Institute for Molecular Infection Biology, University of Würzburg, D-97080 Würzburg, Germany.
Proc Natl Acad Sci U S A. 2010 Nov 23;107(47):20435-40. doi: 10.1073/pnas.1009784107. Epub 2010 Nov 8.
The abundant class of bacterial Hfq-associated small regulatory RNAs (sRNAs) parallels animal microRNAs in their ability to control multiple genes at the posttranscriptional level by short and imperfect base pairing. In contrast to the universal length and seed pairing mechanism of microRNAs, the sRNAs are heterogeneous in size and structure, and how they regulate multiple targets is not well understood. This paper provides evidence that a 5' located sRNA domain is a critical element for the control of a large posttranscriptional regulon. We show that the conserved 5' end of RybB sRNA recognizes multiple mRNAs of Salmonella outer membrane proteins by ≥7-bp Watson-Crick pairing. When fused to an unrelated sRNA, the 5' domain is sufficient to guide target mRNA degradation and maintain σ(E)-dependent envelope homeostasis. RybB sites in mRNAs are often conserved and flanked by 3' adenosine. They are found in a wide sequence window ranging from the upstream untranslated region to the deep coding sequence, indicating that some targets might be repressed at the level of translation, whereas others are repressed primarily by mRNA destabilization. Autonomous 5' domains seem more common in sRNAs than appreciated and might improve the design of synthetic RNA regulators.
细菌 Hfq 相关的小调控 RNA(sRNA)种类丰富,它们能够通过短而不完全的碱基配对在转录后水平控制多个基因,这与动物 microRNA 的能力相似。与 microRNA 的普遍长度和种子配对机制不同,sRNA 在大小和结构上存在异质性,其如何调节多个靶标尚不清楚。本文提供了证据表明,5' 定位的 sRNA 结构域是控制大型转录后调控子的关键要素。我们表明,RybB sRNA 的保守 5' 端通过≥7 个碱基的 Watson-Crick 配对识别沙门氏菌外膜蛋白的多个 mRNA。当与不相关的 sRNA 融合时,5' 结构域足以指导靶 mRNA 的降解并维持σ(E)依赖性包膜稳态。mRNA 中的 RybB 位点通常是保守的,并被 3' 腺苷侧翼。它们存在于广泛的序列窗口中,从上游非翻译区到深编码序列,表明一些靶标可能在翻译水平受到抑制,而其他靶标主要通过 mRNA 不稳定化受到抑制。自主 5' 结构域在 sRNA 中似乎比人们想象的更为常见,可能会改进合成 RNA 调节剂的设计。