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A small RNA activates CFA synthase by isoform‐specific mRNA stabilization
Authors:Kathrin Sophie Fröhlich  Kai Papenfort  Agnes Fekete  Jörg Vogel
Institution:1. RNA Biology Group, Institute for Molecular Infection Biology, University of Würzburg, , Würzburg, Germany;2. Pharmaceutical Biology, Julius‐von‐Sachs‐Institute of Biosciences, Biocenter, University of Würzburg, , Würzburg, Germany
Abstract:Small RNAs use a diversity of well‐characterized mechanisms to repress mRNAs, but how they activate gene expression at the mRNA level remains not well understood. The predominant activation mechanism of Hfq‐associated small RNAs has been translational control whereby base pairing with the target prevents the formation of an intrinsic inhibitory structure in the mRNA and promotes translation initiation. Here, we report a translation‐independent mechanism whereby the small RNA RydC selectively activates the longer of two isoforms of cfa mRNA (encoding cyclopropane fatty acid synthase) in Salmonella enterica. Target activation is achieved through seed pairing of the pseudoknot‐exposed, conserved 5′ end of RydC to an upstream region of the cfa mRNA. The seed pairing stabilizes the messenger, likely by interfering directly with RNase E‐mediated decay in the 5′ untranslated region. Intriguingly, this mechanism is generic such that the activation is equally achieved by seed pairing of unrelated small RNAs, suggesting that this mechanism may be utilized in the design of RNA‐controlled synthetic circuits. Physiologically, RydC is the first small RNA known to regulate membrane stability.
Keywords:fatty acid synthesis  Hfq  mRNA activation  noncoding RNA  small RNA
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