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首页> 外文期刊>Journal of Medicinal Chemistry >Prediction of activation energies for hydrogen abstraction by cytochrome P450
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Prediction of activation energies for hydrogen abstraction by cytochrome P450

机译:预测细胞色素P450提取氢的活化能

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We have estimated the activation energy for hydrogen abstraction by compound I in cytochrome P450 for a diverse set of 24 small organic substrates using state-of-the-art density functional theory (B3LYP). We then show that these results can be reproduced by computationally less demanding methods, for example, by using small organic mimics of compound I with both B3LYP and the semiempirical AM1 method (mean absolute error of 3-4 kJ/mol) or by calculating the bond dissociation energy, without relaxation of the radical (B3LYP) or estimated from three-point fit to a Morse potential (AM1; errors of 4 and 5 kJ/mol, respectively). We can assign activation energies of 74, 61, 53, 47, and 30 kJ/mol to primary carbons, secondary/tertiary carbons, carbons with adjacent sp(2) or aromatic groups, ethers/thioethers, and amines, respectively, which gives a very simple and predictive model. Finally, some of the less demanding methods are applied to study the CYP3A4 metabolism of progesterone and dextromethorphan.
机译:我们已经使用最新的密度泛函理论(B3LYP)估算了24种有机有机底物中的多种化合物在细胞色素P450中由化合物I提取氢的活化能。然后,我们表明,这些结果可以通过计算量较少的方法来再现,例如,通过使用化合物I的小有机模拟物与B3LYP和半经验AM1方法(平均绝对误差为3-4 kJ / mol)或通过计算键解离能,而没有自由基的松弛(B3LYP)或从三点拟合估计到莫尔斯电势(AM1;误差分别为4和5 kJ / mol)。我们可以将活化能74、61、53、47和30 kJ / mol分别分配给伯碳,仲碳/叔碳,具有相邻sp(2)或芳族基团的碳,醚/硫醚和胺,从而得到一个非常简单且可预测的模型。最后,将一些要求不高的方法用于研究孕酮和右美沙芬的CYP3A4代谢。

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