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(E)-2-羟亚氨基乙酮衍生物的晶体学和理论研究:通过 MM-PBSA 预测二苯乙烯类化合物对环氧化酶抑制的选择性和原子电荷的作用

A crystallographic and theoretical study of an (E)-2-Hydroxyiminoethanone derivative: prediction of cyclooxygenase inhibition selectivity of stilbenoids by MM-PBSA and the role of atomic charge.

机构信息

a Department of Medicinal Chemistry, Faculty of Pharmacy , Mazandaran University of Medical Sciences , Sari , Iran.

b Department of Chemistry , University of Reading , Whiteknights, Reading, Berks RG6 6AD, Reading , UK.

出版信息

J Biomol Struct Dyn. 2019 Apr;37(6):1555-1566. doi: 10.1080/07391102.2018.1462256. Epub 2018 Apr 26.

Abstract

We recently reported that the hydroxyiminoethanone derivative, (E)-OXM, behaves as a highly selective COX-1 inhibitor (COX-1 SI = 833), and also an interesting scaffold with unique characteristics. In the current study, a comprehensive crystallographic and computational study was performed to elucidate its conformational stability and pharmacological activity. Its conformational energy was studied at the B3LYP/6-311G** level of theory and compared to the single-crystal X-ray diffraction data. In addition, computational studies of three structurally different stilbenoid derivatives used as selective COX-1 or COX-2 inhibitors were undertaken to predict their COX selectivity potentials. Flexible docking was performed for all compounds at the active site of both COX-1 and COX-2 enzymes by considering some of the key residues as flexible during the docking operation. In the next step, molecular dynamic simulation and binding free energy calculations were performed by MM-PBSA. Final results were found to be highly dependent on the atomic charges of the inhibitors and the choice of force field used to calculate the atomic charges. The binding conformation of the hydroxyiminoethanone derivative is highly correlated with the type of COX isoform inhibited. Our predictive approach can truly predict the cyclooxygenase inhibition selectivity of stilbenoid inhibitors.

摘要

我们最近报道了羟亚氨基乙酮衍生物 (E)-OXM 是一种高度选择性的 COX-1 抑制剂(COX-1 SI = 833),也是一种具有独特特性的有趣支架。在当前的研究中,进行了全面的晶体学和计算研究,以阐明其构象稳定性和药理学活性。在 B3LYP/6-311G**理论水平上研究了其构象能,并将其与单晶 X 射线衍射数据进行了比较。此外,还对三种结构不同的二苯乙烯衍生物进行了计算研究,这些衍生物可用作选择性 COX-1 或 COX-2 抑制剂,以预测它们的 COX 选择性潜力。在考虑到一些关键残基在对接操作中具有柔性的情况下,对所有化合物在 COX-1 和 COX-2 酶的活性部位进行了柔性对接。在下一步中,通过 MM-PBSA 进行了分子动力学模拟和结合自由能计算。最终结果高度依赖于抑制剂的原子电荷和用于计算原子电荷的力场的选择。羟亚氨基乙酮衍生物的结合构象与被抑制的 COX 同工型类型高度相关。我们的预测方法可以真正预测二苯乙烯抑制剂对环氧化酶的抑制选择性。

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