Department of Chemistry, Graduate School of Science, Osaka University, Toyonaka, Osaka 560-0043, Japan.
J Phys Chem B. 2011 Sep 15;115(36):10730-8. doi: 10.1021/jp206004y. Epub 2011 Aug 24.
We have performed hybrid density functional theory (DFT) calculations on the geometric and electronic structures of low-lying doublet and quartet ferryl-oxo [Fe(IV)═O] oxidants and a doublet perferryl-oxo [Fe(V)═O] oxidant in Cytochrome P450. Fully optimized structures of compound I models have been determined, and the proper symmetry of wave functions has been restored by the spin-projection technique. The results show that the perferryl-oxo species is relatively low lying, as compared with the excited state of the ferryl-oxo species, if the iron-oxo bond is properly described as the mixing of several appropriate excited electronic configurations to minimize electron repulsion. This means that the perferryl-oxo species is virtually in a mixed-valent resonance state, ↑Fe(V)═O ↔ ↑Fe(IV)•↑-↓•O, containing a highly reactive pπ atomic oxygen radical. The anionic thiolate ligand acts as a Lewis σ base and functions to achieve the stability of the perferryl-oxo complex and to activate the oxo ligand trans to it by asymmetric bond distortion along the O-Fe-S axis by lengthening the Fe-O bond and shortening the Fe-S bond, prior to the hydrogen-atom abstraction from the substrate.
我们在细胞色素 P450 中对低能态的二价和四价铁酰氧基[Fe(IV)═O]氧化剂和二价过铁酰氧基[Fe(V)═O]氧化剂的几何和电子结构进行了混合密度泛函理论(DFT)计算。已经确定了化合物 I 模型的完全优化结构,并通过自旋投影技术恢复了波函数的适当对称性。结果表明,如果铁-氧键被适当描述为几种适当的激发电子构型的混合,以最小化电子排斥,那么过铁酰氧基物种的能量较低,与铁酰氧基物种的激发态相比。这意味着过铁酰氧基物种实际上处于混合价共振状态,↑Fe(V)═O ↔ ↑Fe(IV)•↑-↓•O,其中含有反应性很强的 pπ 原子氧自由基。阴离子硫醇配体作为路易斯σ 碱,通过沿着 O-Fe-S 轴的不对称键变形,拉长 Fe-O 键并缩短 Fe-S 键,从而实现过铁酰氧基配合物的稳定性,并激活与其反式的氧配体,然后从底物中提取氢原子。