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Molecular Dynamics Simulations of DNA and a Protein-DNA Complex Including Solvent

机译:DNA和蛋白质-DNA复合物(包括溶剂)的分子动力学模拟

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The results of a recent nanosecond (us) molecular dynamics (MD) simulation of the cl(CGCGAATTCGCG) double helix in water and a 100 ps MD sludy of the A represser-operator complex are described. The DNA simulations are analyzed in terms of the structural dynamics, fluctuations in the groove width and bending of the helical axis. The results indicate that the ns dynamical trajectory progresses through a series of three substates of B form DNA, with lifetimes of the order of hundreds of picoseconds (ps). An incipient dynamical equilibrium is evident. A comparison of the calculated axis bending with that observed in corresponding crystal structure data is presented. Simulation of the DNA in complex with the protein and that of the free DNA in solution,starting from the crystal conformation, reveal the dynamical changes that occur on complex formation.
机译:描述了cl(CGCGAATTCGCG)双螺旋在水中的最新纳秒(us)分子动力学(MD)模拟结果以及阻遏物-操纵子复合物的100 ps MD淤泥。根据结构动力学,凹槽宽度的波动和螺旋轴的弯曲来分析DNA模拟。结果表明,ns动态轨迹通过一​​系列B型DNA的三个亚状态前进,其寿命约为数百皮秒(ps)。初期的动态平衡是显而易见的。给出了计算出的轴弯曲与在相应晶体结构数据中观察到的轴弯曲的比较。从晶体构象开始,模拟与蛋白质复合的DNA和溶液中的游离DNA,揭示了复合物形成时发生的动力学变化。

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