Rückriegel Stefanie, Stamatakis Konstantinos, Wachtveitl Josef, Fürtig Boris
Institute of Organic Chemistry and Chemical Biology, Johann Wolfgang Goethe-University Frankfurt, Frankfurt/Main, Hesse 60438, Germany.
Center for Biomolecular Magnetic Resonance (BMRZ), Johann Wolfgang Goethe-University Frankfurt, Frankfurt/Main, Hesse 60438, Germany.
Nucleic Acids Res. 2025 Jun 20;53(12). doi: 10.1093/nar/gkaf560.
Translational riboswitches are bacterial gene regulatory elements located in the 5'-untranslated region of mRNAs. They operate through a conformational refolding reaction that is triggered by a change in concentration of a modulating small molecule ligand. The initially model posited that the two functional states, the ligand-bound and ligand-free state, would only populate two stable conformations. However, the subsequent discoveries of multiple conformations for the apo- and holo-states of riboswitches have rendered this model obsolete. Concomitantly, a comprehensive account of the conformational multistability of riboswitches has remained elusive. In this study, we demonstrate that even the smallest naturally occurring translational riboswitch, the preQ1-sensing riboswitch from Thermoanaerobacter tengcongensis, adopts four distinct and structurally different conformations in the absence of ligand. This is in contrast to structures determined by X-ray crystallography, which reveal only minor deviations between the ligand-free and ligand-bound states. Utilizing NMR-spectroscopic analysis, we characterize the structurally heterogeneous apo-state and depict four distinct conformations that demonstrate varying temperature stabilities. Upon ligand-binding, the folding pathway undergoes kinetic partitioning, thereby enabling regulatory plasticity to integrate multiple environmental inputs for riboswitch-based gene regulation.
翻译核糖开关是位于mRNA 5'非翻译区的细菌基因调控元件。它们通过由调节性小分子配体浓度变化触发的构象重折叠反应发挥作用。最初的模型假定,两种功能状态,即配体结合状态和无配体状态,只会呈现两种稳定构象。然而,随后对核糖开关的脱辅基和全态多种构象的发现使该模型过时。与此同时,对核糖开关构象多稳定性的全面描述仍然难以捉摸。在本研究中,我们证明,即使是最小的天然存在的翻译核糖开关,来自嗜热栖热放线菌的预Q1感应核糖开关,在没有配体的情况下也会采用四种不同且结构不同的构象。这与X射线晶体学确定的结构形成对比,后者仅揭示了无配体状态和配体结合状态之间的微小差异。利用核磁共振光谱分析,我们表征了结构异质的脱辅基状态,并描绘了四种不同的构象,这些构象表现出不同的温度稳定性。在配体结合后,折叠途径经历动力学分配,从而使调控可塑性能够整合多种环境输入,用于基于核糖开关的基因调控。