Bar Amir, Kabakçıoğlu Alkan, Mukamel David
Department of Physics of Complex Systems, The Weizmann Institute of Science, Rehovot 76100, Israel.
Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Dec;86(6 Pt 1):061904. doi: 10.1103/PhysRevE.86.061904. Epub 2012 Dec 11.
The denaturation transition of circular DNA is studied within a Poland-Scheraga-type approach, generalized to account for the fact that the total linking number (LK), which measures the number of windings of one strand around the other, is conserved. In the model the LK conservation is maintained by invoking both overtwisting and writhing (supercoiling) mechanisms. This generalizes previous studies, which considered each mechanism separately. The phase diagram of the model is analyzed as a function of the temperature and the elastic constant κ associated with the overtwisting energy for any given loop entropy exponent c. As in the case where the two mechanisms apply separately, the model exhibits no denaturation transition for c ≤ 2. For c > 2 and κ = 0 we find that the model exhibits a first-order transition. The transition becomes of higher order for any κ > 0. We also calculate the contribution of the two mechanisms separately in maintaining the conservation of the linking number and find that it is weakly dependent on the loop exponent c.
在一种推广的波兰-谢拉加型方法中研究了环状DNA的变性转变,这种推广是为了考虑到总链环数(LK)守恒这一事实,总链环数衡量的是一条链围绕另一条链的缠绕次数。在该模型中,通过引入过扭转和扭曲(超螺旋)机制来维持LK守恒。这推广了之前分别考虑每种机制的研究。对于任何给定的环熵指数c,将模型的相图作为温度和与过扭转能量相关的弹性常数κ的函数进行分析。与两种机制分别起作用的情况一样,当c≤2时,模型没有变性转变。对于c>2且κ = 0的情况,我们发现模型呈现一阶转变。对于任何κ>0,转变变为更高阶。我们还分别计算了两种机制在维持链环数守恒方面的贡献,发现其对环指数c的依赖性较弱。