首页> 美国卫生研究院文献>Biochemical Journal >Sigmoidal kinetic model for two co-operative substrate-binding sites in a cytochrome P450 3A4 active site: an example of the metabolism of diazepam and its derivatives.
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Sigmoidal kinetic model for two co-operative substrate-binding sites in a cytochrome P450 3A4 active site: an example of the metabolism of diazepam and its derivatives.

机译:在细胞色素P450 3A4活性位点中两个协作底物结合位点的S型动力学模型:地西di及其衍生物代谢的一个例子。

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摘要

Cytochrome P450 3A4 (CYP3A4) plays a prominent role in the metabolism of a vast array of drugs and xenobiotics and exhibits broad substrate specificities. Most cytochrome P450-mediated reactions follow simple Michaelis-Menten kinetics. These parameters are widely accepted to predict pharmacokinetic and pharmacodynamic consequences in vivo caused by exposure to one or multiple drugs. However, CYP3A4 in many cases exhibits allosteric (sigmoidal) characteristics that make the Michaelis constants difficult to estimate. In the present study, diazepam, temazepam and nordiazepam were employed as substrates of CYP3A4 to propose a kinetic model. The model hypothesized that CYP3A4 contains two substrate-binding sites in a single active site that are both distinct and co-operative, and the resulting velocity equation had a good fit with the sigmoidal kinetic observations. Therefore, four pairs of the kinetic estimates (KS1, kalpha, KS2, kbeta, KS3, kdelta, KS4 and kgamma) were resolved to interpret the features of binding affinity and catalytic ability of CYP3A4. Dissociation constants KS1 and KS2 for two single-substrate-bound enzyme molecules (SE and ES) were 3-50-fold greater than KS3 and KS4 for a two-substrate-bound enzyme (SES), while respective rate constants kdelta and kgamma were 3-218-fold greater than kalpha and kbeta, implying that access and binding of the first molecule to either site in an active pocket of CYP3A4 can enhance the binding affinity and reaction rate of the vacant site for the second substrate. Thus our results provide some new insights into the co-operative binding of two substrates in the inner portions of an allosteric CYP3A4 active site.
机译:细胞色素P450 3A4(CYP3A4)在多种药物和异生物素的代谢中发挥重要作用,并具有广泛的底物特异性。大多数细胞色素P450介导的反应遵循简单的Michaelis-Menten动力学。这些参数已被广泛接受以预测因接触一种或多种药物引起的体内药代动力学和药效动力学后果。然而,在许多情况下,CYP3A4表现出变构(S形)特征,这使得米氏常数难以估计。在本研究中,地西epa,替马西m和去甲西p被用作CYP3A4的底物以提出动力学模型。该模型假设CYP3A4在单个活性位点中包含两个底物结合位点,这两个位点是不同的且相互协作,并且所得的速度方程式与S形动力学观察结果非常吻合。因此,解析了四对动力学估计值(KS1,kalpha,KS2,kbeta,KS3,kdelta,KS4和kgamma)以解释CYP3A4的结合亲和力和催化能力的特征。两个单底物结合酶分子(SE和ES)的解离常数KS1和KS2是两个底物结合酶(SES)的解离常数KS3和KS4的3-50倍,而速率常数kdelta和kgamma为比kalpha和kbeta大3-218倍,这意味着第一个分子与CYP3A4活性口袋中任一位点的访问和结合可以增强第二位底物的空位的结合亲和力和反应速率。因此,我们的结果为变构CYP3A4活性位点内部两个底物的协同结合提供了一些新见识。

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