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首页> 外文期刊>Applied and Environmental Microbiology >The atzB gene of Pseudomonas sp. strain ADP encodes the second enzyme of a novel atrazine degradation pathway.
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The atzB gene of Pseudomonas sp. strain ADP encodes the second enzyme of a novel atrazine degradation pathway.

机译:假单胞菌sp。的atzB基因。菌株ADP编码新型阿特拉津降解途径的第二种酶。

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We previously reported the isolation of a 21.5-kb genomic DNA fragment from Pseudomonas sp. strain ADP, which contains the atzA gene, encoding the first metabolic step for the degradation of the herbicide atrazine (M. de Souza, L. P. Wackett, K. L. Boundy-Mills, R. T. Mandelbaum, and M. J. Sadowsky, Appl. Environ. Microbiol. 61:3373-3378, 1995). In this study, we show that this fragment also contained the second gene of the atrazine metabolic pathway, atzB. AtzB catalyzed the transformation of hydroxyatrazine to N-isopropylammelide. The product was identified by use of high-performance liquid chromatography, mass spectrometery, and nuclear magnetic resonance spectroscopy. Tn5 mutagenesis of pMD1 was used to determine that atzB was located 8 kb downstream of atzA. Hydroxyatrazine degradation activity was localized to a 4.0-kb ClaI fragment, which was subcloned into the vector pACYC184 to produce plasmid pATZB-2. The DNA sequence of this region was determined and found to contain two large overlapping divergent open reading frames, ORF1 and ORF2. ORF1 was identified as the coding region of atzB by demonstrating that (i) only ORF1 was transcribed in Pseudomonas sp. strain ADP, (ii) a Tn5 insertion in ORF2 did not disrupt function, and (iii) codon usage was consistent with ORF1 being translated. AtzB had 25% amino acid identity with TrzA, a protein that catalyzes a hydrolytic deamination of the s-triazine substrate melamine. The atzA and atzB genes catalyze the first two steps of the metabolic pathway in a bacterium that rapidly metabolizes atrazine to carbon dioxide, ammonia, and chloride.
机译:我们以前曾报道过从假单胞菌属物种中分离出21.5kb基因组DNA片段。含有atzA基因的ADP菌株,编码用于降解除草剂阿特拉津的第一个代谢步骤(M. de Souza,LP Wackett,KL Boundy-Mills,RT Mandelbaum,and MJ Sadowsky,Appl.Environ.Microbiol.61: 3373-3378,1995)。在这项研究中,我们显示该片段还包含阿特拉津代谢途径的第二个基因atzB。 AtzB催化了羟基at去津向N-异丙基氨化物的转化。通过使用高效液相色谱,质谱和核磁共振波谱法鉴定了该产物。使用pMD1的Tn5诱变来确定atzB位于atzA下游8 kb。羟嗪嗪的降解活性被定位在一个4.0kb ClaI片段上,该片段被亚克隆到载体pACYC184中以产生质粒pATZB-2。确定该区域的DNA序列,发现其包含两个大的重叠的发散的开放阅读框,ORF1和ORF2。通过证明(i)在假单胞菌sp。中仅转录ORF1将ORF1鉴定为atzB的编码区。菌株ADP,(ii)在ORF2中插入Tn5不会破坏功能,并且(iii)密码子用法与正在翻译的ORF1一致。 AtzB与TrzA具有25%的氨基酸同一性,TrzA是一种催化s-三嗪底物三聚氰胺水解脱氨的蛋白质。 atzA和atzB基因催化细菌中的代谢途径的前两个步骤,该细菌会迅速将阿特拉津代谢成二氧化碳,氨气和氯化物。

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