Tu Kimberly C, Bassler Bonnie L
Department of Molecular Biology, Princeton University, Princeton, New Jersey 08544, USA.
Genes Dev. 2007 Jan 15;21(2):221-33. doi: 10.1101/gad.1502407.
Quorum sensing is a cell-cell communication mechanism that bacteria use to collectively regulate gene expression and, at a higher level, to coordinate group behavior. In the bioluminescent marine bacterium Vibrio harveyi, sensory information from three independent quorum-sensing systems converges on the shared response regulator LuxO. When LuxO is phosphorylated, it activates the expression of a putative repressor that destabilizes the mRNA encoding the master quorum-sensing transcriptional regulator LuxR. In the closely related species Vibrio cholerae, this repressor was revealed to be the RNA chaperone Hfq together with four small regulatory RNAs (sRNAs) called Qrr1-4 (quorum regulatory RNA). Here, we identify five Qrr sRNAs that control quorum sensing in V. harveyi. Mutational analysis reveals that only four of the five Qrrs are required for destabilization of the luxR mRNA. Surprisingly, unlike in V. cholerae where the sRNAs act redundantly, in V. harveyi, the Qrr sRNAs function additively to control quorum sensing. This latter mechanism produces a gradient of LuxR that, in turn, enables differential regulation of quorum-sensing target genes. Other regulators appear to be involved in control of V. harveyi qrr expression, allowing the integration of additional sensory information into the regulation of quorum-sensing gene expression.
群体感应是一种细胞间通讯机制,细菌利用它来共同调节基因表达,并在更高层次上协调群体行为。在发光海洋细菌哈氏弧菌中,来自三个独立群体感应系统的传感信息汇聚到共享的应答调节因子LuxO上。当LuxO被磷酸化时,它会激活一种假定的阻遏物的表达,该阻遏物会使编码主要群体感应转录调节因子LuxR的mRNA不稳定。在密切相关的霍乱弧菌中,这种阻遏物被发现是RNA伴侣蛋白Hfq以及四种名为Qrr1 - 4(群体调节RNA)的小调节RNA(sRNA)。在这里,我们鉴定出了控制哈氏弧菌群体感应的五种Qrr sRNA。突变分析表明,五种Qrr中只有四种是使luxR mRNA不稳定所必需的。令人惊讶的是,与霍乱弧菌中sRNA发挥冗余作用不同,在哈氏弧菌中,Qrr sRNA以累加的方式发挥作用来控制群体感应。后一种机制产生了LuxR梯度,进而使得群体感应靶基因能够进行差异调节。其他调节因子似乎参与了哈氏弧菌qrr表达的控制,从而允许将额外的传感信息整合到群体感应基因表达的调节中。