Institute of Physical and Theoretical Chemistry, Goethe University, Max-von-Laue-Str. 7, D-60438 Frankfurt, Germany.
J Phys Chem B. 2009 Dec 31;113(52):16660-8. doi: 10.1021/jp9076036.
To systematically construct a low-dimensional free-energy landscape of RNA systems from a classical molecular dynamics simulation, various versions of the principal component analysis (PCA) are compared: the cPCA using the Cartesian coordinates of all atoms, the dPCA using the sine/cosine-transformed six backbone dihedral angles as well as the glycosidic torsional angle chi and the pseudorotational angle P, the aPCA which ignores the circularity of the 6 + 2 dihedral angles of the RNA, and the dPCA(etatheta), which approximates the 6 backbone dihedral angles by 2 pseudotorsional angles eta and theta. As representative examples, a 10-nucleotide UUCG hairpin and the 36-nucleotide segment SL1 of the Psi site of HIV-1 are studied by classical molecular dynamics simulation, using the Amber all-atom force field and explicit solvent. It is shown that the conformational heterogeneity of the RNA hairpins can only be resolved by an angular PCA such as the dPCA but not by the cPCA using Cartesian coordinates. Apart from possible artifacts due to the coupling of overall and internal motion, this is because the details of hydrogen bonding and stacking interactions but also of global structural rearrangements of the RNA are better discriminated by dihedral angles. In line with recent experiments, it is found that the free energy landscape of RNA hairpins is quite rugged and contains various metastable conformational states which may serve as an intermediate for unfolding.
为了从经典分子动力学模拟中系统地构建 RNA 系统的低维自由能景观,比较了各种版本的主成分分析(PCA):使用所有原子笛卡尔坐标的 cPCA、使用正弦/余弦变换的六个骨架二面角以及糖苷扭转角 chi 和伪旋转角 P 的 dPCA、忽略 RNA 的 6+2 二面角的圆形性的 aPCA,以及通过 2 个伪扭转角 eta 和 theta 近似 6 个骨架二面角的 dPCA(etatheta)。作为代表性示例,通过经典分子动力学模拟,使用 Amber 全原子力场和显式溶剂,研究了 10 个核苷酸 UUCG 发夹和 HIV-1 Psi 位点的 36 个核苷酸片段 SL1。结果表明,RNA 发夹的构象异质性只能通过角度 PCA(如 dPCA)来解决,而不能通过使用笛卡尔坐标的 cPCA 来解决。除了由于整体和内部运动的耦合可能产生的伪影外,这是因为氢键和堆积相互作用的细节,以及 RNA 的全局结构重排,通过二面角可以更好地区分。与最近的实验一致,发现 RNA 发夹的自由能景观相当崎岖,包含各种亚稳态构象状态,这些状态可能作为展开的中间状态。