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由串联的四环素操纵子O1和O2对Tn10编码的四环素抗性基因tetA和tetR进行差异调控。

Differential regulation of the Tn10-encoded tetracycline resistance genes tetA and tetR by the tandem tet operators O1 and O2.

作者信息

Meier I, Wray L V, Hillen W

机构信息

Lehrstuhl für Mikrobiologie, Friedrich-Alexander-Universität, Erlangen, FRG.

出版信息

EMBO J. 1988 Feb;7(2):567-72. doi: 10.1002/j.1460-2075.1988.tb02846.x.

Abstract

The Tn10-encoded tet transcriptional control sequence consists of bidirectional, overlapping promoters which are superimposed by a tandem operator arrangement. Three mutations have been constructed by oligonucleotide-directed mutagenesis which reduce binding of Tet repressor to either one or both of the tandem tet operators 1000-fold as determined by DNAseI footprinting in vitro. The affinity of Tet repressor for mutant tet operators is not affected by the presence of an already occupied neighbouring wild-type operator, indicating little or no cooperativity. The regulation of the divergently oriented tet promoters PA and PR by the tet operators O1 and O2 and Tet repressor provided in trans is determined using transcriptional fusions of the promoters to lacZ and galK indicator genes located with different polarity on the same plasmid. The results demonstrate that expression of the resistance gene tetA is regulated by Tet repressor bound to either O1 or O2. Expression of the repressor gene tetR is only marginally reduced when Tet repressor is bound to O2. This result is discussed with respect to the double promoter structure found for PR. Occupation of O1 with Tet repressor turns off transcription from PR completely. The implications of these findings on the establishment of tetracycline resistance upon induction are discussed.

摘要

Tn10编码的tet转录控制序列由双向重叠启动子组成,这些启动子被串联的操纵子排列所叠加。通过寡核苷酸定向诱变构建了三个突变体,体外DNA酶I足迹法测定结果表明,这些突变体可使Tet阻遏物与串联tet操纵子中的一个或两个的结合减少1000倍。Tet阻遏物对突变型tet操纵子的亲和力不受相邻野生型操纵子是否已被占据的影响,这表明协同作用很小或不存在。利用启动子与位于同一质粒上不同极性的lacZ和galK指示基因的转录融合,确定了反式提供的tet操纵子O1和O2以及Tet阻遏物对方向相反的tet启动子PA和PR的调控。结果表明,抗性基因tetA的表达受与O1或O2结合的Tet阻遏物调控。当Tet阻遏物与O2结合时,阻遏物基因tetR的表达仅略有降低。结合PR的双启动子结构对这一结果进行了讨论。Tet阻遏物占据O1会完全关闭PR的转录。讨论了这些发现对诱导后四环素抗性建立的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8866/454355/e837f726044b/emboj00139-0268-a.jpg

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