Regional Centre of Advanced Technologies and Materials, Czech Advanced Technology and Research Institute (CATRIN), Palacký University Olomouc, Šlechtitelů 27, 779 00 Olomouc, Czech Republic.
Institute of Biophysics of the Czech Academy of Sciences, Královopolská 135, 612 00 Brno, Czech Republic.
J Chem Inf Model. 2023 Apr 10;63(7):2133-2146. doi: 10.1021/acs.jcim.2c01438. Epub 2023 Mar 29.
RNA molecules play a key role in countless biochemical processes. RNA interactions, which are of highly diverse nature, are determined by the fact that RNA is a highly negatively charged polyelectrolyte, which leads to intimate interactions with an ion atmosphere. Although RNA molecules are formally single-stranded, canonical (Watson-Crick) duplexes are key components of folded RNAs. A double-stranded (ds) RNA is also important for the design of RNA-based nanostructures and assemblies. Despite the fact that the description of canonical dsRNA is considered the least problematic part of RNA modeling, the imperfect shape and flexibility of dsRNA can lead to imbalances in the simulations of larger RNAs and RNA-containing assemblies. We present a comprehensive set of molecular dynamics (MD) simulations of four canonical A-RNA duplexes. Our focus was directed toward the characterization of the influence of varying ion concentrations and of the size of the solvation box. We compared several water models and four RNA force fields. The simulations showed that the A-RNA shape was most sensitive to the RNA force field, with some force fields leading to a reduced inclination of the A-RNA duplexes. The ions and water models played a minor role. The effect of the box size was negligible, and even boxes with a small fraction of the bulk solvent outside the RNA hydration sphere were sufficient for the simulation of the dsRNA.
RNA 分子在无数的生化过程中发挥着关键作用。RNA 相互作用具有高度多样化的性质,这是由以下事实决定的:RNA 是一种带高度负电荷的聚电解质,这导致它与离子氛围发生密切相互作用。尽管 RNA 分子在形式上是单链的,但规范的(沃森-克里克)双链是折叠 RNA 的关键组成部分。双链 RNA 对于基于 RNA 的纳米结构和组装体的设计也很重要。尽管规范双链 RNA 的描述被认为是 RNA 建模中最没有问题的部分,但双链 RNA 的不完美形状和灵活性可能导致较大 RNA 和含 RNA 组装体的模拟出现不平衡。我们进行了四组规范 A-RNA 双链体的全面分子动力学 (MD) 模拟。我们的重点是表征不同离子浓度和溶剂盒大小的影响。我们比较了几种水模型和四种 RNA 力场。模拟表明,A-RNA 的形状对 RNA 力场最敏感,有些力场导致 A-RNA 双链体的倾斜度降低。离子和水模型的作用较小。盒子大小的影响可以忽略不计,即使是 RNA 水合球体外的少量体相溶剂的盒子也足以模拟双链 RNA。