mar 16.
The conformational preferences of epothilone A (EPA) and a 12,13-cyclopropyl C12-epimerized analogue were explored in aqueous solution using molecular dynamics simulations. The simulated conformers that provided an optimal fit in the paclitaxel binding site of mammalian β-tubulin were then selected. The resulting modeled complexes were simulated before and after refinement of the M-loop to improve the fitting and assess ligand stability within the binding pocket. The tubulin-bound conformation of EPA was found to be unlike a previously reported solution obtained through mixed crystallographic/NMR/modeling studies. However, our conformation was in agreement with an NMR-based proposal although the exact binding pose within the site was different. Molecular models were built for the complexes of 14 epothilone derivatives with β-tubulin. A projection to latent structures regression method succeeded in providing a good prediction of the experimentally measured binding enthalpies for the whole set of ligands by assigning weights to a selection of interaction energy terms. These receptor-based, quantitative structure-activity relationships support the proposed binding mode, help confirm and interpret previously acquired experimental data, shed additional light on the effect of several β-tubulin mutations on ligand binding, and can potentially direct further experimental studies.
使用分子动力学模拟探索了埃坡霉素 A (EPA)和 12,13-环丙基 C12-环外消旋类似物在水溶液中的构象偏好。然后选择那些在哺乳动物β-微管蛋白紫杉醇结合位点提供最佳拟合的模拟构象。对 M 环进行细化前后模拟所得的模型复合物,以提高拟合度并评估配体在结合口袋中的稳定性。发现 EPA 的微管蛋白结合构象与先前通过混合晶体学/NMR/建模研究获得的解决方案不同。然而,我们的构象与基于 NMR 的提议一致,尽管结合位点内的具体结合姿势不同。构建了 14 种埃坡霉素衍生物与β-微管蛋白的复合物的分子模型。通过为选择的相互作用能项分配权重,投影到潜在结构回归方法成功地对整个配体集的实验测量结合焓进行了很好的预测。这些基于受体的定量构效关系支持所提出的结合模式,有助于确认和解释以前获得的实验数据,进一步阐明了几种β-微管蛋白突变对配体结合的影响,并可能直接指导进一步的实验研究。