Zhu Yuhong, He Zhaojian, Chen Shi-Jie
Department of Physics, Department of Biochemistry, and Informatics Institute, University of Missouri, Columbia, MO 65211, USA; Department of Physics, Hangzhou Normal University, Hangzhou, Zhejiang 310036, China.
Department of Physics, Department of Biochemistry, and Informatics Institute, University of Missouri, Columbia, MO 65211, USA.
PLoS One. 2015 Mar 23;10(3):e0119705. doi: 10.1371/journal.pone.0119705. eCollection 2015.
Metal ions play a critical role in the stabilization of RNA structures. Therefore, accurate prediction of the ion effects in RNA folding can have a far-reaching impact on our understanding of RNA structure and function. Multivalent ions, especially Mg²⁺, are essential for RNA tertiary structure formation. These ions can possibly become strongly correlated in the close vicinity of RNA surface. Most of the currently available software packages, which have widespread success in predicting ion effects in biomolecular systems, however, do not explicitly account for the ion correlation effect. Therefore, it is important to develop a software package/web server for the prediction of ion electrostatics in RNA folding by including ion correlation effects.
The TBI web server http://rna.physics.missouri.edu/tbi_index.html provides predictions for the total electrostatic free energy, the different free energy components, and the mean number and the most probable distributions of the bound ions. A novel feature of the TBI server is its ability to account for ion correlation and ion distribution fluctuation effects.
By accounting for the ion correlation and fluctuation effects, the TBI server is a unique online tool for computing ion-mediated electrostatic properties for given RNA structures. The results can provide important data for in-depth analysis for ion effects in RNA folding including the ion-dependence of folding stability, ion uptake in the folding process, and the interplay between the different energetic components.
金属离子在RNA结构的稳定中起着关键作用。因此,准确预测离子对RNA折叠的影响对我们理解RNA的结构和功能具有深远影响。多价离子,尤其是Mg²⁺,对RNA三级结构的形成至关重要。这些离子在RNA表面附近可能会产生强相关性。然而,目前大多数在预测生物分子系统中离子效应方面取得广泛成功的软件包,并未明确考虑离子相关效应。因此,开发一个通过纳入离子相关效应来预测RNA折叠中离子静电作用的软件包/网络服务器很重要。
通过考虑离子相关和波动效应,TBI服务器是用于计算给定RNA结构的离子介导静电性质的独特在线工具。这些结果可为深入分析RNA折叠中的离子效应提供重要数据,包括折叠稳定性的离子依赖性、折叠过程中的离子摄取以及不同能量成分之间的相互作用。