首页> 外文期刊>Canadian Journal of Chemistry >Investigations on the mechanisms of interactions between niatrix metalloproteinase 9 and its flavonoid inhibitors using a combination of molecular docking, hybrid quantum mechanical/molecular mechanical calculations, and molecular dynamics simulations
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Investigations on the mechanisms of interactions between niatrix metalloproteinase 9 and its flavonoid inhibitors using a combination of molecular docking, hybrid quantum mechanical/molecular mechanical calculations, and molecular dynamics simulations

机译:结合分子对接,混合量子力学/分子力学计算和分子动力学模拟研究烟酸金属蛋白酶9与其类黄酮抑制剂之间的相互作用机理

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摘要

Many experimental studies have found that flavonoids can inhibit the activities of matrix metalloproteinases (MMPs), but the relevant mechanisms are still unclear. In this paper, the interaction mechanisms of MMP-9 with its five flavonoid inhibitors are investigated using a combination of molecular docking, hybrid quantum mechanical and molecular mechanical (QM/MM) calculations, and molecular dynamics simulations. The molecular dynamics simulation results show a good linear correlation between the calculated binding free energies of QM/MM-Poisson-Boltzmann surface area (PBSA) and the experimental-log(EC_(50)) regarding the studied five flavonoids on MMP-9 inhibition in explicit solvent. It is found that compared with the MM-PBSA method, the QM/MM-PBSA method can obviously improve the accuracy for the calculated binding free energies. The predicted binding modes of the five flavonoid-MMP-9 complexes reveal that the different hydrogen bond networks can form besides producing the Zn-O coordination bonds, which can reasonably explain previous experimental results. The agreement between our calculated results and the previous experimental facts indicates that the force field parameters used here are effective and reliable for investigating the systems of flavonoid-MMP-9 interactions, and thus, these simulations and analyses could be reproduced for the other related systems involving protein-ligand interactions. This paper may be helpful for designing the new MMP-9 inhibitors having higher biological activities by carrying out the structural modifications of flavonoid molecules.
机译:许多实验研究发现类黄酮可以抑制基质金属蛋白酶(MMPs)的活性,但相关机制仍不清楚。在本文中,结合分子对接,混合量子力学和分子力学(QM / MM)计算以及分子动力学模拟,研究了MMP-9及其五种类黄酮抑制剂的相互作用机理。分子动力学模拟结果表明,所研究的五种类黄酮对MMP-9有抑制作用,QM / MM-泊松-玻尔兹曼表面积(PBSA)的计算结合自由能与实验对数(EC_(50))之间具有良好的线性关系。在显式溶剂中。结果发现,与MM-PBSA方法相比,QM / MM-PBSA方法可以显着提高所计算的结合自由能的准确性。五种类黄酮-MMP-9配合物的预测结合模式表明,除了产生Zn-O配位键外,还可以形成不同的氢键网络,这可以合理地解释以前的实验结果。我们的计算结果与先前的实验事实之间的一致性表明,此处使用的力场参数对于研究类黄酮-MMP-9相互作用的系统是有效且可靠的,因此,这些模拟和分析可用于其他相关系统涉及蛋白质-配体相互作用。通过进行类黄酮分子的结构修饰,可能对设计具有更高生物活性的新型MMP-9抑制剂有所帮助。

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