Center for Cancer Research Nanobiology Program (CCRNP), National Cancer Institute at Frederick, Frederick, MD, USA.
J Mol Graph Model. 2011 Feb;29(5):624-34. doi: 10.1016/j.jmgm.2010.11.007. Epub 2010 Nov 19.
Relatively new types of the modified nucleotides, namely carbocyclic sugars that are constrained to north or south (C2' or C3' exo) conformations, can be used for RNA nanoparticle design to control their structures and stability by rigidifying nucleotides and altering the helical properties of RNA duplexes. Two RNA structures, an RNA dodecamer and an HIV kissing loop complex where several nucleotides were replaced with north or south constrained sugars, were studied by molecular dynamics (MD) simulations. The substituted south constrained nucleotides in the dodecamer widened the major groove and narrowed and deepened the minor groove thus inducing local conformational changes that resemble a B-form DNA helix. In the HIV kissing loop complex, north and south constrained nucleotides were substituted into flanking bases and stems. The modified HIV kissing loop complex showed a lower RMSD value than the normal kissing loop complex. The overall twist angle was also changed and its standard deviation was reduced. In addition, the modified RNA dodecamer and HIV kissing loop complex were characterized by principal component analysis (PCA) and steered molecular dynamics (SMD). PCA results showed that the constrained sugars stabilized the overall motions. The results of the SMD simulations indicated that as the backbone δ angles were increased by elongation, more force was applied to the modified RNA due to the constrained sugar analogues.
相对较新的修饰核苷酸类型,即被约束为北或南(C2' 或 C3' 外消旋)构象的碳环糖,可以用于 RNA 纳米颗粒设计,通过刚性化核苷酸和改变 RNA 双链的螺旋性质来控制其结构和稳定性。通过分子动力学(MD)模拟研究了两种 RNA 结构,一种是 RNA 十二聚体,另一种是 HIV 亲吻环复合物,其中几个核苷酸被北或南约束的糖取代。在十二聚体中,取代的南约束核苷酸拓宽了大沟,缩小并加深了小沟,从而诱导类似于 B 型 DNA 螺旋的局部构象变化。在 HIV 亲吻环复合物中,北和南约束的核苷酸被取代到侧翼碱基和茎部。与正常的亲吻环复合物相比,修饰后的 HIV 亲吻环复合物显示出更低的 RMSD 值。整体扭转角度也发生了变化,其标准偏差降低。此外,修饰的 RNA 十二聚体和 HIV 亲吻环复合物通过主成分分析(PCA)和导向分子动力学(SMD)进行了表征。PCA 结果表明,约束糖稳定了整体运动。SMD 模拟的结果表明,随着骨架 δ 角的伸长,由于约束糖类似物,更多的力施加到修饰的 RNA 上。