首页> 美国卫生研究院文献>Journal of Bacteriology >Quorum Sensing in Escherichia coli Is Signaled by AI-2/LsrR: Effects on Small RNA and Biofilm Architecture
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Quorum Sensing in Escherichia coli Is Signaled by AI-2/LsrR: Effects on Small RNA and Biofilm Architecture

机译:AI-2 / LsrR发出大肠杆菌中的群体感应信号:对小RNA和生物膜结构的影响。

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摘要

The regulatory network for the uptake of Escherichia coli autoinducer 2 (AI-2) is comprised of a transporter complex, LsrABCD; its repressor, LsrR; and a cognate signal kinase, LsrK. This network is an integral part of the AI-2 quorum-sensing (QS) system. Because LsrR and LsrK directly regulate AI-2 uptake, we hypothesized that they might play a wider role in regulating other QS-related cellular functions. In this study, we characterized physiological changes due to the genomic deletion of lsrR and lsrK. We discovered that many genes were coregulated by lsrK and lsrR but in a distinctly different manner than that for the lsr operon (where LsrR serves as a repressor that is derepressed by the binding of phospho-AI-2 to the LsrR protein). An extended model for AI-2 signaling that is consistent with all current data on AI-2, LuxS, and the LuxS regulon is proposed. Additionally, we found that both the quantity and architecture of biofilms were regulated by this distinct mechanism, as lsrK and lsrR knockouts behaved identically. Similar biofilm architectures probably resulted from the concerted response of a set of genes including flu and wza, the expression of which is influenced by lsrRK. We also found for the first time that the generation of several small RNAs (including DsrA, which was previously linked to QS systems in Vibrio harveyi) was affected by LsrR. Our results suggest that AI-2 is indeed a QS signal in E. coli, especially when it acts through the transcriptional regulator LsrR.
机译:摄取大肠杆菌自动诱导剂2(AI-2)的调控网络由转运复合物LsrABCD组成。其阻遏物LsrR;和相关的信号激酶LsrK。该网络是AI-2群体感应(QS)系统的组成部分。由于LsrR和LsrK直接调节AI-2的摄取,因此我们假设它们可能在调节其他QS相关的细胞功能中起更广泛的作用。在这项研究中,我们表征了由于lsrR和lsrK基因组缺失而引起的生理变化。我们发现,许多基因被lsrK和lsrR调控,但与lsr操纵子(其中LsrR充当阻遏物,但由于磷酸化AI-2与LsrR蛋白质的结合而被阻遏)相比,它们的表达方式明显不同。提出了与AI-2,LuxS和LuxS规则上的所有当前数据一致的AI-2信令扩展模型。此外,我们发现,由于lsrK和lsrR基因敲除的行为相同,因此生物膜的数量和结构均受此独特的机制调控。类似的生物膜结构可能是由包括flu和wza在内的一组基因的协调响应产生的,其表达受lsrRK影响。我们还首次发现LsrR影响了几个小RNA的生成(包括以前与哈维弧菌QS系统相关的DsrA)。我们的结果表明AI-2实际上是大肠杆菌中的QS信号,尤其是当它通过转录调节因子LsrR起作用时。

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