Department of Biophysics, Johns Hopkins University, Baltimore, Maryland 21218, United States.
Biochemistry. 2013 Aug 27;52(34):5911-9. doi: 10.1021/bi400529q. Epub 2013 Aug 19.
Cations play a large role in stabilizing the native state of RNA in vivo. In addition to Mg²⁺, putrescine²⁺ is an abundant divalent cation in bacterial cells, but its effect on the folding of RNA tertiary structure has not been widely explored. In this study, we look at how the stabilities of four structured RNAs, each with a different degree of dependence on K⁺ and Mg²⁺, are affected by putrescine²⁺ relative to Mg²⁺. Through the use of thermal melts, we observe that (i) at a given concentration, putrescine²⁺ is less effective than Mg²⁺ at stabilizing RNA, (ii) the stability imparted to RNA by various diamines is a function of charge density (average separation distance between charges) as well as the flexibility of the counterion, and (iii) when Mg²⁺ is already present in a buffer, further addition of putrescine²⁺ may either destabilize or stabilize RNA structure, depending on whether the native RNA does or does not chelate Mg²⁺ ion, respectively. At ion concentrations likely to be found in vivo, the effect of putrescine²⁺ on the free energy of folding of an RNA tertiary structure is probably quite small compared to that of Mg²⁺, but the ability of mixed Mg²⁺/putrescine²⁺ environments to (in effect) discriminate between different RNA architectures suggests that, in some cells, the evolution of functional RNA structures may have been influenced by the presence of putrescine²⁺.
阳离子在稳定体内 RNA 的天然状态方面起着重要作用。除了 Mg²⁺之外,腐胺²⁺是细菌细胞中丰富的二价阳离子,但它对 RNA 三级结构折叠的影响尚未得到广泛探索。在这项研究中,我们研究了四种结构 RNA 的稳定性,每种 RNA 对 K⁺和 Mg²⁺的依赖程度不同,它们受腐胺²⁺影响的程度与 Mg²⁺相比如何。通过使用热融解实验,我们观察到:(i)在给定浓度下,腐胺²⁺不如 Mg²⁺有效地稳定 RNA;(ii)各种二胺赋予 RNA 的稳定性是电荷密度(电荷之间的平均分离距离)和反离子的柔韧性的函数;(iii)当缓冲液中已经存在 Mg²⁺时,进一步添加腐胺²⁺可能会使 RNA 结构不稳定或稳定,具体取决于天然 RNA 是否螯合 Mg²⁺离子。在体内可能存在的离子浓度下,与 Mg²⁺相比,腐胺²⁺对 RNA 三级结构折叠自由能的影响可能很小,但混合 Mg²⁺/腐胺²⁺环境能够(实际上)区分不同的 RNA 结构,这表明在某些细胞中,功能性 RNA 结构的进化可能受到腐胺²⁺的影响。