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The phosphotransferase VanU represses expression of four qrr genes antagonizing VanO-mediated quorum-sensing regulation in Vibrio anguillarum

机译:磷酸转移酶VanU抑制拮抗VanO介导的鳗弧菌群体感应调控的四个qrr基因的表达

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摘要

Vibrio anguillarum utilizes quorum sensing to regulate stress responses required for survival in the aquatic environment. Like other Vibrio species, V. anguillarum contains the gene qrr1, which encodes the ancestral quorum regulatory RNA Qrr1, and phosphorelay quorum-sensing systems that modulate the expression of small regulatory RNAs (sRNAs) that destabilize mRNA encoding the transcriptional regulator VanT. In this study, three additional Qrr sRNAs were identified. All four sRNAs were positively regulated by σ54 and the σ54-dependent response regulator VanO, and showed a redundant activity. The Qrr sRNAs, together with the RNA chaperone Hfq, destabilized vanT mRNA and modulated expression of VanT-regulated genes. Unexpectedly, expression of all four qrr genes peaked at high cell density, and exogenously added N-acylhomoserine lactone molecules induced expression of the qrr genes at low cell density. The phosphotransferase VanU, which phosphorylates and activates VanO, repressed expression of the Qrr sRNAs and stabilized vanT mRNA. A model is presented proposing that VanU acts as a branch point, aiding cross-regulation between two independent phosphorelay systems that activate or repress expression of the Qrr sRNAs, giving flexibility and precision in modulating VanT expression and inducing a quorum-sensing response to stresses found in a constantly changing aquatic environment.
机译:鳗弧菌利用群体感应来调节水生环境中生存所需的应激反应。像其他弧菌一样,鳗弧菌包含编码祖先群体调节性RNA Qrr1的基因qrr1和磷酸化群体感应系统,该系统调节小的调节性RNA(sRNA)的表达,从而使编码转录调节子VanT的mRNA不稳定。在这项研究中,确定了三个额外的Qrr sRNA。所有四个sRNA均受σ54和σ54依赖性应答调节因子VanO的正调控,并显示出多余的活性。 Qrr sRNA与RNA伴侣Hfq一起使vanT mRNA不稳定并调节VanT调控基因的表达。出乎意料的是,所有四个qrr基因的表达都在高细胞密度时达到峰值,并且外源添加N-酰基高丝氨酸内酯分子会在低细胞密度时诱导qrr基因的表达。磷酸化并激活VanO的磷酸转移酶VanU抑制Qrr sRNA的表达并稳定vanT mRNA。提出了一个模型,该模型建议VanU充当分支点,帮助激活或抑制Qrr sRNA表达的两个独立磷光体系统之间进行交叉调节,从而在调节VanT表达和诱导对所发现压力的群体感应响应方面具有灵活性和精确性。在不断变化的水生环境中。

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