de Lorenzo V, Herrero M, Metzke M, Timmis K N
GBF-National Research Centre for Biotechnology, Braunschweig, FRG.
EMBO J. 1991 May;10(5):1159-67. doi: 10.1002/j.1460-2075.1991.tb08056.x.
Transcription from promoter Pu of the upper catabolic operon of the Pseudomonas putida TOL plasmid which specifies conversion of toluene/xylenes to benzoate/toluates is activated by the TOL-encoded regulator XylR protein in the presence of substrates of the catabolic pathway and in conjunction with the sigma 54(NtrA)-containing form of RNA polymerase. This regulatory circuit was faithfully reproduced in Escherichia coli in single copy gene dosage by integrating the corresponding controlling determinants into the chromosomes of several K12 derivatives by means of specialized transposons. In vivo monitoring of the activity of a Pu-lacZ fusion in E. coli strains with different genetic backgrounds demonstrated that integration host factor (IHF) is involved in Pu regulation and that hyperproduction of the XylR protein leads to a decrease of Pu activity in a manner in which deletion of the putative DNA-binding domain of the XylR does not impair its inhibitory effect when hyperproduced. One discrete IHF binding site and two potential XylR sites (consensus sequence 5'-TTGANCAAATC-3'), bracketted by short stretches of DNase I-hypersensitive bonds, were detected upstream of the transcription initiation site. A model accounting for the features found is proposed which includes the IHF-promoted looping of upstream XylR-DNA complexes so that they contact the sigma 54(NtrA)-RNA polymerase bound at -12/-24 positions.
恶臭假单胞菌TOL质粒上部分分解代谢操纵子的启动子Pu转录可将甲苯/二甲苯转化为苯甲酸/甲苯酸酯,在分解代谢途径底物存在的情况下,该转录由TOL编码的调控蛋白XylR激活,并与含σ54(NtrA)的RNA聚合酶形式协同作用。通过利用专门的转座子将相应的控制决定簇整合到几种K12衍生物的染色体中,以单拷贝基因剂量在大肠杆菌中忠实地重现了这种调控回路。对具有不同遗传背景的大肠杆菌菌株中Pu-lacZ融合活性的体内监测表明,整合宿主因子(IHF)参与Pu调控,并且XylR蛋白的过量产生导致Pu活性降低,其方式是当XylR过量产生时,其假定的DNA结合结构域的缺失不会损害其抑制作用。在转录起始位点上游检测到一个离散的IHF结合位点和两个潜在的XylR位点(共有序列5'-TTGANCAAATC-3'),两侧有短片段的DNase I超敏键。提出了一个解释所发现特征的模型,该模型包括IHF促进的上游XylR-DNA复合物的环化,从而使它们与结合在-12 / -24位置的σ54(NtrA)-RNA聚合酶接触。