Soto Ana Maria, Misra Vinod, Draper David E
Department of Chemistry, Johns Hopkins University, Baltimore, Maryland 21218, USA.
Biochemistry. 2007 Mar 20;46(11):2973-83. doi: 10.1021/bi0616753. Epub 2007 Feb 23.
The aim of this study is to obtain a comprehensive experimental and theoretical description of the contributions of Mg2+ ions to the free energy of folding a pseudoknot RNA tertiary structure. A fluorescence method for measuring the effective concentration of Mg2+ in the presence of an RNA was used to study Mg2+-RNA interactions with both folded and partially unfolded forms of an RNA pseudoknot. These data established the excess number of Mg2+ ions accumulated by the folded or partially unfolded RNAs as a function of bulk Mg2+ concentration, from which free energies of Mg2+-RNA interactions were derived. Complementary thermal melting experiments were also used to obtain RNA-folding free energies. These experimental data were compared with the results of calculations based on the nonlinear Poisson-Boltzmann equation, which describes the interaction of "diffuse" (fully hydrated) Mg2+ ions with the different RNA forms. Good agreement between the calculations and experimental data suggests that essentially all of the Mg2+-induced stabilization of the native pseudoknot structure arises from the stronger interaction of diffuse ions with the folded tertiary structure compared to that with a partially unfolded state. It is unlikely that the stability of the RNA depends on dehydrated ions bound to specific sets of RNA ligands in the folded state. The data also suggest that the Mg2+-dependent free energy of folding is sensitive to factors that influence the ensemble of RNA conformations present in the partially unfolded state.
本研究的目的是获得关于Mg2+离子对假结RNA三级结构折叠自由能贡献的全面实验和理论描述。一种用于测量RNA存在时Mg2+有效浓度的荧光方法被用于研究Mg2+与RNA假结的折叠形式和部分未折叠形式之间的相互作用。这些数据确定了折叠或部分未折叠的RNA积累的过量Mg2+离子数量作为总体Mg2+浓度的函数,由此得出Mg2+与RNA相互作用的自由能。互补的热熔实验也被用于获得RNA折叠自由能。这些实验数据与基于非线性泊松-玻尔兹曼方程的计算结果进行了比较,该方程描述了“扩散”(完全水合)的Mg2+离子与不同RNA形式之间的相互作用。计算结果与实验数据之间的良好一致性表明,与部分未折叠状态相比,天然假结结构中基本上所有由Mg2+诱导的稳定性都源于扩散离子与折叠三级结构之间更强的相互作用。RNA的稳定性不太可能取决于折叠状态下与特定RNA配体结合的脱水离子。数据还表明,依赖Mg2+的折叠自由能对影响部分未折叠状态下RNA构象集合的因素敏感。