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首页> 外文期刊>Journal of Computer-Aided Molecular Design >A computational analysis of binding modes and conformation changes of MDM2 induced by p53 and inhibitor bindings
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A computational analysis of binding modes and conformation changes of MDM2 induced by p53 and inhibitor bindings

机译:p53和抑制剂结合诱导的MDM2结合模式和构象变化的计算分析

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Molecular dynamics (MD) simulations followed by principal component analysis were performed to study the conformational change of MDM2 induced by p53 and two inhibitor (P4 and MI63a) bindings. The results show that the hydrophobic cleft of MDM2 is very flexible and adaptive to different structural binding partners. The cleft tends to become wider and more stable as MDM2 binds to the three binding partners, while unbound MDM2 shows a narrower and pretty flexible cleft, which agrees with recent experimental data and theoretical studies. It was also found that the binding of P4 and p53 stabilizes the motion of the loop L2 linking the helix α2 and β strand (β3), but the presence of MI63a makes the motion of L2 disordered. In addition, the binding free energies of the three partners to MDM2 were calculated using molecular mechanics generalized Born surface area to explain the binding modes of these three partners to MDM2. This study will be helpful not only for better understanding the functional, concerted motion of MDM2, but also for the rational design of potent anticancer drugs targeting the p53-MDM2 interaction.
机译:进行分子动力学(MD)模拟,然后进行主成分分析,以研究p53和两种抑制剂(P4和MI63a)结合诱导的MDM2的构象变化。结果表明,MDM2的疏水性裂缝非常灵活,并能适应不同的结构结合伴侣。当MDM2与三个结合伴侣结合时,裂缝会变得更宽且更稳定,而未结合的MDM2则显示出更窄且相当灵活的裂缝,这与最近的实验数据和理论研究一致。还发现P4和p53的结合稳定了连接螺旋α2和β链(β3)的环L2的运动,但是MI63a的存在使L2的运动混乱。另外,使用分子力学广义Born表面积来计算这三个伙伴与MDM2的结合自由能,以解释这三个伙伴与MDM2的结合模式。这项研究不仅有助于更好地了解MDM2的功能,协调运动,而且还有助于合理设计针对p53-MDM2相互作用的有效抗癌药物。

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