Lambert Dominic, Draper David E
Department of Chemistry, Johns Hopkins University, Baltimore, MD 21218, USA.
J Mol Biol. 2007 Jul 27;370(5):993-1005. doi: 10.1016/j.jmb.2007.03.080. Epub 2007 May 5.
Osmolytes are small organic molecules accumulated by cells in response to osmotic stress. Although their effects on protein stability have been studied, there has been no systematic documentation of their influence on RNA. Here, the effects of nine osmolytes on the secondary and tertiary structure stabilities of six RNA structures of differing complexity and stability have been surveyed. Using thermal melting analysis, m-values (change in DeltaG degrees of RNA folding per molal concentration of osmolyte) have been measured. All the osmolytes destabilize RNA secondary structure, although to different extents, probably because they favor solubilization of base surfaces. Osmolyte effects on tertiary structure, however, can be either stabilizing or destabilizing. We hypothesize that the stabilizing osmolytes have unfavorable interactions with the RNA backbone, which becomes less accessible to solvent in most tertiary structures. Finally, it was found that as a larger fraction of the negative charge of an RNA tertiary structure is neutralized by hydrated Mg(2+), the RNA becomes less responsive to stabilizing osmolytes and may even be destabilized. The natural selection of osmolytes as protective agents must have been influenced by their effects on the stabilities of functional RNA structures, though in general, the effects of osmolytes on RNA and protein stabilities do not parallel each other. Our results also suggest that some osmolytes can be useful tools for studying intrinsically unstable RNA folds and assessing the mechanisms of Mg(2+)-induced RNA stabilization.
渗透溶质是细胞在应对渗透胁迫时积累的小分子有机化合物。尽管已经研究了它们对蛋白质稳定性的影响,但尚未有关于它们对RNA影响的系统记录。在此,我们研究了9种渗透溶质对6种具有不同复杂性和稳定性的RNA结构的二级和三级结构稳定性的影响。通过热变性分析,测量了m值(每摩尔浓度渗透溶质时RNA折叠的ΔG°变化)。所有渗透溶质都会使RNA二级结构不稳定,尽管程度不同,这可能是因为它们有利于碱基表面的溶解。然而,渗透溶质对三级结构的影响可能是稳定的,也可能是不稳定的。我们推测,具有稳定作用的渗透溶质与RNA主链存在不利相互作用,而在大多数三级结构中,RNA主链对溶剂的可及性降低。最后,研究发现,随着RNA三级结构中更多的负电荷被水合Mg(2+)中和,RNA对具有稳定作用的渗透溶质的反应性降低,甚至可能变得不稳定。渗透溶质作为保护剂的自然选择肯定受到了它们对功能性RNA结构稳定性影响的作用,不过一般来说,渗透溶质对RNA和蛋白质稳定性的影响并不平行。我们的结果还表明,一些渗透溶质可作为研究内在不稳定的RNA折叠以及评估Mg(2+)诱导的RNA稳定机制的有用工具。