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铁依赖性调节因子 Fur 控制鱿鱼共生菌费氏弧菌 ES114 中的信息素信号系统和发光。

The iron-dependent regulator fur controls pheromone signaling systems and luminescence in the squid symbiont Vibrio fischeri ES114.

机构信息

Department of Microbiology, University of Georgia, Athens, Georgia, USA.

出版信息

Appl Environ Microbiol. 2013 Mar;79(6):1826-34. doi: 10.1128/AEM.03079-12. Epub 2013 Jan 11.

Abstract

Bacteria often use pheromones to coordinate group behaviors in specific environments. While high cell density is required for pheromones to achieve stimulatory levels, environmental cues can also influence pheromone accumulation and signaling. For the squid symbiont Vibrio fischeri ES114, bioluminescence requires pheromone-mediated regulation, and this signaling is induced in the host to a greater extent than in culture, even at an equivalent cell density. Our goal is to better understand this environment-specific control over pheromone signaling and bioluminescence. Previous work with V. fischeri MJ1 showed that iron limitation induces luminescence, and we recently found that ES114 encounters a low-iron environment in its host. Here we show that ES114 induces luminescence at lower cell density and achieves brighter luminescence in low-iron media. This iron-dependent effect on luminescence required ferric uptake regulator (Fur), which we propose influences two pheromone signaling master regulators, LitR and LuxR. Genetic and bioinformatic analyses suggested that under low-iron conditions, Fur-mediated repression of litR is relieved, enabling more LitR to perform its established role as an activator of luxR. Interestingly, Fur may similarly control the LitR homolog SmcR of Vibrio vulnificus. These results reveal an intriguing regulatory link between low-iron conditions, which are often encountered in host tissues, and pheromone-dependent master regulators.

摘要

细菌通常使用信息素来协调特定环境中的群体行为。虽然高细胞密度是信息素达到刺激水平所必需的,但环境线索也可以影响信息素的积累和信号传递。对于鱿鱼共生菌 Vibrio fischeri ES114 来说,生物发光需要信息素介导的调节,并且这种信号在宿主中被诱导的程度比在培养物中更大,即使在等效的细胞密度下也是如此。我们的目标是更好地理解这种特定于环境的信息素信号和生物发光控制。以前对 V. fischeri MJ1 的研究表明,铁限制诱导发光,我们最近发现 ES114 在其宿主中遇到低铁环境。在这里,我们表明 ES114 在较低的细胞密度下诱导发光,并在低铁介质中实现更亮的发光。这种铁依赖性发光效应需要铁摄取调节剂 (Fur),我们提出它影响两个信息素信号主调节剂 LitR 和 LuxR。遗传和生物信息学分析表明,在低铁条件下,Fur 介导的 litR 抑制被解除,使更多的 LitR 发挥其作为 luxR 激活剂的既定作用。有趣的是,Fur 可能类似地控制 Vibrio vulnificus 的 LitR 同源物 SmcR。这些结果揭示了低铁条件与信息素依赖性主调节剂之间令人着迷的调控联系,低铁条件在宿主组织中经常遇到。

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