首页> 外文期刊>Journal of bacteriology >RpoS is necessary for both the positive and negative regulation of starvation survival genes during phosphate, carbon, and nitrogen starvation in Salmonella typhimurium.
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RpoS is necessary for both the positive and negative regulation of starvation survival genes during phosphate, carbon, and nitrogen starvation in Salmonella typhimurium.

机译:RpoS对于鼠伤寒沙门氏菌的磷酸盐,碳和氮饥饿中的饥饿生存基因的正向和负向调节都是必需的。

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The starvation stress response of Salmonella typhimurium encompasses the genetic and physiologic changes that occur when this bacterium is starved for an essential nutrient such as phosphate (P), carbon (C), or nitrogen (N). The responses to the limitation of each of these nutrients involve both unique and overlapping sets of proteins important for starvation survival and virulence. The role of the alternative sigma factor RpoS in the regulation of the starvation survival loci, stiA, stiB, and stiC, has been characterized. RpoS (sigma S) was found to be required for the P, C, and N starvation induction of stiA and stiC. In contrast, RpoS was found to be required for the negative regulation of stiB during P and C starvation-induced stationary phase but not during logarithmic phase. This role was independent of the relA gene (previously found to be needed for stiB induction). The role of RpoS alone and in combination with one or more sti mutations in the starvation survival of the organism was also investigated. The results clearly demonstrate that RpoS is an integral component of the complex interconnected regulatory systems involved in S. typhimurium's response to nutrient deprivation. However, differential responses of various sti genes indicate that additional signals and regulatory proteins are also involved.
机译:鼠伤寒沙门氏菌的饥饿应激反应包括当该细菌缺乏必需营养素(例如磷酸盐(P),碳(C)或氮(N))时发生的遗传和生理变化。对每种营养素的局限性的响应都涉及到独特的和重叠的蛋白质组,这些蛋白质对于饥饿的存活和毒力很重要。表征了替代σ因子RpoS在饥饿存活基因座stiA,stiB和stiC的调节中的作用。发现RpoS(sigma S)是stiA和stiC的P,C和N饥饿诱导所必需的。相反,发现在P和C饥饿诱导的静止期中,对stiB的负调控需要RpoS,而对数期则不需要。该作用独立于relA基因(以前发现stiB诱导是必需的)。还研究了RpoS单独以及与一种或多种sti突变组合在生物饥饿中的作用。结果清楚地表明,RpoS是鼠伤寒沙门氏菌对营养剥夺反应所涉及的复杂的相互关联的监管系统的组成部分。但是,各种sti基因的差异反应表明还涉及其他信号和调节蛋白。

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