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首页> 外文期刊>ACS catalysis >Substrate-Assisted Hydroxylation and O-Demethylation in the Peroxidase-like Cytochrome P450 Enzyme CYP121
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Substrate-Assisted Hydroxylation and O-Demethylation in the Peroxidase-like Cytochrome P450 Enzyme CYP121

机译:过氧化物酶样细胞色素P450酶CYP121中的底物辅助羟基化和O-去甲基化

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CYP121 is a P450 enzyme from Mycobacterium tuberculosis that catalyzes a C-C coupling reaction between the two aromatic rings on its native substrate cyclo(L-Tyr-L-Tyr) (cYY) to form mycocyclosin, a necessary product for cell survival. Unlike the typical P450 enzymes for hydroxylation, CYP121 is believed to behave like a peroxidase and conduct radical-mediated C-C bond formation. Here, we probe whether the phenolic hydrogen of the substrate is the site of the postulated hydrogen atom abstraction for radical formation. We synthesized a singly O-methylated substrate analogue, cYF-4-OMe, and characterized its interaction with CYP121 by ultraviolet-visible and electron paramagnetic resonance spectroscopies and X-ray crystallography. We found that cYF-4-OMe can function as a substrate of CYP121 using the established assay via the peroxide shunt. Analysis of the enzymatic reaction revealed an O-demethylation of cYF-4-OMe instead of cyclization, yielding cYY and formaldehyde. A hydroxylated substrate, cYF-4-OMeOH, is expected to be the intermediate product, which was trapped and structurally characterized by X-ray crystallography. We further determined that the deformylation reaction of cYF-4-OMeOH proceeds via an alkyl-oxygen rather than aryl-oxygen bond cleavage by the O-18-labeling studies. Finally, the pH dependence catalytic study on the native substrate and the methoxy analogue further supports the mechanistic understanding that the hydrogen atom abstraction is the critical first oxidation step exerted by a heme-based oxidant during the cyclization reaction of cYY. The switch in catalytic activity reveals the power of CYP121 as a P450 enzyme and provides insight into the peroxidase-like catalytic mechanism.
机译:CYP121是来自结核分枝杆菌的P450酶,其催化在其天然底物环系(L-Tyr-L-Tyr)(Cyy)上的两个芳环之间的C-C偶联反应,以形成菌环菌素,用于细胞存活的必要产物。与典型的羟基化P450酶不同,认为CYP121表现得像过氧化物酶并进行自由基介导的C-C键形成。在这里,我们探测基材的酚醛原子是自由基形成的假设氢原子抽象的部位。我们通过紫外可见光和电子顺磁共振谱和X射线晶体学合成了单独的O-甲基化底物类似物,CYF-4-OM和其与CYP121的相互作用。我们发现Cyf-4-OME可以使用通过过氧化物分流的建立的测定作为CYP121的基材。酶反应分析显示CyF-4-OME的O-去甲基化,而不是环化,产生深度和甲醛。预期羟基化的基材Cyf-4-OMOH是中间产物,其被捕获和结构形式的X射线晶体学。我们进一步确定CyF-4-OMOH的脱色反应通过烷基 - 氧而不是通过O-18标记研究进行芳基 - 氧粘合切割。最后,对天然基质和甲氧基类似物的pH依赖性催化研究进一步支持机械理解,即氢原子抽取是在阴茎环化反应期间由血红素基氧化剂施加的关键第一氧化步骤。催化活性的开关揭示了CYP121作为P450酶的功率,并提供了对过氧化物酶样催化机制的洞察力。

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