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铜绿假单胞菌中pvdA基因的铁调节转录:Fur和PvdS对启动子活性的影响。

Iron-regulated transcription of the pvdA gene in Pseudomonas aeruginosa: effect of Fur and PvdS on promoter activity.

作者信息

Leoni L, Ciervo A, Orsi N, Visca P

机构信息

Istituto Pasteur-Fondazione Cenci Bolognetti, Rome, Italy.

出版信息

J Bacteriol. 1996 Apr;178(8):2299-313. doi: 10.1128/jb.178.8.2299-2313.1996.

Abstract

The pvdA gene, encoding the enzyme L-ornithine N5-oxygenase, catalyzes a key step of the pyoverdin biosynthetic pathway in Pseudomonas aeruginosa. Expression studies with a promoter probe vector made it possible to identify three tightly iron-regulated promoter regions in the 5.9-kb DNA fragment upstream of pvdA. The promoter governing pvdA expression was located within the 154-bp sequence upstream of the pvdA translation start site. RNA analysis showed that expression of PvdA is iron regulated at the transcriptional level. Primer extension and S1 mapping experiments revealed two 5'termini of the pvdA transcript, 68 bp (T1) and 43 bp (T2) 5' of the PvdA initiation. The pvdA transcripts were monocystronic, with T1 accounting for 90% of the pvdA mRNA. Fur box-like sequences were apparently absent in the regions 5' of pvdA transcription start sites. A sequence motif resembling the -10 hexamer of AlgU-dependent promoters and the iron starvation box of pyoverdin genes controlled by the sigmaE -like factor PvdS were identified 5' of the T1 start site. The minimum DNA region required for iron-regulated promoter activity was mapped from bp -41 to -154 relative to the ATG translation start site of pvdA. We used pvdA'::lacZ transcriptional fusions and Northern (RNA) analyses to study the involvement of Fur and PvdS in the iron-regulated expression of pvdA. Two fur mutants of P. aeruginosa were much less responsive than wild-type PAO1 to the iron-dependent regulation of pvdA expression. Transcription from the pvdA promoter did not occur in a heterologous host unless in the presence of the pvdS gene in trans and was abrogated in a pvdS mutant of P. aeruginosa. Interaction of the Fur repressor with a 150-bp fragment encompassing the pvdS promoter was demonstrated in vivo by the Fur titration assay and confirmed in vitro by gel retardation experiments with a partially purified Fur preparation. Conversely, the promoter region of pvdA did not interact with Fur. Our results support the hypothesis that the P. aeruginosa Fur repressor indirectly controls pvdA transcription through the intermediary sigma factor PvdS; in the presence of sufficient iron, Fur blocks the pvdS promoter, thus preventing PvdS expression and consequently transcription of pvdA and other pyoverdin biosynthesis genes.

摘要

编码L-鸟氨酸N5-加氧酶的pvdA基因催化铜绿假单胞菌中绿脓菌素生物合成途径的关键步骤。使用启动子探针载体进行的表达研究使得在pvdA上游5.9 kb DNA片段中鉴定出三个紧密铁调节的启动子区域成为可能。控制pvdA表达的启动子位于pvdA翻译起始位点上游154 bp序列内。RNA分析表明,PvdA的表达在转录水平上受铁调节。引物延伸和S1作图实验揭示了pvdA转录本的两个5'末端,在PvdA起始位点5'端分别为68 bp(T1)和43 bp(T2)。pvdA转录本是单顺反子的,其中T1占pvdA mRNA的90%。在pvdA转录起始位点5'区域明显不存在类Fur盒序列。在T1起始位点5'端鉴定出一个类似于AlgU依赖性启动子的-10六聚体和由类sigmaE因子PvdS控制的绿脓菌素基因的铁饥饿盒的序列基序。相对于pvdA的ATG翻译起始位点,铁调节启动子活性所需的最小DNA区域定位在-41至-154 bp。我们使用pvdA'::lacZ转录融合和Northern(RNA)分析来研究Fur和PvdS在pvdA铁调节表达中的作用。铜绿假单胞菌的两个fur突变体对pvdA表达的铁依赖性调节的反应比野生型PAO1小得多。除非在反式存在pvdS基因的情况下,否则pvdA启动子在异源宿主中不会发生转录,并且在铜绿假单胞菌的pvdS突变体中被消除。通过Fur滴定试验在体内证明了Fur阻遏物与包含pvdS启动子的150 bp片段的相互作用,并通过使用部分纯化的Fur制剂的凝胶阻滞实验在体外得到证实。相反,pvdA的启动子区域不与Fur相互作用。我们的结果支持这样的假设,即铜绿假单胞菌Fur阻遏物通过中间的sigma因子PvdS间接控制pvdA转录;在有足够铁的情况下,Fur阻断pvdS启动子,从而阻止PvdS表达,进而阻止pvdA和其他绿脓菌素生物合成基因的转录。

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