Institute of Organic Chemistry and Center for Molecular Biosciences, University of Innsbruck, Innrain 52a, 6020 Innsbruck, Austria.
Proc Natl Acad Sci U S A. 2010 Jun 15;107(24):10804-9. doi: 10.1073/pnas.0914925107. Epub 2010 Jun 1.
7-Aminomethyl-7-deazaguanine (preQ(1)) sensitive mRNA domains belong to the smallest riboswitches known to date. Although recent efforts have revealed the three-dimensional architecture of the ligand-aptamer complex less is known about the molecular details of the ligand-induced response mechanism that modulates gene expression. We present an in vitro investigation on the ligand-induced folding process of the preQ(1) responsive RNA element from Fusobacterium nucleatum using biophysical methods, including fluorescence and NMR spectroscopy of site-specifically labeled riboswitch variants. We provide evidence that the full-length riboswitch domain adopts two different coexisting stem-loop structures in the expression platform. Upon addition of preQ(1), the equilibrium of the competing hairpins is significantly shifted. This system therefore, represents a finely tunable antiterminator/terminator interplay that impacts the in vivo cellular response mechanism. A model is presented how a riboswitch that provides no obvious overlap between aptamer and terminator stem-loop solves this communication problem by involving bistable sequence determinants.
7-氨甲基-7-脱氮鸟嘌呤(preQ(1))敏感的 mRNA 结构域属于迄今为止已知的最小的核糖开关。尽管最近的研究已经揭示了配体-适体复合物的三维结构,但对于调节基因表达的配体诱导响应机制的分子细节知之甚少。我们使用生物物理方法,包括荧光和 NMR 光谱,对来自具核梭杆菌的 preQ(1)反应性 RNA 元件的配体诱导折叠过程进行了体外研究。我们提供的证据表明,全长核糖开关结构域在表达平台中采用两种不同的共存茎环结构。加入 preQ(1)后,竞争发夹的平衡发生显著偏移。因此,该系统代表了一种精细可调的反终止子/终止子相互作用,影响体内细胞响应机制。提出了一种模型,即提供适体和终止子茎环之间没有明显重叠的核糖开关如何通过涉及双稳态序列决定因素来解决这个通信问题。