论文标题

双链DNA的热机械过度伸展过渡的预测模型

A predictive model for the thermomechanical overstretching transition of double stranded DNA

论文作者

Florio, G., Puglisi, G.

论文摘要

通过扩展经典的Peyrard-Bishop模型,我们能够在伸展下在伸展下的机械电阻,基本对的数量以及内部内部和链链键的刚度获得完全分析的描述。为了比较弹性和温度效应,我们首先在零温度机械限制中分析系统,对于描述几种实验效应(包括可能的滞后)很重要。然后,我们分析平衡统计力学框架中的温度效应。特别是,我们获得了在热力学极限中的温度依赖性熔化力和未拉链分配的位移的分析表达,这也取决于内部与分子间键的相对稳定性。这样的结果与零温度极限的纯机械模型以及我们使用经典转移积分方法获得的变性温度相吻合。基于我们的分析结果,获得了对相图和协同参数的明确分析,其中还可以考虑离散效应。获得的结果成功地应用于再现DNA的热力学实验融化和DNA发夹的响应。由于其普遍性,建议的方法可以扩展到其他热机械诱导的分子熔化现象。

By extending the classical Peyrard-Bishop model, we are able to obtain a fully analytical description for the mechanical resistance of DNA under stretching at variable values of temperature, number of base pairs and intrachains and interchains bonds stiffness. In order to compare elasticity and temperature effects, we first analyze the system in the zero temperature mechanical limit, important to describe several experimental effects including possible hysteresis. We then analyze temperature effects in the framework of equilibrium statistical mechanics. In particular, we obtain an analytical expression for the temperature dependent melting force and unzipping assigned displacement in the thermodynamical limit, also depending on the relative stability of intra vs inter molecular bonds. Such results coincide with the purely mechanical model in the limit of zero temperature and with the denaturation temperature that we obtain with the classical transfer integral method. Based on our analytical results, explicit analysis of the phase diagrams and cooperativity parameters are obtained, where also discreteness effect can be accounted for. The obtained results are successfully applied in reproducing the thermomechanical experimental melting of DNA and the response of DNA hairpins. Due to its generality, the proposed approach can be extended to other thermomechanically induced molecular melting phenomena.

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