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CYP2E1的协同效应在苯乙烯及其代谢物之间存在差异。

Cooperative effects for CYP2E1 differ between styrene and its metabolites.

作者信息

Hartman Jessica H, Boysen Gunnar, Miller Grover P

机构信息

Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, Little Rock, AR 72205, USA.

出版信息

Xenobiotica. 2013 Sep;43(9):755-64. doi: 10.3109/00498254.2012.760764. Epub 2013 Jan 18.

Abstract

Cooperative interactions are frequently observed in the metabolism of drugs and pollutants by cytochrome P450s; nevertheless, the molecular determinants for cooperativity remain elusive. Previously, we demonstrated that steady-state styrene metabolism by CYP2E1 exhibits positive cooperativity. We hypothesized that styrene metabolites have lower affinity than styrene toward CYP2E1 and limited ability to induce cooperative effects during metabolism. To test the hypothesis, we determined the potency and mechanism of inhibition for styrene and its metabolites toward oxidation of 4-nitrophenol using CYP2E1 Supersomes® and human liver microsomes. Styrene inhibited the reaction through a mixed cooperative mechanism with high affinity for the catalytic site (67 µM) and lower affinity for the cooperative site (1100 µM), while increasing substrate turnover at high concentrations. Styrene oxide and 4-vinylphenol possessed similar affinity for CYP2E1. Styrene oxide behaved cooperatively like styrene, but 4-vinylphenol decreased turnover at high concentrations. Styrene glycol was a very poor competitive inhibitor. Among all compounds, there was a positive correlation with binding and hydrophobicity. Taken together, these findings for CYP2E1 further validate contributions of cooperative mechanisms to metabolic processes, demonstrate the role of molecular structure on those mechanisms and underscore the potential for heterotropic cooperative effects between different compounds.

摘要

细胞色素P450在药物和污染物代谢过程中经常观察到协同相互作用;然而,协同作用的分子决定因素仍然难以捉摸。此前,我们证明CYP2E1介导的稳态苯乙烯代谢表现出正协同性。我们推测苯乙烯代谢产物对CYP2E1的亲和力低于苯乙烯,且在代谢过程中诱导协同效应的能力有限。为了验证这一假设,我们使用CYP2E1超微粒体和人肝微粒体测定了苯乙烯及其代谢产物对4-硝基苯酚氧化的抑制效力和机制。苯乙烯通过混合协同机制抑制反应,对催化位点具有高亲和力(67µM),对协同位点具有较低亲和力(1100µM),同时在高浓度下增加底物周转率。环氧苯乙烯和4-乙烯基苯酚对CYP2E1具有相似的亲和力。环氧苯乙烯的协同作用与苯乙烯相似,但4-乙烯基苯酚在高浓度下会降低周转率。苯乙二醇是一种非常弱的竞争性抑制剂。在所有化合物中,结合与疏水性之间存在正相关。综上所述,这些关于CYP2E1的发现进一步验证了协同机制对代谢过程的贡献,证明了分子结构在这些机制中的作用,并强调了不同化合物之间异源协同效应的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6540/3979932/d4da64c686dc/nihms557959f1.jpg

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