Department of Molecular Biology, Princeton University, Princeton, NJ, USA.
Mol Microbiol. 2012 Feb;83(3):599-611. doi: 10.1111/j.1365-2958.2011.07959.x. Epub 2012 Jan 9.
Quorum sensing is a mechanism of cell-cell communication that bacteria use to control collective behaviours including bioluminescence, biofilm formation and virulence factor production. In the Vibrio harveyi and Vibrio cholerae quorum-sensing circuits, multiple non-coding small regulatory RNAs called the quorum-regulated small RNAs (Qrr sRNAs) function to establish the global quorum-sensing gene expression pattern by modulating translation of multiple mRNAs encoding quorum-sensing regulatory factors. Here we show that the Qrr sRNAs post-transcriptionally activate production of the low cell density master regulator AphA through base pairing to aphA mRNA, and this is crucial for the accumulation of appropriate levels of AphA protein at low cell density. We find that the Qrr sRNAs use unique pairing regions to discriminate between their different targets. Qrr1 is not as effective as Qrr2-5 in activating aphA because Qrr1 lacks one of two required pairing regions. However, Qrr1 is equally effective as the other Qrr sRNAs at controlling targets like luxR and luxO because it harbours all of the required pairing regions for these targets. Sequence comparisons reveal that Vibrionaceae species possessing only qrr1 do not have the aphA gene under Qrr sRNA control. Our findings suggest co-evolving relationships between particular Qrr sRNAs and particular mRNA targets.
群体感应是一种细菌细胞间通讯的机制,用于控制包括生物发光、生物膜形成和毒力因子产生在内的集体行为。在 Harveyi 弧菌和霍乱弧菌的群体感应回路中,多个非编码的小调控 RNA 被称为群体感应调控小 RNA(Qrr sRNAs),通过调节多个编码群体感应调控因子的 mRNA 的翻译,来建立全局的群体感应基因表达模式。在这里,我们表明 Qrr sRNAs 通过与 aphA mRNA 的碱基配对,转录后激活低细胞密度主调控因子 AphA 的产生,这对于在低细胞密度下积累适当水平的 AphA 蛋白至关重要。我们发现 Qrr sRNAs 使用独特的配对区域来区分它们的不同靶标。Qrr1 不如 Qrr2-5 有效地激活 aphA,因为 Qrr1 缺乏两个必需配对区域之一。然而,Qrr1 在控制像 luxR 和 luxO 这样的靶标时与其他 Qrr sRNAs 同样有效,因为它拥有这些靶标所需的所有配对区域。序列比较表明,只有 qrr1 的 Vibrionaceae 物种的 aphA 基因不受 Qrr sRNA 控制。我们的发现表明,特定的 Qrr sRNAs 和特定的 mRNA 靶标之间存在共同进化的关系。