Bowater R P, Chen D, Lilley D M
CRC Nucleic Acid Structure Research Group, Department of Biochemistry, The University, Dundee, U.K.
Biochemistry. 1994 Aug 9;33(31):9266-75. doi: 10.1021/bi00197a030.
Our previous studies have indicated that the leu-500 promoter of Salmonella typhimurium is activated by local supercoiling arising from the transcription of a divergent promoter (Chen et al., 1992). For this to occur on a plasmid, we have shown that the transcribing RNA polymerase must be anchored to the cell membrane by transcription, translation, and export of the tetA gene and that the cell background must be topA. In this study we have used (AT)n reporter sequences to analyze changes in unconstrained supercoiling of plasmid DNA under the circumstances in which the leu-500 promoter becomes activated. (AT)n sequences undergo a structural transition to a cruciform at a threshold level of negative supercoiling that is determined by the length of the tract, and this can be detected in the cellular DNA by in situ chemical probing. These studies have shown that there is elevated unconstrained supercoiling in tetA-carrying plasmids in either Escherichia coli or S. typhimurium cells in exponential growth. This oversupercoiling depends on the function of the tetA gene in cis and the delta topA cell background. These are exactly the conditions that lead to the activation of the leu-500 promoter, supporting the proposed mechanism for the suppression of the leu-500 mutation by topA. Use of (AT)n sequences of different lengths has permitted us to estimate the extent of oversupercoiling. When the tetA gene was initiated using the strong tac promoter, we were able to detect increased unconstrained DNA supercoiling even in topA+ E. coli cells.
我们之前的研究表明,鼠伤寒沙门氏菌的leu - 500启动子可被由一个反向启动子转录产生的局部超螺旋激活(Chen等人,1992年)。为了使这种情况在质粒上发生,我们已经证明,转录的RNA聚合酶必须通过tetA基因的转录、翻译和输出锚定在细胞膜上,并且细胞背景必须是topA。在本研究中,我们使用(AT)n报告序列来分析在leu - 500启动子被激活的情况下质粒DNA无约束超螺旋的变化。(AT)n序列在由片段长度决定的负超螺旋阈值水平下会发生结构转变形成十字形,这可以通过原位化学探测在细胞DNA中检测到。这些研究表明,在指数生长期的大肠杆菌或鼠伤寒沙门氏菌细胞中,携带tetA的质粒中无约束超螺旋升高。这种过度超螺旋依赖于tetA基因的顺式作用功能和delta topA细胞背景。而这些恰好是导致leu - 500启动子激活的条件,支持了topA抑制leu - 500突变的 proposed 机制。使用不同长度的(AT)n序列使我们能够估计过度超螺旋的程度。当使用强tac启动子启动tetA基因时,我们甚至在topA +大肠杆菌细胞中也能检测到无约束DNA超螺旋增加。