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Transcriptional Cross Talk within the mar-sox-rob Regulon in Escherichia coli Is Limited to the rob and marRAB Operons

机译:大肠杆菌mar-sox-rob Regulon中的转录相声仅限于rob和marRAB操纵子

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摘要

Bacteria possess multiple mechanisms to survive exposure to various chemical stresses and antimicrobial compounds. In the enteric bacterium Escherichia coli, three homologous transcription factors—MarA, SoxS, and Rob—play a central role in coordinating this response. Three separate systems are known to regulate the expression and activities of MarA, SoxS, and Rob. However, a number of studies have shown that the three do not function in isolation but rather are coregulated through transcriptional cross talk. In this work, we systematically investigated the extent of transcriptional cross talk in the mar-sox-rob regulon. While the three transcription factors were found to have the potential to regulate each other's expression when ectopically expressed, the only significant interactions observed under physiological conditions were between mar and rob systems. MarA, SoxS, and Rob all activate the marRAB promoter, more so when they are induced by their respective inducers: salicylate, paraquat, and decanoate. None of the three proteins affects the soxS promoter, though unexpectedly, it was mildly repressed by decanoate by an unknown mechanism. SoxS is the only one of the three proteins to repress the rob promoter. Surprisingly, salicylate somewhat activates transcription of rob, while decanoate represses it a bit. Rob, in turn, activates not only its downstream promoters in response to salicylate but also the marRAB promoter. These results demonstrate that the mar and rob systems function together in response to salicylate.
机译:细菌具有多种机制,可以抵抗各种化学胁迫和抗菌化合物的侵害。在肠细菌大肠杆菌中,三个同源转录因子(MarA,SoxS和Rob)在协调此反应中起着核心作用。已知三个独立的系统可调节MarA,SoxS和Rob的表达和活性。但是,许多研究表明,这三个功能不是孤立运行的,而是通过转录串扰相互关联的。在这项工作中,我们系统地研究了mar-sox-rob regulon中转录串扰的程度。虽然发现三个转录因子在异位表达时有可能调节彼此的表达,但在生理条件下观察到的唯一重要相互作用是在mar和rob系统之间。 MarA,SoxS和Rob均激活marRAB启动子,在由各自的诱导剂(水杨酸酯,百草枯和癸酸酯)诱导时更是如此。这三种蛋白质均未影响soxS启动子,尽管出乎意料的是,癸酸通过未知机制对其产生了轻微的抑制作用。 SoxS是抑制rob启动子的三种蛋白质中的唯一一种。出人意料的是,水杨酸酯多少会激活rob的转录,而癸酸酯会稍微抑制它。反过来,Rob不仅响应水杨酸酯激活其下游启动子,而且还激活marRAB启动子。这些结果表明,mar和rob系统共同响应水杨酸酯的功能。

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