Nam Wonwoo
Department of Chemistry, Division of Nano Sciences, and Center for Biomimetic Systems, Ewha Womans University, Seoul 120-750, Korea.
Acc Chem Res. 2007 Jul;40(7):522-31. doi: 10.1021/ar700027f. Epub 2007 May 1.
High-valent iron(IV)-oxo species have been implicated as the key reactive intermediates in the catalytic cycles of dioxygen activation by heme and non-heme iron enzymes. Our understanding of the enzymatic reactions has improved greatly via investigation of spectroscopic and chemical properties of heme and non-heme iron(IV)-oxo complexes. In this Account, reactivities of synthetic iron(IV)-oxo porphyrin pi-cation radicals and mononuclear non-heme iron(IV)-oxo complexes in oxygenation reactions have been discussed as chemical models of cytochrome P450 and non-heme iron enzymes. These results demonstrate how mechanistic developments in biomimetic research can help our understanding of dioxygen activation and oxygen atom transfer reactions in nature.
高价铁(IV)-氧物种被认为是血红素和非血红素铁酶催化双氧活化循环中的关键反应中间体。通过对血红素和非血红素铁(IV)-氧配合物的光谱和化学性质的研究,我们对酶促反应的理解有了很大的提高。在本综述中,作为细胞色素P450和非血红素铁酶的化学模型,讨论了合成铁(IV)-氧卟啉π-阳离子自由基和单核非血红素铁(IV)-氧配合物在氧化反应中的反应活性。这些结果表明,仿生研究中的机理发展如何有助于我们理解自然界中的双氧活化和氧原子转移反应。