Arnold Ethan B, Cohn Daniel, Bose Emma, Klingler David, Wolfe Gregory, Jones Alisha N
Department of Chemistry, New York University, 31 Washington Place, NY 10003, United States.
Department of Physics, New York University, 726 Broadway, NY 10003, United States.
Nucleic Acids Res. 2025 Apr 10;53(7). doi: 10.1093/nar/gkaf290.
Small molecule chemical probes that covalently bond atoms of flexible nucleotides are widely employed in RNA structure determination. Atomistic molecular dynamic (MD) simulations recently suggested that RNA-probe binding can be cooperative, leading to measured reactivities that differ from expected trends as probe concentrations are varied. Here, we use selective 2'-hydroxyl acylation analyzed by primer extension (SHAPE), dimethyl sulfate (DMS) chemical probing, and nuclear magnetic resonance (NMR) spectroscopy to explore the relationship between RNA structural dynamics and chemical probe reactivity. Our NMR chemical exchange experiments revealed that SHAPE-reactive base-paired nucleotides exhibit high imino proton exchange rates. Additionally, we find that as the concentration of a probe increases, some nucleotides' modification rates shift unexpectedly. For instance, some base-paired nucleotides that are unreactive at one probe concentration become reactive at another, often corresponding with a shift in the modification rate of the complementary nucleotide. We believe this effect can be harnessed to infer pairing interactions. Lastly, our results suggest that the overmodification of an RNA can impact its conformational dynamics, leading to modulations in the structural ensembles representing the RNA's fold. Our findings suggest an intricate interplay between RNA conformational dynamics and chemical probing reactivity.
与柔性核苷酸的原子共价结合的小分子化学探针被广泛用于RNA结构测定。原子分子动力学(MD)模拟最近表明,RNA与探针的结合可能具有协同性,导致在改变探针浓度时测得的反应性与预期趋势不同。在这里,我们使用通过引物延伸分析的选择性2'-羟基酰化(SHAPE)、硫酸二甲酯(DMS)化学探针和核磁共振(NMR)光谱来探索RNA结构动力学与化学探针反应性之间的关系。我们的NMR化学交换实验表明,SHAPE反应性碱基配对核苷酸表现出高亚氨基质子交换率。此外,我们发现随着探针浓度的增加,一些核苷酸的修饰率会意外地发生变化。例如,一些在一种探针浓度下无反应性的碱基配对核苷酸在另一种浓度下变得有反应性,这通常与互补核苷酸修饰率的变化相对应。我们认为这种效应可用于推断配对相互作用。最后,我们的结果表明,RNA的过度修饰会影响其构象动力学,导致代表RNA折叠的结构集合发生调制。我们的发现表明RNA构象动力学与化学探针反应性之间存在复杂的相互作用。