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RNA, but not protein partners, is directly responsible for translational silencing by a bacterial Hfq-binding small RNA

机译:RNA,而不是蛋白质伴侣,直接由细菌结合Hfq的小RNA引起翻译沉默

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摘要

SgrS is an Hfq-binding small RNA that is induced under glucose phosphate stress in Escherichia coli. It forms a specific ribonucleo-protein complex with Hfq and RNase E resulting in translational repression and rapid degradation of ptsG mRNA, encoding the glucose transporter. Here, we report translational silencing of ptsG mRNA in a defined in vitro system. We demonstrate that SgrS and Hfq are the minimum components for translational silencing to faithfully reproduce the reaction in cells. We show that ptsG-SgrS base pairing is sufficient to cause translational repression when the ptsG mRNA is forced to base pair with SgrS without the help of Hfq. The extent of translational repression correlates with the extent of duplex formation. We conclude that base pairing itself but not Hfq is directly responsible for translational silencing and the major role of Hfq in gene silencing is to stimulate the base pairing between SgrS and ptsG mRNA. This simple mechanism is in striking contrast to miRNA action in eukaryote in which the RNA is believed to act only as a guide of protein partners.
机译:SgrS是结合Hfq的小RNA,在大肠杆菌的葡萄糖磷酸酯胁迫下被诱导。它与Hfq和RNase E形成特定的核糖核蛋白复合物,导致ptsG mRNA的翻译抑制和快速降解,并编码葡萄糖转运蛋白。在这里,我们报告在定义的体外系统中ptsG mRNA的翻译沉默。我们证明SgrS和Hfq是平移沉默以忠实地在细胞中重现反应的最小成分。我们显示ptsG-SgrS碱基配对足以在不使用Hfq的情况下迫使ptsG mRNA与SgrS碱基配对时引起翻译抑制。翻译抑制的程度与双链体形成的程度相关。我们得出结论,碱基配对本身而不是Hfq直接负责翻译沉默,Hfq在基因沉默中的主要作用是刺激SgrS与ptsG mRNA之间的碱基配对。这种简单的机制与真核生物中的miRNA作用形成了鲜明的对比,后者被认为RNA仅作为蛋白质伴侣的向导。

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