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σB Activation under Environmental and Energy Stress Conditions in Listeria monocytogenes

机译:单核细胞增生李斯特菌在环境和能量胁迫条件下的σB活化

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To measure σB activation in Listeria monocytogenes under environmental or energy stress conditions, quantitative reverse transcriptase PCR (TaqMan) was used to determine the levels of transcripts for the σB-dependent opuCA and clpC genes in strains having null mutations in genes encoding regulator of sigma B proteins (rsbT and rsbV) and sigma B (sigB) and in the L. monocytogenes wild-type 10403S strain under different stress conditions. The ΔsigB, ΔrsbT, and ΔrsbV strains previously exhibited increased hemolytic activities compared to the hemolytic activity of the wild-type strain; therefore, transcript levels for hly were also determined. RsbT, RsbV, and σB were all required for opuCA expression during growth under carbon-limiting conditions or following exposure to pH 4.5, salt, ethanol, or the protonophore carbonyl cyanide m-chlorophenylhydrazone (CCCP). Expression of clpC was RsbT, RsbV, and σB dependent in the presence of CCCP but not under the other conditions. hly expression was not RsbT, RsbV, or σB dependent in the presence of either CCCP or salt. opuCA transcript levels did not increase in the presence of rapidly lethal stresses (i.e., pH 2.5 or 13 mM cumene hydroperoxide) despite the enhanced survival of the wild type compared with the survival of the mutant strains under these conditions. These findings highlight the importance of complementing phenotypic characterizations with gene expression studies to identify direct and indirect effects of null mutations in regulatory genes, such as sigB. Overall, our data show that while σB activation occurs through a single pathway under both environmental and energy stress conditions, regulation of expression of some stress response and virulence genes in the σB regulon (e.g., clpC) appears to require networks involving multiple transcriptional regulators.
机译:为了在环境或能量胁迫条件下测量单核细胞增生李斯特菌中的σB活化,使用定量逆转录酶PCR(TaqMan)来确定σB调节因子编码基因中无突变的菌株中σB依赖性opuCA和clpC基因的转录水平。蛋白(rsbT和rsbV)和sigma B(sigB)以及单核细胞增生李斯特菌野生型10403S菌株在不同胁迫条件下的表达。与野生型菌株的溶血活性相比,之前的ΔsigB,ΔrsbT和ΔrsbV菌株显示出更高的溶血活性。因此,还确定了hly的转录水平。 RsbT,RsbV和σB都是碳限制条件下生长或暴露于pH 4.5,盐,乙醇或质子体羰基氰化物间氯苯基hydr(CCCP)后在opuCA表达所必需的。在CCCP存在下,clpC的表达取决于RsbT,RsbV和σB,但在其他条件下则不依赖。在CCCP或盐存在下,hly表达不依赖RsbT,RsbV或σB。尽管在突变条件下野生型的存活率有所提高,但在存在快速致死应激(即pH 2.5或13 mM异丙苯氢过氧化物)的情况下,opuCA转录水平并未提高。这些发现凸显了用基因表达研究补充表型特征以鉴定调节基因(例如sigB)无效突变的直接和间接影响的重要性。总体而言,我们的数据表明,尽管在环境和能量胁迫条件下σB激活都通过单一途径发生,但σB调节子中某些胁迫反应和毒力基因(例如clpC)的表达调控似乎需要涉及多个转录调节因子的网络。

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