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Insight Into the Binding Mechanism of p53/pDIQ-MDMX/MDM2 With the Interaction Entropy Method

机译:相互作用熵法研究p53 / pDIQ-MDMX / MDM2的结合机理

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摘要

The study of the p53-MDMX/MDM2 binding sites is a research hotspot for tumor drug design. The inhibition of p53-targeted MDMX/MDM2 has become an effective approach in anti-tumor drug development. In this paper, a theoretically rigorous and computationally accurate method, namely, the interaction entropy (IE) method, combined with the polarized protein-specific charge (PPC) force field, is used to explore the difference in the binding mechanism between p53-MDMX and p53-MDM2. The interaction of a 12mer peptide inhibitor (pDIQ), which is similar to p53 in structure, with MDMX/MDM2 is also studied. The results demonstrate that p53/pDIQ with MDM2 generates a stronger interaction than with MDMX. Compared to p53, pDIQ has larger binding free energies with MDMX and MDM2. According to the calculated binding free energies, the differences in the binding free energy among the four complexes that are obtained from the combination of PPC and IE are more consistent with the experimental values than with the results from the combination of the non-polarizable AMBER force field and IE. In addition, according to the decomposition of the binding free energy, the van der Waals (vdW) interactions are the main driving force for the binding of the four complexes. They are also the main source of the weaker binding affinity of p53/pDIQ-MDMX relative to p53/pDIQ-MDM2. Compared with p53-MDMX/MDM2, according to the analysis of the residue decomposition, the predicated total residue contributions are higher in pDIQ-MDMX/MDM2 than in p53-MDMX/MDM2, which explains why pDIQ has higher binding affinity than p53 with MDMX/MDM2. The current study provides theoretical guidance for understanding the binding mechanisms and designing a potent dual inhibitor that is targeted to MDMX/MDM2.
机译:p53-MDMX / MDM2结合位点的研究是肿瘤药物设计的研究热点。抑制针对p53的MDMX / MDM2已成为抗肿瘤药物开发的有效方法。本文采用理论上严格且计算准确的方法,即相互作用熵(IE)方法和极化蛋白特异性电荷(PPC)力场,来研究p53-MDMX之间的结合机理差异和p53-MDM2。还研究了结构类似p53的12mer肽抑制剂(pDIQ)与MDMX / MDM2的相互作用。结果表明,与MDM2相比,带有MDM2的p53 / pDIQ产生了更强的相互作用。与p53相比,pDIQ与MDMX和MDM2具有更大的结合自由能。根据计算出的结合自由能,从PPC和IE的组合获得的四种配合物之间的结合自由能的差异与实验值相符,而不是与非极化AMBER力的组合结果相符。领域和IE。此外,根据结合自由能的分解,范德华(vdW)相互作用是四种复合物结合的主要驱动力。它们也是p53 / pDIQ-MDMX相对于p53 / pDIQ-MDM2较弱的结合亲和力的主要来源。与残基分解相比,与p53-MDMX / MDM2相比,pDIQ-MDMX / MDM2的预测总残基贡献要高于p53-MDMX / MDM2,这解释了为什么pDIQ具有比p53和MDMX更高的结合亲和力/ MDM2。当前的研究为理解结合机制和设计针对MDMX / MDM2的有效双重抑制剂提供了理论指导。

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