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Molecular Dynamics Simulation Studies on the Modulation of Vitamin D Receptor Activity by Agonists and Antagonists

机译:吡喃和拮抗剂对维生素D受体活性调节的分子动力学模拟研究

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Molecular dynamics (MD) simulations of vitamin D receptor (VDR) ligand complexes have been carried out to explain and predict ligands' functional behavior. Elevated simulation temperature, simulated annealing, locally enhanced sampling method, and targeted dynamics were used to speed up the sampling of the conformational space in MD simulations. In addition, self-organizing map and Sammon's mapping algorithm was applied to group and visualize receptor movement upon ligand binding. It was shown that the degree of structural order in the carboxy-terminal α-helix inversely correlated with the strength of the antagonistic activity of the ligand and that a two-side chain analog of vitamin D functions as a potent agonist to the VDR despite its significantly increased volume. Binding of novel nonsteroidal VDR agonists was also investigated. Simulation results were combined with extensive experimental data. In this work theoretical and experimental studies were fruitfully combined to investigate complex receptor regulation.
机译:已经进行了维生素D受体(VDR)配体复合物的分子动力学(MD)模拟,以解释和预测配体的功能行为。升高的仿真温度,模拟退火,局部增强的采样方法和有针对性的动力学用于加速MD模拟中的构象空间的采样。此外,将自组织地图和三月的映射算法应用于基团和可视化配体结合时的受体运动。结果表明,羧基末端α-螺旋中的结构顺序与配体的拮抗活性的强度相关,并且维生素D的双侧链类似物作为其致力于VDR的有效激动剂。体积显着增加。还调查了新型非甾体VDR激动剂的结合。仿真结果与广泛的实验数据相结合。在这项工作中,理论和实验研究效果效果基准组合以研究复杂的受体调节。

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