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利用分子动力学模拟和MM-GBSA计算深入了解抑制剂E3T、E3H和E3B与CREB结合蛋白的相互作用机制。

Insights into interaction mechanism of inhibitors E3T, E3H and E3B with CREB binding protein by using molecular dynamics simulations and MM-GBSA calculations.

作者信息

Wu S L, Zhao J, Sun H B, Li H Y, Yin Y Y, Zhang L L

机构信息

School of Science, Shandong Jiaotong University, Jinan, China.

出版信息

SAR QSAR Environ Res. 2021 Mar;32(3):221-246. doi: 10.1080/1062936X.2021.1887351.

Abstract

CREB binding protein (CBP) and its paralog E1A binding protein (p300) are related to the development of inflammatory diseases, cancers and other diseases, and have been potential targets for the treatment of human diseases. In this work, interaction mechanism of three small molecules E3T, E3H, and E3B with CBP was investigated by employing molecular dynamics (MD) simulations, principal component analysis (PCA), and molecular mechanics/generalized born surface area (MM-GBSA) method. The results indicate that inhibitor bindings cause the changes of movement modes and structural flexibility of CBP, and van der Waals interactions mostly drive associations of inhibitors with CBP. In the meantime, the results based on inhibitor-residue interactions not only show that eight residues of CBP can strongly interact with E3T, E3H and E3B but also verify that the CH-CH, CH-π, and π-π interactions are responsible for vital contributions in associations of E3T, E3H and E3B with CBP. In addition, the H-O radial distribution functions (RDFs) were computed to assess the stability of hydrogen bonding interactions between inhibitors and CBP, and the obtained information identifies several key hydrogen bonds playing key roles in bindings of E3T, E3H and E3B to CBP. Potential new inhibitors have been proposed.

摘要

CREB结合蛋白(CBP)及其旁系同源物E1A结合蛋白(p300)与炎症性疾病、癌症及其他疾病的发展相关,并且一直是人类疾病治疗的潜在靶点。在这项工作中,通过分子动力学(MD)模拟、主成分分析(PCA)和分子力学/广义玻恩表面积(MM-GBSA)方法研究了三种小分子E3T、E3H和E3B与CBP的相互作用机制。结果表明,抑制剂结合导致CBP的运动模式和结构灵活性发生变化,范德华相互作用在很大程度上驱动了抑制剂与CBP的结合。同时,基于抑制剂-残基相互作用的结果不仅表明CBP的八个残基可与E3T、E3H和E3B强烈相互作用,还证实了CH-CH、CH-π和π-π相互作用对E3T、E3H和E3B与CBP的结合起着至关重要的作用。此外,计算了H-O径向分布函数(RDF)以评估抑制剂与CBP之间氢键相互作用的稳定性,所获得的信息确定了几个在E3T、E3H和E3B与CBP结合中起关键作用的关键氢键。已提出了潜在的新型抑制剂。

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