Li Li, Szostak Jack W
Howard Hughes Medical Institute, Department of Molecular Biology and Center for Computational and Integrative Biology, Massachusetts General Hospital , Boston, Massachusetts 02114, United States.
J Am Chem Soc. 2014 Feb 19;136(7):2858-65. doi: 10.1021/ja412079b. Epub 2014 Feb 5.
The five-membered furanose ring is a central component of the chemical structure of biological nucleic acids. The conformations of the furanose ring can be analytically described using the concept of pseudorotation, and for RNA and DNA they are dominated by the C2'-endo and C3'-endo conformers. While the free energy difference between these two conformers can be inferred from NMR measurements, a free energy landscape of the complete pseudorotation cycle of nucleic acids in solution has remained elusive. Here, we describe a new free energy calculation method for molecular dynamics (MD) simulations using the two pseudorotation parameters directly as the collective variables. To validate our approach, we calculated the free energy surface of ribose pseudorotation in guanosine and 2'-deoxyguanosine. The calculated free energy landscape reveals not only the relative stability of the different pseudorotation conformers, but also the main transition path between the stable conformations. Applying this method to a standard A-form RNA duplex uncovered the expected minimum at the C3'-endo state. However, at a 2'-5' linkage, the minimum shifts to the C2'-endo conformation. The free energy of the C3'-endo conformation is 3 kcal/mol higher due to a weaker hydrogen bond and a reduced base stacking interaction. Unrestrained MD simulations suggest that the conversion from C3'-endo to C2'-endo and vice versa is on the nanosecond and microsecond time scale, respectively. These calculations suggest that 2'-5' linkages may enable folded RNAs to sample a wider spectrum of their pseudorotation conformations.
五元呋喃糖环是生物核酸化学结构的核心组成部分。呋喃糖环的构象可以用假旋转的概念进行分析描述,对于RNA和DNA来说,它们主要由C2'-内型和C3'-内型构象异构体主导。虽然这两种构象异构体之间的自由能差异可以从核磁共振测量中推断出来,但溶液中核酸完整假旋转循环的自由能景观仍然难以捉摸。在这里,我们描述了一种新的分子动力学(MD)模拟自由能计算方法,该方法直接将两个假旋转参数用作集体变量。为了验证我们的方法,我们计算了鸟苷和2'-脱氧鸟苷中核糖假旋转的自由能表面。计算出的自由能景观不仅揭示了不同假旋转构象异构体的相对稳定性,还揭示了稳定构象之间的主要转变路径。将此方法应用于标准A形式的RNA双链体,在C3'-内型状态发现了预期的最小值。然而,在2'-5'连接时,最小值转移到C2'-内型构象。由于氢键较弱和碱基堆积相互作用降低,C3'-内型构象的自由能高出3千卡/摩尔。无约束的MD模拟表明,从C3'-内型到C2'-内型以及反之的转换分别发生在纳秒和微秒时间尺度上。这些计算表明,2'-5'连接可能使折叠的RNA能够采样更广泛的假旋转构象谱。