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天然及部分变性的闭环DNA的自由能、焓和熵。

The free energy, enthalpy and entropy of native and of partially denatured closed circular DNA.

作者信息

Bauer W R, Benham C J

机构信息

Department of Microbiology, State University of New York, Stony Brook 11794-5222.

出版信息

J Mol Biol. 1993 Dec 20;234(4):1184-96. doi: 10.1006/jmbi.1993.1669.

Abstract

We have used gel electrophoresis to measure the progress of local denaturation in closed circular pBR322 DNA as a function of temperature and linking deficiency, delta Lk. Local denaturation is closely coupled to supercoiling in closed DNA, requiring statistical mechanical methods for analysis. We have applied these methods to the experimental data to evaluate the free energies for three associated molecular processes. These processes are changes in the residual linking deficiency, delta Lkr, initiation of local denaturation, and twisting of denatured strands about one another. Our results confirm the quadratic dependence of the supercoiling free energy upon delta Lk, with a free energy coefficient of 740/N kcal/mol at 37 degrees C, where N is the number of base-pairs. The free energy of initiation of denaturation is 10.2(+/- 0.7) kcal/mol. The free energy of interstrand twisting of denatured regions varies with the square of the twist density, with proportionality coefficient C tau = 1.62 (+/- 0.11) kcal/rad2 at 37 degrees C. We have also calculated the entropy and enthalpy of these three processes, using the temperature dependence of the respective free energies. We find that both the entropy and the enthalpy of supercoiling are positive and vary quadratically with delta Lk. The free energy of initiation of denaturation is independent of temperature, hence arises primarily from a change in enthalpy. The entropy and enthalpy of interstrand twisting of denatured regions are both positive, and the twisting force constant decreases with temperature. These results differ considerably from expectations based solely upon considerations of chain configuration in vacuo, indicating the importance of solvent-dependent factors in determining the structure of closed circular DNA.

摘要

我们利用凝胶电泳来测量闭环pBR322 DNA中局部变性的进程,该进程是温度和连接缺陷(ΔLk)的函数。在闭环DNA中,局部变性与超螺旋紧密相关,需要用统计力学方法进行分析。我们已将这些方法应用于实验数据,以评估三个相关分子过程的自由能。这些过程包括残余连接缺陷(ΔLkr)的变化、局部变性的起始以及变性链之间的相互扭转。我们的结果证实了超螺旋自由能对ΔLk的二次依赖性,在37℃时自由能系数为740/N kcal/mol,其中N是碱基对的数量。变性起始的自由能为10.2(±0.7)kcal/mol。变性区域链间扭转的自由能随扭转密度的平方而变化,在37℃时比例系数Cτ = 1.62(±0.11)kcal/rad²。我们还利用各自自由能的温度依赖性计算了这三个过程的熵和焓。我们发现超螺旋的熵和焓均为正值,且随ΔLk呈二次变化。变性起始的自由能与温度无关,因此主要源于焓的变化。变性区域链间扭转的熵和焓均为正值,且扭转力常数随温度降低。这些结果与仅基于真空中链构型考虑的预期有很大差异,表明溶剂相关因素在决定闭环圆形DNA结构方面的重要性。

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