Department of Chemistry, University of Illinois atUrbana-Champaign, Urbana, Illinois 61801, USA.
Biochemistry. 2010 Mar 2;49(8):1596-605. doi: 10.1021/bi9019912.
Purine riboswitches are RNA regulatory elements that control purine metabolism in response to intracellular concentrations of the purine ligands. Conformational changes of the guanine riboswitch aptamer domain induced by guanine binding lead to transcriptional regulation of genes involved in guanine biosynthesis. The guanine riboswitch aptamer domain has three RNA helices designated P1, P2, and P3. An overall model for the Mg(2+)- and guanine-dependent relative orientations and dynamics of P1, P2, and P3 has not been reported, and the conformational role of guanine under physiologically relevant conditions has not been fully elucidated. In this study, an ensemble and single-molecule fluorescence resonance energy transfer (FRET) study was performed on three orthogonally labeled variants of the xpt guanine riboswitch aptamer domain. The combined FRET data support a model in which the unfolded state of the aptamer domain has a highly dynamic P2 helix that switches rapidly between two orientations relative to nondynamic P1 and P3. At <<1 mM Mg(2+) (in the presence of a saturating level of guanine) or >or=1 mM Mg(2+) (in the absence of guanine), the riboswitch starts to adopt a folded conformation in which loop-loop interactions lock P2 and P3 into place. At >5 mM Mg(2+), further compaction occurs in which P1 more closely approaches P3. Our data help to explain the biological role of guanine as stabilizing the globally folded aptamer domain conformation at physiologically relevant Mg(2+) concentrations (<or=1 mM), whereas in the absence of guanine, much higher Mg(2+) concentrations are required to induce this folding event.
嘌呤核糖开关是 RNA 调控元件,可根据嘌呤配体在细胞内的浓度来控制嘌呤代谢。嘌呤结合诱导鸟嘌呤核糖开关适体结构域构象变化,导致参与鸟嘌呤合成的基因的转录调控。鸟嘌呤核糖开关适体结构域有三个 RNA 螺旋,分别命名为 P1、P2 和 P3。尚未报道 Mg2+和鸟嘌呤依赖性 P1、P2 和 P3 的相对取向和动力学的总体模型,也未充分阐明生理相关条件下鸟嘌呤的构象作用。在这项研究中,对 xpt 鸟嘌呤核糖开关适体结构域的三个正交标记变体进行了集合和单分子荧光共振能量转移 (FRET) 研究。综合 FRET 数据支持一种模型,其中适体结构域的无规卷曲状态具有高度动态的 P2 螺旋,该螺旋相对于非动态的 P1 和 P3 快速切换到两种取向。在 <<1 mM Mg2+(存在饱和水平的鸟嘌呤)或 >=1 mM Mg2+(不存在鸟嘌呤)时,核糖开关开始采用折叠构象,其中环环相互作用将 P2 和 P3 锁定到位。在 >5 mM Mg2+下,进一步发生紧凑化,其中 P1 更接近 P3。我们的数据有助于解释鸟嘌呤的生物学作用,即稳定生理相关 Mg2+浓度(<=1 mM)下全局折叠适体结构域构象,而在没有鸟嘌呤的情况下,需要更高的 Mg2+浓度来诱导这种折叠事件。