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首页> 外文期刊>Chemistry: A European journal >Mechanistic Insight into Formation of Oxo-Iron(IV) Porphyrin p-Cation Radicals from Enzyme Mimics of Cytochrome P450 in Organic Solvents
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Mechanistic Insight into Formation of Oxo-Iron(IV) Porphyrin p-Cation Radicals from Enzyme Mimics of Cytochrome P450 in Organic Solvents

机译:从有机溶剂中的细胞色素P450的酶模拟物了解氧化铁(IV)卟啉p-阳离子自由基的机理

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摘要

Two new models for cytochrome P450 in which the thiolate axial ligand is replaced by a RSO3group, form oxo-iron(IV) porphyrin pcation radicals as sole oxidation products in peroxo shunt reactions independent of the nature of the employed solvent (polar or non-polar) and electronic nature of the porphyrin rings.Although the properties of the solvent and pushCpull effects from the porphyrin rings do not affect the mode of the OO bond cleavage (heterolytic or homolytic) in these models, they strongly affect the rate and mechanism of each reaction step leading to the formation of the high-valent iron intermediates.This article reports the results of mechanistic studies involving the measurements of the rate of oxo-iron(IV) porphyrin p-cation radical formation from the enzyme mimics of P450 for different oxidant concentration, temperature and pressure in selected organic solvents.Extraction of the appropriate rate constants and activation parameters for the reactions studied enable a detailed discussion of the effects of solvent and electronic nature of the porphyrin rings on the position of the first pre-equilibrium involving formation of the acylperoxo-ironACHTUNGTRENUNG(III) porphyrin intermediate,as well as on the rate of heterolytic OO bond cleavage leading to the formation of the high-valent iron species. Furthermore, an unusual effect of solvent on the kinetics of oxoiron(IV) porphyrin p-cation radical formation in methanol is demonstrated and discussed in the present work.
机译:两种新的细胞色素P450模型,其中硫醇盐轴向配体被RSO3基团取代,形成氧代铁(IV)卟啉自由基作为过氧分流反应中的唯一氧化产物,与所用溶剂的性质(极性或非极性)无关)和卟啉环的电子性质。尽管卟啉环的溶剂性质和pushCpull效应不影响这些模型中OO键裂解的模式(杂溶或均溶),但它们会强烈影响每种结构的速率和机理导致形成高价铁中间体的反应步骤。本文报道了有关机理研究的结果,涉及从不同氧化剂的P450酶模拟物中测量氧-铁(IV)卟啉p-阳离子自由基形成的速率选定的有机溶剂中的浓度,温度和压力。为所研究的反应提取合适的速率常数和活化参数可提供详细信息讨论了卟啉环的溶剂和电子性质对涉及酰基过氧-铁ACHTUNGTRENUNG(III)卟啉中间体形成的第一个预平衡位置的影响,以及导致OO裂解的杂合OO裂解的速率高价铁物种的形成。此外,本工作证明并讨论了溶剂对甲醇中氧代铁(IV)卟啉对正阳离子形成动力学的不寻常影响。

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