Department of Chemistry and Biochemistry, Ohio University, Athens, OH 45701, USA.
Bioorg Med Chem. 2012 Feb 1;20(3):1298-302. doi: 10.1016/j.bmc.2011.12.017. Epub 2011 Dec 16.
The T box riboswitch regulates the transcription of many bacterial genes by structurally responding to cognate non-aminoacylated (uncharged) tRNA. The riboswitch contains multiple conserved RNA elements including a key structural element, the antiterminator, which binds the tRNA acceptor end nucleotides. Previous studies identified a lead 1,4-disubstituted 1,2,3-triazole, GHB-7, that disrupted formation of a tRNA-antiterminator RNA model complex. The affinity and molecular interactions of GHB-7 binding to antiterminator model RNA were characterized as part of a comprehensive T box antiterminator RNA-targeted drug discovery project. In-line probing, UV-monitored thermal denaturation and docking studies all consistently indicated that GHB-7 likely binds to the bulge region of the antiterminator, reduces the flexibility of the bulge nucleotides and, overall, stabilizes the RNA secondary structure. These results begin to elucidate possible mechanisms for ligand-induced inhibition of tRNA binding to T box antiterminator RNA and contribute to the knowledge of how small molecules bind relatively simple RNA structural elements such as bulges.
T 盒核糖开关通过结构响应同源非氨酰化(未加载)tRNA 来调节许多细菌基因的转录。该核糖开关包含多个保守的 RNA 元件,包括关键结构元件反终止子,它与 tRNA 受体末端核苷酸结合。先前的研究确定了一种先导 1,4-二取代 1,2,3-三唑 GHB-7,它破坏了 tRNA-反终止子 RNA 模型复合物的形成。作为全面的 T 盒反终止子 RNA 靶向药物发现项目的一部分,对 GHB-7 与反终止子模型 RNA 的结合亲和力和分子相互作用进行了表征。在线探测、UV 监测的热变性和对接研究都一致表明,GHB-7 可能结合到反终止子的凸起区域,降低凸起核苷酸的灵活性,并且整体上稳定 RNA 二级结构。这些结果开始阐明配体诱导的 tRNA 与 T 盒反终止子 RNA 结合抑制的可能机制,并有助于了解小分子如何结合相对简单的 RNA 结构元件,如凸起。