首页> 美国卫生研究院文献>Acta Pharmaceutica Sinica. B >Inhibition of acetylcholinesterase by two genistein derivatives: kinetic analysis molecular docking and molecular dynamics simulation
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Inhibition of acetylcholinesterase by two genistein derivatives: kinetic analysis molecular docking and molecular dynamics simulation

机译:两种染料木黄酮衍生物对乙酰胆碱酯酶的抑制作用:动力学分析分子对接和分子动力学模拟

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摘要

In this study two genistein derivatives (G1 and G2) are reported as inhibitors of acetylcholinesterase (AChE) and butyrylcholinesterase (BuChE), and differences in the inhibition of AChE are described. Although they differ in structure by a single methyl group, the inhibitory effect of G1 (IC50=264 nmol/L) on AChE was 80 times stronger than that of G2 (IC50=21,210 nmol/L). Enzyme-kinetic analysis, molecular docking and molecular dynamics (MD) simulations were conducted to better understand the molecular basis for this difference. The results obtained by kinetic analysis demonstrated that G1 can interact with both the catalytic active site and peripheral anionic site of AChE. The predicted binding free energies of two complexes calculated by the molecular mechanics/generalized born surface area (MM/GBSA) method were consistent with the experimental data. The analysis of the individual energy terms suggested that a difference between the net electrostatic contributions (ΔEele+ΔGGB) was responsible for the binding affinities of these two inhibitors. Additionally, analysis of the molecular mechanics and MM/GBSA free energy decomposition revealed that the difference between G1 and G2 originated from interactions with Tyr124, Glu292, Val294 and Phe338 of AChE. In conclusion, the results reveal significant differences at the molecular level in the mechanism of inhibition of AChE by these structurally related compounds.
机译:在这项研究中,报告了两种染料木黄酮衍生物(G1和G2)作为乙酰胆碱酯酶(AChE)和丁酰胆碱酯酶(BuChE)的抑制剂,并描述了对AChE抑制作用的差异。尽管它们在结构上只有一个甲基不同,但G1(IC50 = 264 nmol / L)对AChE的抑制作用是G2(IC50 = 21,210 nmol / L)的80倍。进行了酶动力学分析,分子对接和分子动力学(MD)模拟,以更好地理解这种差异的分子基础。通过动力学分析获得的结果表明,G1可以与AChE的催化活性位点和外围阴离子位点相互作用。通过分子力学/广义生表面积(MM / GBSA)方法计算的两种配合物的预测结合自由能与实验数据一致。对单个能量项的分析表明,净静电贡献之间的差异(ΔEele+ΔGGB)是这两种抑制剂的结合亲和力的原因。此外,对分子力学和MM / GBSA自由能分解的分析表明,G1和G2之间的差异源自与AChE的Tyr124,Glu292,Val294和Phe338的相互作用。总之,结果揭示了在分子水平上这些结构相关化合物抑制AChE机理的显着差异。

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