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Interaction Modes of Microsomal Cytochrome P450s with Its Reductase and the Role of Substrate Binding

机译:微粒体细胞色素P450s及其还原酶的相互作用模式及基材结合的作用

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摘要

The activity of microsomal cytochromes P450 (CYP) is strictly dependent on the supply of electrons provided by NADPH cytochrome P450 oxidoreductase (CPR). The variant nature of the isoform-specific proximal interface of microsomal CYPs implies that the interacting interface between the two proteins is degenerated. Recently, we demonstrated that specific CPR mutations in the FMN-domain (FD) may induce a gain in activity for a specific CYP isoform. In the current report, we confirm the CYP isoform dependence of CPR’s degenerated binding by demonstrating that the effect of four of the formerly studied FD mutants are indeed exclusive of a specific CYP isoform, as verified by cytochrome c inhibition studies. Moreover, the nature of CYP’s substrate seems to have a modulating role in the CPR:CYP interaction. In silico molecular dynamics simulations of the FD evidence that mutations induces very subtle structural alterations, influencing the characteristics of residues formerly implicated in the CPR:CYP interaction or in positioning of the FMN moiety. CPR seems therefore to be able to form effective interaction complexes with its structural diverse partners via a combination of specific structural features of the FD, which are functional in a CYP isoform dependent manner, and dependent on the substrate bound.
机译:微粒体细胞变色剂P450(CYP)的活性严格依赖于NADPH细胞色素P450氧化酶(CPR)提供的电子供应。微粒体Cyps的同种型特异性近端界面的变体性质意味着两种蛋白质之间的相互作用界面是退化的。最近,我们证明了FMN-结构域(FD)中的特异性CPR突变可以诱导特定CYP同种型的活性增益。在当前报告中,我们通过证明通过细胞色素C抑制研究的验证的特定CYP同种型,确认CPR对CPR的退化结合的依赖性CPR的简并结合的依赖性。此外,CYP的基材的性质似乎在CPR:CYP相互作用中具有调节作用。在Silico分子动力学模拟的FD证据中,突变诱导非常细微的结构改变,影响以前涉及CPR:CYP相互作用或在FMN部分定位的残基的特征。因此,CPR似乎能够通过FD的特定结构特征的组合形成有效的相互作用复合物,其特定结构特征是CYP同种型依赖性方式的功能,并且取决于基板结合。

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