Leung K T, Campbell S, Gan Y, White D C, Lee H, Trevors J T
Department of Environmental Biology, University of Guelph, Ont., Canada.
FEMS Microbiol Lett. 1999 Apr 1;173(1):247-53. doi: 10.1111/j.1574-6968.1999.tb13509.x.
Pentachlorophenol-4-monooxygenase is an aromatic flavoprotein monooxygenase which hydroxylates pentachlorophenol and a wide range of polyhalogenated phenols at their para position. The PCP-degrading Sphingomonas species UG30 was recently shown to mineralize p-nitrophenol. In this study, the UG30 pcpB gene encoding the pentachlorophenol-4-monooxygenase gene was cloned for use to study its potential role in p-nitrophenol degradation. The UG30 pcpB gene consists of 1614 bp with a predicted translational product of 538 amino acids and a molecular mass of 59,933 Da. The primary sequence of pentachlorophenol-4-monooxygenase contained a highly conserved FAD binding site at its N-terminus associated with a beta alpha beta fold. UG30 has been shown previously to convert p-nitrophenol to 4-nitrocatechol. We observed that pentachlorophenol-4-monooxygenase catalyzed the hydroxylation of 4-nitrocatechol to 1,2,4-benzenetriol. About 31.2% of the nitro substituent of 4-nitrocatechol (initial concentration of 200 microM) was cleaved to yield nitrite over 2 h, indicating that the enzyme may be involved in the second step of p-nitrophenol degradation. The enzyme also hydroxylated p-nitrophenol at the para position, but only to a very slight extent. Our results confirm that pentachlorophenol-4-monooxygenase is not the primary enzyme in the initial step of p-nitrophenol metabolism by UG30.
五氯苯酚-4-单加氧酶是一种芳香族黄素蛋白单加氧酶,可将五氯苯酚及多种多卤代苯酚在其对位进行羟基化反应。最近研究表明,降解五氯苯酚的鞘氨醇单胞菌属UG30菌株能够使对硝基苯酚矿化。在本研究中,克隆了编码五氯苯酚-4-单加氧酶基因的UG30 pcpB基因,用于研究其在对硝基苯酚降解中的潜在作用。UG30 pcpB基因由1614个碱基对组成,预测的翻译产物为538个氨基酸,分子量为59,933道尔顿。五氯苯酚-4-单加氧酶的一级序列在其N端含有一个高度保守的FAD结合位点,与βαβ折叠相关。先前已证明UG30可将对硝基苯酚转化为4-硝基邻苯二酚。我们观察到五氯苯酚-4-单加氧酶催化4-硝基邻苯二酚羟基化为1,2,4-苯三酚。在2小时内,4-硝基邻苯二酚(初始浓度为200微摩尔)约31.2%的硝基取代基被裂解生成亚硝酸盐,这表明该酶可能参与对硝基苯酚降解的第二步。该酶也能使对硝基苯酚在对位发生羟基化反应,但程度非常轻微。我们的结果证实,五氯苯酚-4-单加氧酶不是UG30代谢对硝基苯酚初始步骤中的主要酶。