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首页> 外文期刊>Archives of Microbiology >Differential expression of the transcription factors MarA, Rob, and SoxS of Salmonella Typhimurium in response to sodium hypochlorite: down-regulation of rob by MarA and SoxS
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Differential expression of the transcription factors MarA, Rob, and SoxS of Salmonella Typhimurium in response to sodium hypochlorite: down-regulation of rob by MarA and SoxS

机译:鼠伤寒沙门氏菌转录因子MarA,Rob和SoxS对次氯酸钠的差异表达:MarA和SoxS对rob的下调

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To survive, Salmonella enterica serovar Typhimurium (S. Typhimurium) must sense signals found in phagocytic cells and modulate gene expression. In the present work, we evaluated the expression and cross-regulation of the transcription factors MarA, Rob, and SoxS in response to NaOCl. We generated strains ΔsoxS and ΔmarA, which were 20 times more sensitive to NaOCl as compared to the wild-type strain; while Δrob only 5 times. Subsequently, we determined that marA and soxS transcript and protein levels were increased while those of rob decreased in a wild-type strain treated with NaOCl. To assess if changes in S. Typhimurium after exposure to NaOCl were due to a cross-regulation, as in Escherichia coli, we evaluated the expression of marA, soxS, and rob in the different genetic backgrounds. The positive regulation observed in the wild-type strain of marA and soxS was retained in the Δrob strain. As in the wild-type strain, rob was down-regulated in the ΔmarA and ΔsoxS treated with NaOCl; however, this effect was decreased. Since rob was down-regulated by both factors, we generated a ΔmarA ΔsoxS strain finding that the negative regulation was abolished, confirming our hypothesis. Electrophoretic mobility shift assays using MarA and SoxS confirmed an interaction with the promoter of rob.
机译:为了生存,肠炎沙门氏菌鼠伤寒沙门氏菌(S. Typhimurium)必须感应吞噬细胞中发现的信号并调节基因表达。在本工作中,我们评估了响应NaOCl的转录因子MarA,Rob和SoxS的表达和交叉调控。我们生成的菌株ΔsoxS和ΔmarA,对NaOCl的敏感性是野生型菌株的20倍;而Δrob只有5次。随后,我们确定在用NaOCl处理的野生型菌株中,marA和soxS转录本和蛋白质水平升高,而rob则降低。为了评估暴露于NaOCl后的鼠伤寒沙门氏菌的变化是否是由于交叉调控引起的,例如在大肠杆菌中,我们评估了marA,soxS和rob在不同遗传背景下的表达。在marA和soxS的野生型菌株中观察到的阳性调控保留在Δrob菌株中。与野生型菌株一样,用NaOCl处理的ΔmarA和ΔsoxS中的rob降低。但是,这种效果减弱了。由于rob被这两个因素下调,我们产生了ΔmarAΔsoxS菌株,发现消除了负调控,从而证实了我们的假设。使用MarA和SoxS进行的电泳迁移率变动分析证实了与rob启动子的相互作用。

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