Department of Natural Resource Sciences, McGill University, Sainte-Anne-de-Bellevue, Quebec, Canada.
Sci Rep. 2018 Apr 30;8(1):6764. doi: 10.1038/s41598-018-24263-9.
Surviving the nutrient-poor aquatic environment for extended periods of time is important for the transmission of various water-borne pathogens, including Legionella pneumophila (Lp). Previous work concluded that the stringent response and the sigma factor RpoS are essential for the survival of Lp in water. In the present study, we investigated the role of the LetA/S two-component signal transduction system in the successful survival of Lp in water. In addition to cell size reduction in the post-exponential phase, LetS also contributes to cell size reduction when Lp is exposed to water. Importantly, absence of the sensor kinase results in a significantly lower survival as measured by CFUs in water at various temperatures and an increased sensitivity to heat shock. According to the transcriptomic analysis, LetA/S orchestrates a general transcriptomic downshift of major metabolic pathways upon exposure to water leading to better culturability, and likely survival, suggesting a potential link with the stringent response. However, the expression of the LetA/S regulated small regulatory RNAs, RsmY and RsmZ, is not changed in a relAspoT mutant, which indicates that the stringent response and the LetA/S response are two distinct regulatory systems contributing to the survival of Lp in water.
在富含营养的水生环境中长时间生存对于各种水传播病原体的传播非常重要,包括嗜肺军团菌(Lp)。先前的工作得出结论,严格反应和 sigma 因子 RpoS 对于 Lp 在水中的生存是必不可少的。在本研究中,我们研究了 LetA/S 双组分信号转导系统在 Lp 在水中成功生存中的作用。除了指数后期细胞大小减小外,当 Lp 暴露于水时,LetS 还会导致细胞大小减小。重要的是,传感器激酶的缺失会导致在不同温度下的水中 CFU 测量时存活能力显著降低,并且对热休克的敏感性增加。根据转录组分析,LetA/S 在暴露于水时协调主要代谢途径的一般转录组下调,从而提高了可培养性,并且可能提高了存活能力,表明与严格反应之间存在潜在联系。然而,在 relAspoT 突变体中,LetA/S 调节的小调控 RNA,RsmY 和 RsmZ 的表达没有改变,这表明严格反应和 LetA/S 反应是两个不同的调节系统,有助于 Lp 在水中的生存。