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The elastic theory of a single DNA molecule

机译:单个DNA分子的弹性理论

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We study the elastic responses of double- (ds) and single-stranded (ss) DNA at external force fields. A double-strand-polymer elastic model is constructed and solved by path integral methods and Monte Carlo simulations to understand the entropic elasticity, cooperative extensibility, and supercoiling property of dsDNA. The good agreement with experiments indicates that short-ranged base-pair stacking interaction is crucial for the stability and the high deformability of dsDNA. Hairpin-coil transition in ssDNA is studied with generating function method. A threshold force is needed to pull the ssDNA hairpin patterns, stabilized by base pairing and base-pair stacking, into random coils. This phase transition is predicted to be of first order for stacking potential higher than some critical level, in accordance with experimental observations.
机译:我们研究了外力场下双(ds)和单链(ss)DNA的弹性响应。通过路径积分法和蒙特卡洛模拟,建立并求解了双链聚合物弹性模型,以了解dsDNA的熵弹性,协同可扩展性和超螺旋性质。与实验的良好一致性表明,短程碱基对堆叠相互作用对于dsDNA的稳定性和高可变形性至关重要。利用生成函数方法研究了ssDNA中的发夹-螺旋过渡。需要一个阈值力来将通过碱基配对和碱基对堆叠稳定的ssDNA发夹模式拉成随机线圈。根据实验观察,对于高于一定临界水平的堆叠电位,预计该相变是一阶的。

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