Hofrichter Martin, Kellner Harald, Pecyna Marek J, Ullrich René
Department of Bio- and Environmental Sciences, International Institute Zittau, Technische Universität Dresden, Markt 23, Zittau, 02763, Germany,
Adv Exp Med Biol. 2015;851:341-68. doi: 10.1007/978-3-319-16009-2_13.
Eleven years ago, a secreted heme-thiolate peroxidase with promiscuity for oxygen transfer reactions was discovered in the basidiomycetous fungus, Agrocybe aegerita. The enzyme turned out to be a functional mono-peroxygenase that transferred an oxygen atom from hydrogen peroxide to diverse organic substrates (aromatics, heterocycles, linear and cyclic alkanes/alkenes, fatty acids, etc.). Later similar enzymes were found in other mushroom genera such as Coprinellus and Marasmius. Approximately one thousand putative peroxygenase sequences that form two large clusters can be found in genetic databases and fungal genomes, indicating the widespread occurrence of such enzymes in the whole fungal kingdom including all phyla of true fungi (Eumycota) and certain fungus-like heterokonts (Oomycota). This new enzyme type was classified as unspecific peroxygenase (UPO, EC 1.11.2.1) and placed in a separate peroxidase subclass. Furthermore, UPOs and related heme-thiolate peroxidases such as well-studied chloroperoxidase (CPO) represent a separate superfamily of heme proteins on the phylogenetic level. The reactions catalyzed by UPOs include hydroxylation, epoxidation, O- and N-dealkylation, aromatization, sulfoxidation, N-oxygenation, dechlorination and halide oxidation. In many cases, the product patterns of UPOs resemble those of human cytochrome P450 (P450) monooxygenases and, in fact, combine the catalytic cycle of heme peroxidases with the "peroxide shunt" of P450s. Here, an overview on UPOs is provided with focus on their molecular and catalytic properties.
11年前,在担子菌纲真菌高大环柄菇中发现了一种对氧转移反应具有混杂性的分泌型血红素硫醇盐过氧化物酶。结果表明,该酶是一种功能性单加氧酶,可将过氧化氢中的一个氧原子转移到多种有机底物(芳烃、杂环、直链和环状烷烃/烯烃、脂肪酸等)上。后来,在其他蘑菇属中也发现了类似的酶,如鬼伞属和小皮伞属。在遗传数据库和真菌基因组中可以找到大约1000个形成两个大簇的假定过氧酶序列,这表明这类酶在整个真菌界广泛存在,包括所有真正真菌门(子囊菌门)和某些类似真菌的异鞭毛类(卵菌门)。这种新的酶类型被归类为非特异性过氧酶(UPO,EC 1.11.2.1),并被置于一个单独的过氧化物酶亚类中。此外,UPO和相关的血红素硫醇盐过氧化物酶,如研究充分的氯过氧化物酶(CPO),在系统发育水平上代表了一个单独的血红素蛋白超家族。UPO催化的反应包括羟基化、环氧化、O-和N-脱烷基化、芳构化、硫氧化、N-氧化、脱氯和卤化物氧化。在许多情况下,UPO的产物模式类似于人类细胞色素P450(P450)单加氧酶,实际上,它将血红素过氧化物酶的催化循环与P450的“过氧化物分流”结合在一起。本文提供了关于UPO的概述,重点介绍了它们的分子和催化特性。