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盐依赖性刚度对初始包含共面弯曲的受力DNA环构象的影响。

Effect of salt-dependent stiffness on the conformation of a stressed DNA loop containing initially coplanar bends.

作者信息

White J H, Lund R A, Bauer W R

机构信息

Department of Mathematics, University of California at Los Angeles 90024-1555, USA.

出版信息

Biopolymers. 1999 Jun;49(7):605-19. doi: 10.1002/(SICI)1097-0282(199906)49:7<605::AID-BIP6>3.0.CO;2-H.

DOI:10.1002/(SICI)1097-0282(199906)49:7<605::AID-BIP6>3.0.CO;2-H
PMID:10226503
Abstract

Closed DNA loops containing one or more bent regions are important structures that occur in the regulation of gene expression. We analyze the response of structures of this type to a change in applied rotation (change in linking deficiency, delta Lk). Our results apply to a closed loop formed from an elastic rod that is intrinsically bent in Nb discrete, 20 degrees steps up to a maximum of 240 degrees, the bent regions being initially coplanar with the plane of the relaxed DNA loop. We determine the effect of changing the intrinsic elastic resistance of the DNA loop to bending and torsional deformations. This relative resistance is expressed by Poisson's ratio v, which depends upon the ratio of bending stiffness to torsional rigidity. Poisson's ratio is primarily a function of salt type and concentration. We find that the tertiary structure of DNA loops changes with delta Lk, but that the geometric response can be either of two quite different types, depending upon the precise (Nb, v) pair. For combinations of Nb and v that are above a critical curve (the Fickel curve), the response to increasing delta Lk is nonmonotonic (NMT region): the distance between the loop closure point and its diametric opposite first decreases, then increases, as delta Lk increases. For combinations of Nb and v that are below the Fickel curve (NMT region), the corresponding diameter never increases, but always decreases with increasing delta Lk. In addition to these results, we define and implement a new measure of tertiary structure in closed DNA: the absolute writhe, AWr.

摘要

包含一个或多个弯曲区域的闭环DNA是基因表达调控中出现的重要结构。我们分析了这类结构对施加的旋转变化(连环数亏缺变化,ΔLk)的响应。我们的结果适用于由弹性杆形成的闭环,该弹性杆本质上以20度的离散步长弯曲,最大弯曲角度为240度,弯曲区域最初与松弛DNA环的平面共面。我们确定了改变DNA环对弯曲和扭转变形的固有弹性阻力的影响。这种相对阻力由泊松比v表示,它取决于弯曲刚度与扭转刚度的比值。泊松比主要是盐类型和浓度的函数。我们发现DNA环的三级结构随ΔLk变化,但几何响应可以是两种截然不同的类型,这取决于精确的(Nb,v)对。对于Nb和v的组合高于临界曲线(菲克尔曲线)的情况,对ΔLk增加的响应是非单调的(NMT区域):随着ΔLk增加,环闭合点与其直径相对点之间的距离先减小,然后增加。对于Nb和v的组合低于菲克尔曲线(NMT区域)的情况,相应的直径从不增加,而是始终随着ΔLk增加而减小。除了这些结果,我们定义并实现了一种衡量闭环DNA三级结构的新方法:绝对扭曲度,AWr。

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