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Analysis of Autoinducer-2 Quorum Sensing in Yersinia pestis

机译:鼠疫耶尔森氏菌Autoinducer-2群体感应分析

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摘要

The autoinducer-2 (AI-2) quorum-sensing system has been linked to diverse phenotypes and regulatory changes in pathogenic bacteria. In the present study, we performed a molecular and biochemical characterization of the AI-2 system in Yersinia pestis, the causative agent of plague. In strain CO92, the AI-2 signal is produced in a luxS-dependent manner, reaching maximal levels of 2.5 μM in the late logarithmic growth phase, and both wild-type and pigmentation (pgm) mutant strains made equivalent levels of AI-2. Strain CO92 possesses a chromosomal lsr locus encoding factors involved in the binding and import of AI-2, and confirming this assignment, an lsr deletion mutant increased extracellular pools of AI-2. To assess the functional role of AI-2 sensing in Y. pestis, microarray studies were conducted by comparing Δpgm strain R88 to a Δpgm ΔluxS mutant or a quorum-sensing-null Δpgm ΔypeIR ΔyspIR ΔluxS mutant at 37°C. Our data suggest that AI-2 quorum sensing is associated with metabolic activities and oxidative stress genes that may help Y. pestis survive at the host temperature. This was confirmed by observing that the luxS mutant was more sensitive to killing by hydrogen peroxide, suggesting a potential requirement for AI-2 in evasion of oxidative damage. We also show that a large number of membrane protein genes are controlled by LuxS, suggesting a role for quorum sensing in membrane modeling. Altogether, this study provides the first global analysis of AI-2 signaling in Y. pestis and identifies potential roles for the system in controlling genes important to disease.
机译:autoinducer-2(AI-2)群体感应系统已与致病菌的各种表型和调节变化联系在一起。在本研究中,我们对鼠疫耶尔森氏菌(鼠疫的致病菌)中的AI-2系统进行了分子和生化表征。在CO92菌株中,AI-2信号以luxS依赖性方式产生,在对数生长期后期达到2.5μM的最大水平,野生型和色素沉着(pgm)突变菌株均使AI-2的水平相同。菌株CO92具有与AI-2的结合和导入有关的染色体lsr基因座编码因子,并证实了这一分配,一个lsr缺失突变体增加了AI-2的细胞外池。为了评估AI-2感测在鼠疫耶尔森氏菌中的功能作用,通过在37°C下比较Δpgm菌株R88与ΔpgmΔluxS突变体或群体感应无效ΔpgmΔypeIRΔyspIRΔluxS突变体进行了微阵列研究。我们的数据表明AI-2群体感应与代谢活动和氧化应激基因有关,这些基因可能有助于鼠疫耶尔森菌在宿主温度下存活。通过观察发现,luxS突变体对过氧化氢杀伤更为敏感,这表明在逃避氧化损伤中可能需要AI-2。我们还显示,大量的膜蛋白基因受LuxS的控制,表明群体感应在膜建模中的作用。总而言之,这项研究提供了鼠疫耶尔森氏菌AI-2信号的首次全球分析,并确定了该系统在控制对疾病重要的基因中的潜在作用。

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