Spirito F, Bossi L
Centre de Génétique Moléculaire du CNRS, Gif-sur-Yvette, France.
J Bacteriol. 1996 Dec;178(24):7129-37. doi: 10.1128/jb.178.24.7129-7137.1996.
Expression of the lacZ gene from the supercoiling-sensitive leu-500 promoter on a plasmid in topA mutant cells was stimulated by activating a divergently oriented Tac promoter, 400 bp upstream from leu-500. The stimulation was approximately threefold regardless of whether the Tac promoter drove the expression of the tet gene, whose product is membrane bound, or of the cat gene, whose product is cytosolic. Putting a second copy of the Tac promoter downstream from lacZ, approximately 3,000 bp from leu-500 in the same orientation as the latter, resulted in 30-fold increase in lacZ expression upon isopropyl-beta-D-thiogalactopyranoside induction. Again, these effects were independent of the nature of the gene upstream from leu-500 (tet or cat). With both tet- and cat-harboring constructs, activation of the two Tac promoter copies caused plasmid DNA to become hypernegatively supercoiled in topA mutant cells. Thus, neither leu-500 activation nor hypernegative plasmid DNA supercoiling appears to require membrane anchoring of DNA in this system. Replacing the downstream copy of Tac with a constitutive promoter resulted in high-level lacZ expression even when the upstream copy was repressed. Under these conditions, no hypernegative DNA supercoiling was observed, indicating that the activity of plasmid-borne leu-500 in topA mutant cells does not necessarily correlate with the linking deficit of plasmid DNA. The response of the leu-500-lacZ fusion to downstream transcription provides a sensitive assay for transcriptional supercoiling in bacteria.
在topA突变细胞中,通过激活位于leu - 500上游400 bp处的反向Tac启动子,可刺激质粒上对超螺旋敏感的leu - 500启动子的lacZ基因表达。无论Tac启动子驱动的是膜结合产物的tet基因表达,还是胞质产物的cat基因表达,这种刺激作用都约为三倍。在lacZ下游放置第二个Tac启动子拷贝,与leu - 500同向,距离约3000 bp,经异丙基 - β - D - 硫代半乳糖苷诱导后,lacZ表达增加30倍。同样,这些效应与leu - 500上游基因(tet或cat)的性质无关。对于携带tet和cat的构建体,两个Tac启动子拷贝的激活都会使topA突变细胞中的质粒DNA高度负超螺旋化。因此,在该系统中,leu - 500的激活和高度负超螺旋的质粒DNA似乎都不需要DNA的膜锚定。用组成型启动子替换Tac的下游拷贝,即使上游拷贝被抑制,也会导致lacZ高水平表达。在这些条件下,未观察到高度负超螺旋的DNA,这表明topA突变细胞中质粒携带的leu - 500的活性不一定与质粒DNA的连接缺陷相关。leu - 500 - lacZ融合对下游转录的反应为细菌转录超螺旋提供了一种灵敏的检测方法。