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首页> 外文期刊>Journal of Medicinal Chemistry >Impact of Plasticity and Flexibility on Docking Results for Cytochrome P450 2D6: A Combined Approach of Molecular Dynamics and Ligand Docking
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Impact of Plasticity and Flexibility on Docking Results for Cytochrome P450 2D6: A Combined Approach of Molecular Dynamics and Ligand Docking

机译:可塑性和柔性对细胞色素P450 2D6对接结果的影响:分子动力学和配体对接的组合方法

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摘要

Cytochrome P450s (CYPs) exhibit a large plasticity and flexibility in the active site allowing for the binding, of a large variety of substrates. The impact of plasticity and flexibility on ligand binding is investigated by docking 65 known CYP2D6 substrates to ail ensemble of 2500 protein structures. The ensemble was generated by molecular dynamics simulations of CYP2D6 in complex with five representative Substrates. The effect of induced fit, the conformation of Phe483, and thermal motion on the accuracy of site of metabolism (SOM) predictions is analyzed. For future predictions, the three most essential CYP2D6 Structures were selected which are suitable for different kinds of ligands. We have developed a binary decision tree to decide which protein Structure to clock the ligand into, Such that each ligand needs to be docked only once, leading to successful SOM prediction in 80% of the substrates.
机译:细胞色素P450(CYP)在活性位点上具有很大的可塑性和柔韧性,可以与多种底物结合。通过将65种已知的CYP2D6底物对接至2500种蛋白质结构的整体,研究了可塑性和柔韧性对配体结合的影响。通过CYP2D6分子动力学模拟在具有五个代表性底物的复合物中生成了整体。分析了诱导拟合,Phe483的构象和热运动对代谢位点(SOM)预测准确性的影响。为了将来的预测,选择了三个最基本的CYP2D6结构,它们适用于不同种类的配体。我们已经开发了一个二元决策树来决定将哪个蛋白质结构作为配体的时钟,这样每个配体只需要停靠一次,就可以成功预测80%的底物中的SOM。

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