首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Amphipol-facilitated elucidation of the functional tetrameric complex of full-length cytochrome P450 CYP2B4 and NADPH-cytochrome P450 oxidoreductase
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Amphipol-facilitated elucidation of the functional tetrameric complex of full-length cytochrome P450 CYP2B4 and NADPH-cytochrome P450 oxidoreductase

机译:全长细胞色素P450CYP2B4和NADPH-细胞色谱酶P450氧化还原酶功能四聚体促进施加肌肉促进阐明

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摘要

Interactions of membrane-bound mammalian cytochromes P450 (CYPs) with NADPH-cytochrome P450 oxidoreductase (POR), which are required for metabolism of xenobiotics, are facilitated by membrane lipids. A variety of membrane mimetics, such as phospholipid liposomes and nanodiscs, have been used to simulate the membrane to form catalytically active CYP:POR complexes. However, the exact mechanism(s) of these interactions are unclear because of the absence of structural information of full-length mammalian CYP:POR complexes in membranes. Herein, we report the use of amphipols (APols) to form a fully functional, soluble, homogeneous preparation of full-length CYP:POR complexes amenable to biochemical and structural study. Incorporation of CYP2B4 and POR into APols resulted in a CYP2B4:POR complex with a stoichiometry of 1:1, which was fully functional in demethylating benzphetamine at a turnover rate of 37.7 ± 2.2 min−1, with a coupling efficiency of 40%. Interestingly, the stable complex had a molecular weight (Mw) of 338 ± 22 kDa determined by multiangle light scattering, suggestive of a tetrameric complex of 2CYP2B4:2POR embedded in one APol nanoparticle. Moreover, negative stain electron microscopy (EM) validated the homogeneity of the complex and allowed us to generate a three-dimensional EM map and model consistent with the tetramer observed in solution. This first report of the full-length mammalian CYP:POR complex by transmission EM not only reveals the architecture that facilitates electron transfer but also highlights a potential use of APols in biochemical and structural studies of functional CYP complexes with redox partners.
机译:通过膜脂质促进了膜结合哺乳动物细胞学(CYPS)与NADPH-细胞色素P450氧化还原酶(POR)的相互作用,这是一种蛋白质代谢所必需的。已经使用各种膜模拟物,例如磷脂脂质体和纳米DESCS,用于模拟膜以形成催化活性CYP:POR复合物。然而,由于没有全长哺乳动物CYP的结构信息,这些相互作用的确切机制尚不清楚:膜中的POR复合物。在此,我们报告使用Amphipols(Apols)来形成全长CYP的全官能,可溶的均匀制剂:POR复合物适用于生化和结构研究。将CYP2B4和POR掺入APOL产生的CYP2B4:POR复合物,其化学计量为1:1,其在去甲基化苯丙胺的周转率为37.7±2.2 min-1的偶联率,耦合效率为40%。有趣的是,稳定的络合物的分子量(MW)为338±22kDa,通过多聚光散射测定,暗示2cOP2b4的四聚体络合物:2孢子中嵌入在一个Apol纳米粒子中。此外,负染色电子显微镜(EM)验证了复合物的均匀性,使我们能够产生三维EM图和与在溶液中观察到的四聚体一致的模型。这首先报告全长哺乳动物CYP:POR复杂的传输EM不仅揭示了促进电子转移的架构,而且还突出了APOL在用氧化还原合作伙伴的功能CYP复合物的生化和结构研究中的潜在使用。

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