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恶臭假单胞菌TOL质粒σ54启动子原核增强子的物理和功能分析

Physical and functional analysis of the prokaryotic enhancer of the sigma 54-promoters of the TOL plasmid of Pseudomonas putida.

作者信息

Pérez-Martín J, de Lorenzo V

机构信息

Centro Nacional de Biotecnología, CSIC, Madrid, Spain.

出版信息

J Mol Biol. 1996 May 17;258(4):562-74. doi: 10.1006/jmbi.1996.0269.

Abstract

The physical and the functional organization of the upstream cis-acting sequence that controls at a distance the transcriptional activity of Pu and Ps, the two sigma 54-dependent promoters of the TOL (toluene/xylene biodegradation) operons of Pseudomonas putida, have been determined. DNase I and hydroxyl radical footprinting of the promoters with the purified and pre-activated enhancer-binding protein XylR clearly indicated the presence of two distinct binding sites (proximal and distal) that were occupied independently and did not share an evident sequence similarity. However, alignment of the sequence on the basis of the cleavage protection patterns, along with those produced on Po, a third XylR-responsive promoter of a phenol degradation operon, generated a consensus sequence 5'-TTGATCAATTGATCAA-3' having greater similarity to the proximal than to the distal boxes. To verify that this consensus was the sequence recognized by XylR, we footprinted in vitro a synthetic site, the results indicating that it was strongly bound by the activator with the predicted pattern of interactions. The mode of protection indicated that XylR recognized the sequence as a palindrome and not as a tandem repeat, interacting with it on one side of the DNA helix. In vivo experiments involving directed deletions through the entire 5' region of the Pu promoter confirmed that the proximal XylR-binding sequence suffices for promoter activity. In vivo data also suggested that XylR binding to the upstream sequences promoted the assembly of the oligomeric form of the activator that is competent for transcription initiation.

摘要

已确定了上游顺式作用序列的物理和功能组织,该序列远距离控制恶臭假单胞菌TOL(甲苯/二甲苯生物降解)操纵子的两个σ⁵⁴依赖型启动子Pu和Ps的转录活性。用纯化并预激活的增强子结合蛋白XylR对启动子进行DNA酶I和羟基自由基足迹分析,清楚地表明存在两个不同的结合位点(近端和远端),它们独立占据,且没有明显的序列相似性。然而,根据切割保护模式对序列进行比对,以及与苯酚降解操纵子的第三个XylR响应启动子Po产生的序列进行比对,生成了一个共有序列5'-TTGATCAATTGATCAA-3',该序列与近端框的相似性大于与远端框的相似性。为了验证这个共有序列是XylR识别的序列,我们在体外对一个合成位点进行了足迹分析,结果表明它被激活剂以预测的相互作用模式强烈结合。保护模式表明XylR将该序列识别为回文结构而非串联重复结构,并在DNA螺旋的一侧与之相互作用。涉及对Pu启动子整个5'区域进行定向缺失的体内实验证实,近端XylR结合序列足以支持启动子活性。体内数据还表明,XylR与上游序列的结合促进了能够进行转录起始的激活剂寡聚体形式的组装。

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