Department of Biochemistry, Ohio State University, Columbus, OH 43210, USA.
J Mol Biol. 2011 Jan 28;405(4):926-38. doi: 10.1016/j.jmb.2010.10.056. Epub 2010 Nov 12.
The S(MK) box riboswitch, which represents one of three known classes of S-adenosylmethionine (SAM)-responsive riboswitches, regulates gene expression in bacteria at the level of translation initiation. In contrast to most riboswitches, which contain separate domains responsible for ligand recognition and gene regulation, the ligand-binding and regulatory domains of the S(MK) box riboswitch are coincident. This property was exploited to allow the first atomic-level characterization of a functionally intact riboswitch in both the ligand-bound state and the ligand-free state. NMR spectroscopy revealed distinct mutually exclusive RNA conformations that are differentially populated in the presence or in the absence of the effector metabolite. Isothermal titration calorimetry and in vivo reporter assay results revealed the thermodynamic and functional consequences of this conformational equilibrium. We present a comprehensive model of the structural, thermodynamic, and functional properties of this compact RNA regulatory element.
S(MK)盒核糖开关是已知的三种 S-腺苷甲硫氨酸(SAM)响应型核糖开关之一,它在翻译起始水平上调节细菌中的基因表达。与大多数核糖开关不同,大多数核糖开关包含负责配体识别和基因调控的独立结构域,而 S(MK)盒核糖开关的配体结合和调节结构域是重合的。该特性被利用来首次对功能完整的核糖开关在配体结合状态和无配体状态下进行原子水平的表征。NMR 光谱揭示了在存在或不存在效应代谢物时,具有不同特征的独特互斥 RNA 构象。等温滴定量热法和体内报告基因测定结果揭示了这种构象平衡的热力学和功能后果。我们提出了一个综合模型,用于描述这种紧凑的 RNA 调节元件的结构、热力学和功能特性。