Pogni Rebecca, Baratto M Camilla, Teutloff Christian, Giansanti Stefania, Ruiz-Dueñas Francisco J, Choinowski Thomas, Piontek Klaus, Martínez Angel T, Lendzian Friedhelm, Basosi Riccardo
Department of Chemistry, University of Siena, 53100 Siena, Italy.
J Biol Chem. 2006 Apr 7;281(14):9517-26. doi: 10.1074/jbc.M510424200. Epub 2006 Jan 27.
Versatile peroxidases are heme enzymes that combine catalytic properties of lignin peroxidases and manganese peroxidases, being able to oxidize Mn(2+) as well as phenolic and non-phenolic aromatic compounds in the absence of mediators. The catalytic process (initiated by hydrogen peroxide) is the same as in classical peroxidases, with the involvement of 2 oxidizing equivalents and the formation of the so-called Compound I. This latter state contains an oxoferryl center and an organic cation radical that can be located on either the porphyrin ring or a protein residue. In this study, a radical intermediate in the reaction of versatile peroxidase from the ligninolytic fungus Pleurotus eryngii with H(2)O(2) has been characterized by multifrequency (9.4 and 94 GHz) EPR and assigned to a tryptophan residue. Comparison of experimental data and density functional theory theoretical results strongly suggests the assignment to a tryptophan neutral radical, excluding the assignment to a tryptophan cation radical or a histidine radical. Based on the experimentally determined side chain orientation and comparison with a high resolution crystal structure, the tryptophan neutral radical can be assigned to Trp(164) as the site involved in long-range electron transfer for aromatic substrate oxidation.
多功能过氧化物酶是一类血红素酶,兼具木质素过氧化物酶和锰过氧化物酶的催化特性,能够在无介体的情况下氧化Mn(2+)以及酚类和非酚类芳香化合物。催化过程(由过氧化氢引发)与经典过氧化物酶相同,涉及2个氧化当量并形成所谓的化合物I。后一种状态包含一个氧合铁中心和一个有机阳离子自由基,其可位于卟啉环或蛋白质残基上。在本研究中,采用多频(9.4和94 GHz)电子顺磁共振对木质素分解真菌刺芹侧耳的多功能过氧化物酶与H(2)O(2)反应中的自由基中间体进行了表征,并将其归属于一个色氨酸残基。实验数据与密度泛函理论理论结果的比较强烈表明该自由基归属于色氨酸中性自由基,排除了归属于色氨酸阳离子自由基或组氨酸自由基的可能性。基于实验测定的侧链取向并与高分辨率晶体结构进行比较,色氨酸中性自由基可归属于Trp(164),它是参与芳香底物氧化的远程电子转移的位点。