de Visser Sam P
Manchester Interdisciplinary Biocenter and the School of Chemical Engineering and Analytical Science, The University of Manchester, 131 Princess Street, M1 7DN, Manchester, United Kingdom.
J Phys Chem B. 2007 Oct 25;111(42):12299-302. doi: 10.1021/jp075818m. Epub 2007 Oct 3.
Density functional theory calculations are presented on the catalytic properties of a horseradish peroxidase mutant whereby the axial nitrogen atom is replaced by phosphorus. This mutant has never been studied experimentally and only one theoretical report on this system is known (de Visser, S. P. J. Phys. Chem. B 2006, 110, 20759-20761). Thus, a one-atom substitution in horseradish peroxidase changes the properties of the catalytic center of the enzyme to more cytochrome P450-type qualities. In particular, the phosphorus-substituted horseradish peroxidase mutant reacts with substrates via a unique reactivity pattern, whereby alkanes are regioselectively hydroxylated even in the presence of a double bond. Reaction barriers of propene epoxidation and hydroxylation are almost identical to ones observed for a cytochrome P450 catalyst and significantly higher than those obtained for a horseradish peroxidase catalyst. It is shown that the regioselectivity difference is entropy and thermally driven and that the electron-transfer processes that occur during the reaction mechanism follow cytochrome P450-type patterns in the hydroxylation reaction.
本文展示了密度泛函理论对辣根过氧化物酶突变体催化性质的计算,该突变体中轴向氮原子被磷取代。此突变体从未经过实验研究,关于该体系仅有一篇理论报告(德维瑟,S.P.《物理化学杂志B》2006年,第110卷,20759 - 20761页)。因此,辣根过氧化物酶中的单原子取代将酶催化中心的性质转变为更接近细胞色素P450类型的性质。特别地,磷取代的辣根过氧化物酶突变体通过独特的反应模式与底物反应,即使存在双键,烷烃也能被区域选择性羟基化。丙烯环氧化和羟基化的反应势垒与细胞色素P450催化剂所观察到的几乎相同,且显著高于辣根过氧化物酶催化剂的反应势垒。结果表明,区域选择性差异是由熵和热驱动的,并且反应机制中发生的电子转移过程在羟基化反应中遵循细胞色素P450类型的模式。