Institute of Biophysics, University of Ulm, 89069 Ulm, Germany.
Biochemistry. 2011 Apr 19;50(15):3107-15. doi: 10.1021/bi101804t. Epub 2011 Mar 24.
The folding energy landscape of RNA is greatly affected by interactions between the RNA and counterions that neutralize the backbone negative charges and may also participate in tertiary contacts. Valence, size, coordination number, and electron shell structure can all contribute to the energetic stabilization of specific RNA conformations. Using single-molecule fluorescence resonance energy transfer (smFRET), we have examined the folding properties of the RNA transcript of human mitochondrial tRNA(Lys), which possesses two different folded states in addition to the unfolded one under conditions of thermodynamic equilibrium. We have quantitatively analyzed the degree of RNA tertiary structure stabilization for different types of cations based on a thermodynamic model that accounts for multiple conformational states and RNA-ion interactions within each state. We have observed that small monovalent ions stabilize the tRNA tertiary structure more efficiently than larger ones. More ions were found in close vicinity of compact RNA structures, independent of the type of ion. The largest conformation-dependent binding specificity of ions of the same charge was found for divalent ions, for which the ionic radii and coordination properties were responsible for shaping the folding free energy.
RNA 的折叠能量景观受 RNA 与抗衡离子之间相互作用的极大影响,抗衡离子可中和骨架的负电荷,并可能参与三级接触。价态、大小、配位数和电子壳层结构都可以有助于特定 RNA 构象的能量稳定。我们使用单分子荧光共振能量转移(smFRET),研究了人线粒体 tRNA(Lys)的 RNA 转录本的折叠性质,该 RNA 转录本除了在热力学平衡条件下的展开状态之外,还具有两种不同的折叠状态。我们基于一个热力学模型,对不同类型的阳离子进行了定量分析,该模型考虑了多个构象状态和每个状态下的 RNA-离子相互作用。我们观察到,小的单价离子比大的单价离子更有效地稳定 tRNA 的三级结构。无论离子类型如何,更多的离子被发现在紧凑 RNA 结构的附近。对于相同电荷的离子,发现了最大的构象依赖性结合特异性,对于二价离子而言,离子半径和配位性质是决定折叠自由能的因素。