具有SIRT1的白藜芦醇衍生物刺激脱乙酰酶活性的分子模型。

Mozhdeh Zamani, Pooneh Mokarram, Mehdi Jamshidi, Morvarid Siri, Hadi Ghasemi
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引用次数: 0

摘要

背景:白藜芦醇是一种在植物中发现的多酚,已被认为通过激活SIRT1具有潜在的治疗作用,SIRT1是哺乳动物NAD+依赖性脱乙酰酶的关键成员。然而,白藜芦醇衍生物如何增强其对特定底物的活性尚未得到研究。本研究旨在评估白藜芦醇及其衍生物与SIRT1作为靶蛋白的相互作用类型,并找出与SIRT1相互作用最奇怪的最佳配体,我们使用AutoDock-Vina进行了广泛的分子对接分析,以比较评估白藜芦醇衍生物(来自ZINC数据库的22个分子)作为配体与SIRT1(PDB ID:5BTR)作为受体的相互作用。ChemDraw和Chem3D工具用于制备所有配体的3D结构,并通过MM2力场使其能量最小化。结果:分子对接和可视化显示,白藜芦醇衍生物的构象变化显著影响对接结果的参数。通过对白藜芦醇衍生物和SIRT1受体的对接分析,发现了几种类型的相互作用,包括常规氢键、碳氢键、Pi供体氢键和Pi烷基。与白藜芦醇及其其他衍生物相比,具有ZINC ID:ZINC230079516的白藜芦醇4’-(6-加仑基葡糖苷)与SIRT1的催化结构域(CD)具有更高的结合能分数(-46.8608kJ/mol)的可能的活化作用在SIRT1的最大值处实现。结论:白藜芦醇4’-(6-没食子酰基葡糖苷)作为白藜芦醇的衍生物,与SIRT1的CD具有稳定的相互作用,可能是SIRT1的潜在有效激活剂。
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Molecular Modelling of Resveratrol Derivatives with SIRT1 for the Stimulation of Deacetylase Activity.

Background: Resveratrol is a polyphenol that is found in plants and has been proposed to have a potential therapeutic effect through the activation of SIRT1, which is a crucial member of the mammalian NAD+ -dependent deacetylases. However, how its activity is enhanced toward specific substrates by resveratrol derivatives has not been studied. This study aimed to evaluate the types of interaction of resveratrol and its derivatives with SIRT1 as the target protein, as well as to find out the best ligand with the strangest interaction with SIRT1.

Materials and methods: In this study, we employed the extensive molecular docking analysis using AutoDock Vina to comparatively evaluate the interactions of resveratrol derivatives (22 molecules from the ZINC database) as ligands with SIRT1 (PDB ID: 5BTR) as a receptor. The ChemDraw and Chem3D tools were used to prepare 3D structures of all ligands and energetically minimize them by the MM2 force field.

Results: The molecular docking and visualizations showed that conformational change in resveratrol derivatives significantly influenced the parameter for docking results. Several types of interactions, including conventional hydrogen bonds, carbon-hydrogen bonds, Pi-donor hydrogen bonds, and Pi-Alkyl, were found via docking analysis of resveratrol derivatives and SIRT1 receptors. The possible activation effect of resveratrol 4'-(6-galloylglucoside) with ZINC ID: ZINC230079516 with higher binding energy score (-46.8608 kJ/mol) to the catalytic domain (CD) of SIRT1 was achieved at the maximum value for SIRT1, as compared to resveratrol and its other derivatives.

Conclusion: Finally, resveratrol 4'-(6-galloylglucoside), as a derivative for resveratrol, has stably interacted with the CD of SIRT1 and might be a potential effective activator for SIRT1.

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