首页> 美国卫生研究院文献>Journal of Bacteriology >Identification and Characterization of Catabolic para-Nitrophenol 4-Monooxygenase and para-Benzoquinone Reductase from Pseudomonas sp. Strain WBC-3
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Identification and Characterization of Catabolic para-Nitrophenol 4-Monooxygenase and para-Benzoquinone Reductase from Pseudomonas sp. Strain WBC-3

机译:假单胞菌分解代谢的对硝基苯酚4-单加氧酶和对苯醌还原酶的鉴定和表征。 WBC-3株

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摘要

Pseudomonas sp. strain WBC-3 utilizes para-nitrophenol (PNP) as a sole source of carbon, nitrogen, and energy. In order to identify the genes involved in this utilization, we cloned and sequenced a 12.7-kb fragment containing a conserved region of NAD(P)H:quinone oxidoreductase genes. Of the products of the 13 open reading frames deduced from this fragment, PnpA shares 24% identity to the large component of a 3-hydroxyphenylacetate hydroxylase from Pseudomonas putida U and PnpB is 58% identical to an NAD(P)H:quinone oxidoreductase from Escherichia coli. Both PnpA and PnpB were purified to homogeneity as His-tagged proteins, and they were considered to be a monomer and a dimer, respectively, as determined by gel filtration. PnpA is a flavin adenine dinucleotide-dependent single-component PNP 4-monooxygenase that converts PNP to para-benzoquinone in the presence of NADPH. PnpB is a flavin mononucleotide-and NADPH-dependent p-benzoquinone reductase that catalyzes the reduction of p-benzoquinone to hydroquinone. PnpB could enhance PnpA activity, and genetic analyses indicated that both pnpA and pnpB play essential roles in PNP mineralization in strain WBC-3. Furthermore, the pnpCDEF gene cluster next to pnpAB shares significant similarities with and has the same organization as a gene cluster responsible for hydroquinone degradation (hapCDEF) in Pseudomonas fluorescens ACB (M. J. Moonen, N. M. Kamerbeek, A. H. Westphal, S. A. Boeren, D. B. Janssen, M. W. Fraaije, and W. J. van Berkel, J. Bacteriol. >190:5190-5198, 2008), suggesting that the genes involved in PNP degradation are physically linked.
机译:假单胞菌WBC-3菌株利用对硝基苯酚(PNP)作为碳,氮和能量的唯一来源。为了鉴定参与此利用的基因,我们克隆并测序了一个12.7kb的片段,该片段包含NAD(P)H:醌氧化还原酶基因的保守区域。从该片段推导的13个开放阅读框的产物中,PnpA与恶臭假单胞菌U的3-羟苯基乙酸羟化酶的大成分具有24%的同一性,而PnpB与来自假单胞菌的NAD(P)H:醌氧化还原酶的58%相同大肠杆菌。 PnpA和PnpB均被纯化为具有His标签的蛋白,具有同质性,通过凝胶过滤测定,它们分别被视为单体和二聚体。 PnpA是黄素腺嘌呤二核苷酸依赖性单组分PNP 4-单加氧酶,可在NADPH存在下将PNP转化为对苯醌。 PnpB是黄素单核苷酸和NADPH依赖性的对苯醌醌还原酶,可催化将对苯醌还原为对苯二酚。 PnpB可以增强PnpA活性,遗传分析表明pnpA和pnpB都在WBC-3菌株的PNP矿化中起重要作用。此外,与pnpAB相邻的pnpCDEF基因簇与荧光假单胞菌ACB中的氢醌降解(hapCDEF)的基因簇(MJ Moonen,NM Kamerbeek,AH Westphal,SA Boeren,DB Janssen,MW)具有显着相似性并具有相同的组织。 Fraaije和WJ van Berkel,J。Bacteriol。> 190: 5190-5198,2008),表明参与PNP降解的基因是物理相连的。

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