Whittum Michelle E, Blose Joshua M
a Department of Chemistry and Biochemistry, The College at Brockport , State University of New York , Brockport , New York , USA.
Nucleosides Nucleotides Nucleic Acids. 2017 Sep 2;36(9):583-597. doi: 10.1080/15257770.2017.1375518. Epub 2017 Oct 16.
Osmolytes have the potential to affect the stability of secondary structure motifs and alter preferences for conserved nucleic acid sequences in the cell. To contribute to the understanding of the in vivo function of RNA we observed the effects of different classes of osmolytes on the UNCG tetraloop motif. UNCG tetraloops are the most common and stable of the RNA tetraloops and are nucleation sites for RNA folding. They also have a significant thermodynamic preference for a CG closing base pair. The thermal denaturation of model hairpins containing UUCG loops was monitored using UV-Vis spectroscopy in the presence of osmolytes with different chemical properties. Interestingly, all of the osmolytes tested destabilized the hairpins, but all had little effect on the thermodynamic preference for a CG base pair, except for polyethylene glycol (PEG) 200. PEG 200 destabilized the loop with the CG closing base pair relative to the loop with a GC closing base pair. The destabilization was linear with increasing concentrations of PEG 200, and the slope of this relationship was not perturbed by changes in the hairpin stem outside of the closing pair. This result suggests that in the presence of PEG 200, the UUCG loop with a GC closing base pair may retain some preferential interactions with the cosolute that are lost in the presence of the CG closing base pair. These results reveal that relatively small structural changes may influence how osmolytes tune the stability, and thus the function of a secondary structure motif in vivo.
渗透溶质有可能影响二级结构基序的稳定性,并改变细胞中保守核酸序列的偏好性。为了有助于理解RNA的体内功能,我们观察了不同类型的渗透溶质对UNCG四环基序的影响。UNCG四环是RNA四环中最常见且最稳定的,是RNA折叠的成核位点。它们对CG封闭碱基对也有显著的热力学偏好。在具有不同化学性质的渗透溶质存在下,使用紫外可见光谱监测了含有UUCG环的模型发夹的热变性。有趣的是,所有测试的渗透溶质都使发夹不稳定,但除了聚乙二醇(PEG)200外,所有渗透溶质对CG碱基对的热力学偏好影响很小。相对于具有GC封闭碱基对的环,PEG 200使具有CG封闭碱基对的环不稳定。这种不稳定与PEG 200浓度的增加呈线性关系,并且这种关系的斜率不受封闭对之外的发夹茎变化的干扰。该结果表明,在PEG 200存在下,具有GC封闭碱基对的UUCG环可能保留了一些与共溶质的优先相互作用,而这些相互作用在存在CG封闭碱基对时会丧失。这些结果表明,相对较小的结构变化可能会影响渗透溶质如何调节稳定性,进而影响体内二级结构基序的功能。