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Isoform-selective inhibition of chrysin towards human cytochrome P450 1A2.Kinetics analysis, molecular docking, and molecular dynamics simulations

机译:菊花素对人细胞色素P450 1A2的同工型选择性抑制。动力学分析,分子对接和分子动力学模拟

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Our kinetics studies demonstrated that the nature product chrysin exhibited a high inhibitory affinity of 54nM towards human cytochrome P450 1A2 and was comparable to α-naphthoflavone (49nM),whereas it represented a moderate affinity of 5225 nM against human cytochrome P450 2C9.However,it remains unclear how this inhibitor selectively binds 1A2.To better understand the isoform selectivity of chrysin,molecular docking and molecular dynamics simulations were performed.Chrysin formed a strong H-bond with Asp313 of 1A2,The stacking interactions with Phe226 also contributed to its tight binding to 1A2.The larger and much more open active site architectures of 2C9 may explain the weaker inhibitory affinity of chrysin towards 2C9.The predicted binding free energies suggest that chrysin preferred 1A2 (AGbind,pred(m)-23.11 kcal/mol) to 2C9 (-20.41 kcal/mol).Additionally.the present work revealed that 7-hydroxy,-flavone bound to 1A2 in a similar pattern as chrysin and represented a slightly less negative predicted binding free energy,which was further validated by our kinetics analysis (IC50 =240 nM).Results of the study can provide insight for designing novel isoform-selective 1A2 inhibitors.
机译:我们的动力学研究表明,天然产物chrysin对人细胞色素P450 1A2表现出54nM的高抑制亲和力,可与α-萘黄酮(49nM)相提并论,而对人细胞色素P450 2C9的适度亲和力为5225 nM。尚不清楚该抑制剂如何选择性结合1A2。为了更好地了解菊花的同工型选择性,进行了分子对接和分子动力学模拟。菊花与1A2的Asp313形成强H键,与Phe226的堆积相互作用也有助于其紧密结合。 2C9的更大,更开放的活性位点结构可能解释了菊花素对2C9的抑制亲和力较弱。预测的结合自由能表明,菊花素比1C2更喜欢1A2(AGbind,pred(m)-23.11 kcal / mol)。 (-20.41 kcal / mol)。此外,目前的工作表明,7-羟基黄酮以与菊花链相似的方式键合到1A2上,并表现出稍低的水平。预测的结合能为负值,其动力学分析进一步证实了这一点(IC50 = 240 nM)。研究结果可为设计新型同工型选择性1A2抑制剂提供参考。

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