Osman A M, Koerts J, Boersma M G, Boeren S, Veeger C, Rietjens I M
Department of Biochemistry, Agricultural University, Wageningen, The Netherlands.
Eur J Biochem. 1996 Aug 15;240(1):232-8. doi: 10.1111/j.1432-1033.1996.0232h.x.
The mechanism of aromatic hydroxylation of aniline and phenol derivatives in a H2O2-driven microperoxidase-8(MP8)-catalyzed reaction was investigated. It was shown that the reaction was not inhibited by the addition of scavengers of superoxide anion or hydroxyl radicals, which demonstrates that the reaction mechanism differs from that of the aromatic hydroxylation catalyzed by a horseradish peroxidase/ dihydroxyfumarate system. Additional experiments with 18O-labelled H2 18O2 demonstrated that the oxygen incorporated into aniline to give 4-aminophenol originates from H2O2. Furthermore, it was found that the addition of ascorbic acid efficiently blocks all peroxidase-type reactions that can be catalyzed by the MP8/H2O2 system, but does not inhibit the aromatic hydroxylation of aniline and phenol derivatives. Together, these observations exclude reaction mechanisms for the aromatic hydroxylation that proceed through peroxidase-type mechanisms in which the oxygen incorporated into the substrate originates from O2 or H2O. The mechanism instead seems to proceed by an initial attack of the high-valent iron-oxo intermediate of MP8 on the pi-electrons of the aromatic ring of the substrate leading to product formation by a cytochrome-P-450-type of sigma-O-addition or oxygen-rebound mechanism. This implies that MP8, which has a histidyl and not a cysteinate fifth axial ligand, is able to react by a cytochrome-P-450-like oxygen-transfer reaction mechanism.
研究了在过氧化氢驱动的微过氧化物酶-8(MP8)催化反应中苯胺和苯酚衍生物的芳香羟基化机制。结果表明,添加超氧阴离子或羟基自由基清除剂并不会抑制该反应,这表明该反应机制与辣根过氧化物酶/二羟基富马酸酯体系催化的芳香羟基化反应机制不同。用18O标记的H218O2进行的额外实验表明,掺入苯胺生成4-氨基苯酚的氧源自H2O2。此外,发现添加抗坏血酸能有效阻断MP8/H2O2体系可催化的所有过氧化物酶型反应,但不会抑制苯胺和苯酚衍生物的芳香羟基化反应。综合这些观察结果,排除了通过过氧化物酶型机制进行的芳香羟基化反应机制,在这些机制中,掺入底物的氧源自O2或H2O。相反,该机制似乎是通过MP8的高价铁氧中间体首先攻击底物芳香环的π电子,然后通过细胞色素P-450型的σ-O-加成或氧反弹机制形成产物。这意味着具有组氨酸而非半胱氨酸第五轴向配体的MP8能够通过类似细胞色素P-450的氧转移反应机制进行反应。