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AphA and LuxR/HapR reciprocally control quorum sensing in vibrios.

机译:AphA和LuxR / HapR相互控制弧菌中的群体感应。

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摘要

Bacteria cycle between periods when they perform individual behaviors and periods when they perform group behaviors. These transitions are controlled by a cell-cell communication process called quorum sensing, in which extracellular signal molecules, called autoinducers (AIs), are released, accumulate, and are synchronously detected by a group of bacteria. AI detection results in community-wide changes in gene expression, enabling bacteria to collectively execute behaviors such as bioluminescence, biofilm formation, and virulence factor production. In this study, we show that the transcription factor AphA is a master regulator of quorum sensing that operates at low cell density (LCD) in Vibrio harveyi and Vibrio cholerae. In contrast, LuxR (V. harveyi)/HapR (V. cholerae) is the master regulator that operates at high cell density (HCD). At LCD, redundant small noncoding RNAs (sRNAs) activate production of AphA, and AphA and the sRNAs repress production of LuxR/HapR. Conversely, at HCD, LuxR/HapR represses aphA. This network architecture ensures maximal AphA production at LCD and maximal LuxR/HapR production at HCD. Microarray analyses reveal that 300 genes are regulated by AphA at LCD in V. harveyi, a subset of which is also controlled by LuxR. We propose that reciprocal gradients of AphA and LuxR/HapR establish the quorum-sensing LCD and HCD gene expression patterns, respectively.
机译:细菌在执行个体行为的周期与执行群体行为的周期之间循环。这些过渡由称为群体感应的细胞间通信过程控制,在该过程中,被称为自动诱导剂(AI)的细胞外信号分子被释放,积累并被一组细菌同步检测。 AI检测导致整个社区的基因表达发生变化,从而使细菌能够集体执行诸如生物发光,生物膜形成和毒力因子产生的行为。在这项研究中,我们表明,转录因子AphA是群体感应的主要调节剂,在哈维氏弧菌和霍乱弧菌中以低细胞密度(LCD)运行。相比之下,LuxR(哈维氏弧菌)/ HapR(霍乱弧菌)是在高细胞密度(HCD)下运行的主调节剂。在LCD,多余的小型非编码RNA(sRNA)激活AphA的产生,而AphA和sRNA抑制LuxR / HapR的产生。相反,在HCD,LuxR / HapR抑制aphA。这种网络架构可确保在LCD上产生最大的AphA产量,在HCD上产生最大的LuxR / HapR产量。基因芯片分析显示,哈维氏弧菌LCD上有300个基因受AphA调控,而其中的一个子集也受LuxR控制。我们建议AphA和LuxR / HapR的倒数梯度分别建立群体感应LCD和HCD基因表达模式。

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