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Unbinding of Retinoic Acid from the Retinoic Acid Receptor by Random Expulsion Molecular Dynamics

机译:通过随机驱逐分子动力学将视黄酸从视黄酸受体上解开。

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摘要

Unbinding pathways of retinoic acid (RA) bound to retinoic acid receptor (RAR) have been explored by the random expulsion molecular dynamics (REMD) method. Our results show that RA may exit the binding site of RAR through flexible regions close to the H1-H3 loop and β-sheets, without displacing H12 from its agonist position. This result may explain kinetic differences between agonist and antagonist ligands observed for other nuclear receptors. The extended and flexible structure of RA initiated a methodological study in a simplified two-dimensional model system. The REMD force should in general be distributed to all atoms of the ligand to obtain the most unbiased results, but for a ligand which is tightly bound in the binding pocket through a strong electrostatic interaction, application of the REMD force on a single atom is preferred.
机译:通过随机驱逐分子动力学(REMD)方法探索了视黄酸(RA)与视黄酸受体(RAR)结合的未结合途径。我们的结果表明,RA可能通过靠近H1-H3环和β-折叠的柔性区域退出RAR的结合位点,而不会从其激动剂位置上取代H12。该结果可以解释对于其他核受体观察到的激动剂和拮抗剂配体之间的动力学差异。 RA的扩展和灵活的结构在简化的二维模型系统中启动了方法学研究。通常应将REMD力分配到配体的所有原子上以获得最公正的结果,但是对于通过强静电相互作用在结合口袋中紧密结合的配体,优选将REMD力施加在单个原子上。

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