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Biology of the PmrA/PmrB Two-Component System: The Major Regulator of Lipopolysaccharide Modifications

机译:PmrA / PmrB两组分系统的生物学:脂多糖修饰的主要调节剂。

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The ability of gram-negative bacteria to resist killing by antimicrobial agents and to avoid detection by host immune systems often entails modification to the lipopolysaccharide (LPS) in their outer membrane. In this review, we examine the biology ofthe PmrA/PmrB two-component system, the major regulator of LPS modifications in the enteric pathogen Salmonella enterica. We examine the signals that activate the sensor PmrB and the targets controlled by the transcriptional regulator PmrA. We discuss the PmrA/PmrB-dependent chemical decorations of the LPS and their role in resistance to antibacterial agents. We analyze the feedback mechanisms that modulate the activity and thus output of the PmrA/PmrB system, dictating when, where, and to what extentbacteria modify their LPS. Finally, we explore the qualitative and quantitative differences in gene expression outputs resulting from the distinct PmrA/PmrB circuit architectures in closely related bacteria, which may account for their differential survival in various ecological niches.
机译:革兰氏阴性细菌抵抗被抗菌剂杀死的能力和避免被宿主免疫系统检测的能力通常需要对其外膜中的脂多糖(LPS)进行修饰。在这篇综述中,我们研究了PmrA / PmrB两组分系统的生物学特性,这是肠道病原体肠沙门氏菌中LPS修饰的主要调节剂。我们检查激活传感器PmrB的信号和受转录调节因子PmrA控制的靶标。我们讨论了LPS的PmrA / PmrB依赖的化学装饰及其在抗细菌剂中的作用。我们分析了反馈机制,这些机制调节了PmrA / PmrB系统的活动,从而调节了其输出,指示细菌何时,何地以及在多大程度上改变了他们的LPS。最后,我们探讨了在密切相关的细菌中,不同的PmrA / PmrB电路结构所导致的基因表达输出的质量和数量上的差异,这可能解释了它们在各种生态位中的不同存活率。

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