Stefl Richard, Cheatham Thomas E, Spacková Nad'a, Fadrná Eva, Berger Imre, Koca Jaroslav, Sponer Jirí
National Center for Biomolecular Research, Masaryk University, 612 37 Brno, Czech Republic.
Biophys J. 2003 Sep;85(3):1787-804. doi: 10.1016/S0006-3495(03)74608-6.
The formation of a cation-stabilized guanine quadruplex (G-DNA) stem is an exceptionally slow process involving complex kinetics that has not yet been characterized at atomic resolution. Here, we investigate the formation of a parallel stranded G-DNA stem consisting of four strands of d(GGGG) using molecular dynamics simulations with explicit inclusion of counterions and solvent. Due to the limitations imposed by the nanosecond timescale of the simulations, rather than watching for the spontaneous formation of G-DNA, our approach probes the stability of possible supramolecular intermediates (including two-, three-, and four-stranded assemblies with out-of-register base pairing between guanines) on the formation pathway. The simulations suggest that "cross-like" two-stranded assemblies may serve as nucleation centers in the initial formation of parallel stranded G-DNA quadruplexes, proceeding through a series of rearrangements involving trapping of cations, association of additional strands, and progressive slippage of strands toward the full stem. To supplement the analysis, approximate free energies of the models are obtained with explicit consideration of the integral cations. The approach applied here serves as a prototype for qualitatively investigating other G-DNA molecules using molecular dynamics simulation and free-energy analysis.
阳离子稳定的鸟嘌呤四链体(G-DNA)茎的形成是一个极其缓慢的过程,涉及复杂的动力学,尚未在原子分辨率下得到表征。在这里,我们使用明确包含抗衡离子和溶剂的分子动力学模拟,研究由四条d(GGGG)链组成的平行链G-DNA茎的形成。由于模拟的纳秒时间尺度所带来的限制,我们的方法不是观察G-DNA的自发形成,而是探测形成途径上可能的超分子中间体(包括鸟嘌呤之间具有错配碱基对的双链、三链和四链组装体)的稳定性。模拟表明,“十字形”双链组装体可能在平行链G-DNA四链体的初始形成中作为成核中心,通过一系列重排过程,包括阳离子的捕获、额外链的缔合以及链向完整茎的逐步滑动。为了补充分析,在明确考虑积分阳离子的情况下获得了模型的近似自由能。这里应用的方法作为使用分子动力学模拟和自由能分析定性研究其他G-DNA分子的原型。