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应变诱导的B-Z转变模型。

A model of the strain-induced B-Z transition.

作者信息

Sarai A, Jernigan R L

机构信息

Laboratory of Mathematical Biology, National Cancer Institute, Bethesda, MD 20205.

出版信息

J Biomol Struct Dyn. 1985 Feb;2(4):767-84. doi: 10.1080/07391102.1985.10506323.

Abstract

The B-to-Z transition in supercoiled circular DNA is modeled as a strain-induced nonlinear excitation process. Using a model, in which DNA is regarded as a chain of units with a bistable energy function along the twisting coordinate together with a harmonic inter-unit interaction, we show that a Z region and the accompanying two B-Z junctions of finite width appear naturally as a solution of nonlinear equations, when the strain exceeds a critical value. We examine the B-Z transition behaviour as a function of twist under various situations. We also analyse available experimental results on B-Z transition in supercoiled plasmid with G-C insertions by this mechanistic model in order to estimate the magnitude of model parameters. The energy barrier of the B-Z transition is estimated to be of the order of 1 kcal/mole per base pair. The analysis shows that if the length of the insertion is less than a certain value, the entire insertion converts to Z form at a transition point, but if the insertion is much longer, the B-Z transition exhibits a different behavior, in which part of the insertion flips to Z form and the Z region expands linearly upon changing linking number.

摘要

超螺旋环状DNA中的B-Z转变被建模为一种应变诱导的非线性激发过程。使用一个模型,其中DNA被视为沿着扭曲坐标具有双稳态能量函数以及谐波单元间相互作用的单元链,我们表明当应变超过临界值时,Z区域以及伴随的两个有限宽度的B-Z连接点自然地作为非线性方程的解出现。我们研究了在各种情况下B-Z转变行为作为扭曲的函数。我们还通过这个机理模型分析了超螺旋质粒中带有G-C插入序列的B-Z转变的现有实验结果,以估计模型参数的大小。B-Z转变的能量障碍估计为每碱基对约1千卡/摩尔。分析表明,如果插入序列的长度小于某个值,整个插入序列在转变点处转变为Z型,但如果插入序列长得多,B-Z转变表现出不同的行为,其中插入序列的一部分翻转成Z型,并且Z区域在改变连接数时线性扩展。

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