Means John A, Wolf Steffen, Agyeman Akwasi, Burton Jeremy S, Simson Crystal M, Hines Jennifer V
Department of Chemistry & Biochemistry, Ohio University, Athens, OH 45701, USA.
Chem Biol Drug Des. 2007 Feb;69(2):139-45. doi: 10.1111/j.1747-0285.2007.00476.x.
A unique RNA-RNA interaction occurs between uncharged tRNA and the untranslated mRNA leader region of bacterial T box genes. The interaction results in activation of a transcriptional antitermination molecular switch (riboswitch) by stabilizing an antiterminator RNA element and precluding formation of a competing transcriptional terminator RNA element. The stabilization requires the base pairing of cognate tRNA acceptor end nucleotides with the antiterminator. To develop an appropriate model system for detailed structural studies and to screen for small molecule disruption of this important RNA-RNA interaction, steady-state fluorescence measurements of antiterminator model RNAs were used to determine the dissociation constant for model tRNA binding. The antiterminator-binding affinity for the full, minihelix, microhelix, and tetramer tRNA models differed by orders of magnitude. In addition, not all of the tRNA models exhibited functionally relevant binding specificity. The results from these experiments highlight the importance of looking beyond the level of known base pairing interactions when designing functionally relevant models of riboswitch systems.
在空载tRNA与细菌T盒基因的非翻译mRNA前导区之间会发生一种独特的RNA-RNA相互作用。这种相互作用通过稳定抗终止子RNA元件并阻止竞争性转录终止子RNA元件的形成,从而激活转录抗终止分子开关(核糖开关)。这种稳定作用需要同源tRNA受体末端核苷酸与抗终止子进行碱基配对。为了开发用于详细结构研究的合适模型系统,并筛选破坏这种重要RNA-RNA相互作用的小分子,利用抗终止子模型RNA的稳态荧光测量来确定模型tRNA结合的解离常数。抗终止子对完整tRNA模型、小螺旋tRNA模型、微螺旋tRNA模型和四聚体tRNA模型的结合亲和力相差几个数量级。此外,并非所有tRNA模型都表现出功能相关的结合特异性。这些实验结果突出了在设计核糖开关系统的功能相关模型时,超越已知碱基配对相互作用层面进行研究的重要性。