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斯氏假单胞菌菌株KC中四氯化碳降解所需调控元件和基因的分析

Analysis of regulatory elements and genes required for carbon tetrachloride degradation in Pseudomonas stutzeri strain KC.

作者信息

Sepúlveda-Torre LycelydelC, Huang Allison, Kim Heenam, Criddle Craig S

机构信息

Department of Microbiology and Center for Microbial Ecology, Michigan State University, East Lansing, USA.

出版信息

J Mol Microbiol Biotechnol. 2002 Mar;4(2):151-61.

Abstract

Previously, we described the generation and initial characterization of four Tn5 mutants of Pseudomonas stutzeri strain KC with impaired ability to degrade carbon tetrachloride (Sepúlveda-Torres et al., 1999). In this study, we show cloning and sequencing of an 8.3 kbp region in which all four transposons were located. This fragment encodes eight potential genes and is located in the central part of the 25 kbp fragment recently identified by Lewis et al. (2000) and shown by them to be sufficient to confer carbon tetrachloride transformation capability upon other pseudomonads. The four transposon insertion mutants mapped in ORF's F and I designated by Lewis et al. (2000). This is consistent with the results by Lewis et al. (2000) that orfFis required for carbon tetrachloride degradation. We further established that orfl is required for CCl4 degradation since the three mutants in this ORF were unable to degrade carbon tetrachloride. We present our analysis of the gene and protein sequences from the 8.3 kbp region and propose a tentative model for the role of different genes in the synthesis and activity of pyridine-2,6-bis(thiocarboxylate) (PDTC), the secreted factor responsible for carbon tetrachloride dechlorination. We also found a putative promoter that overlaps with a Fur-box-like sequence in the region upstream of mutated genes. To test this putative promoter region and Fur-box, we generated and ligated DNA fragments containing wild-type and mutant Fur-boxes to a lacZ reporter. The wild-type fragment showed promoter activity that is regulated by the concentration of iron in the medium. Finally, we screened a selection of Pseudomonas strains, including P. putida DSMZ 3601--a strain known to produce PDTC--for the presence of the genes characterized in this study. None of the strains tested positive, suggesting that Pseudomonas stutzeri strain KC may possess a distinct biosynthetic pathway for PDTC production.

摘要

此前,我们描述了施氏假单胞菌菌株KC的四个转座子Tn5突变体的产生及初步特性,这些突变体降解四氯化碳的能力受损(塞普尔韦达 - 托雷斯等人,1999年)。在本研究中,我们展示了一个8.3 kbp区域的克隆和测序,所有四个转座子都位于该区域。这个片段编码八个潜在基因,位于刘易斯等人(2000年)最近鉴定的25 kbp片段的中部,他们表明该片段足以赋予其他假单胞菌四氯化碳转化能力。这四个转座子插入突变体定位在刘易斯等人(2000年)指定的开放阅读框F和I中。这与刘易斯等人(2000年)的结果一致,即orfF是四氯化碳降解所必需的。我们进一步确定orf1是CCl4降解所必需的,因为该开放阅读框中的三个突变体无法降解四氯化碳。我们展示了对来自8.3 kbp区域的基因和蛋白质序列的分析,并提出了一个关于不同基因在吡啶 - 2,6 - 双(硫代羧酸盐)(PDTC)(负责四氯化碳脱氯的分泌因子)的合成和活性中作用的初步模型。我们还在突变基因上游区域发现了一个与类Fur - box序列重叠的推定启动子。为了测试这个推定的启动子区域和Fur - box,我们将包含野生型和突变型Fur - box的DNA片段生成并连接到一个lacZ报告基因上。野生型片段显示出受培养基中铁浓度调节的启动子活性。最后,我们筛选了一系列假单胞菌菌株,包括恶臭假单胞菌DSMZ 3601(一种已知产生PDTC的菌株),以检测本研究中表征的基因的存在。所测试的菌株均未呈阳性,这表明施氏假单胞菌菌株KC可能拥有一条独特的PDTC生物合成途径。

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