Institute for Molecular Biosciences and Center of Biomolecular Magnetic Resonance (BMRZ), Goethe University Frankfurt, 60438 Frankfurt am Main, Germany.
RNA. 2018 Oct;24(10):1390-1402. doi: 10.1261/rna.067470.118. Epub 2018 Jul 13.
In certain structural or functional contexts, RNA structures can contain protonated nucleotides. However, a direct role for stably protonated nucleotides in ligand binding and ligand recognition has not yet been demonstrated unambiguously. Previous X-ray structures of c-GAMP binding riboswitch aptamer domains in complex with their near-cognate ligand c-di-GMP suggest that an adenine of the riboswitch either forms two hydrogen bonds to a G nucleotide of the ligand in the unusual enol tautomeric form or that the adenine in its N1 protonated form binds the G nucleotide of the ligand in its canonical keto tautomeric state. By using NMR spectroscopy we demonstrate that the c-GAMP riboswitches bind c-di-GMP using a stably protonated adenine in the ligand binding pocket. Thereby, we provide novel insights into the putative biological functions of protonated nucleotides in RNA, which in this case influence the ligand selectivity in a riboswitch.
在某些结构或功能环境中,RNA 结构可以包含质子化的核苷酸。然而,稳定质子化的核苷酸在配体结合和配体识别中的直接作用尚未得到明确证明。先前的 c-GAMP 结合核糖开关适体结构域与它们的近同源配体 c-di-GMP 的 X 射线结构表明,核糖开关中的一个腺嘌呤以烯醇互变异构形式与配体中的一个 G 核苷酸形成两个氢键,或者腺嘌呤以 N1 质子化形式与配体中的 G 核苷酸在其典型的酮式互变异构状态下结合。通过使用 NMR 光谱学,我们证明 c-GAMP 核糖开关使用配体结合口袋中的稳定质子化腺嘌呤结合 c-di-GMP。由此,我们提供了关于 RNA 中质子化核苷酸在假定的生物学功能的新见解,在这种情况下,质子化核苷酸会影响核糖开关中的配体选择性。