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Conformational Analysis of Stiff Chiral Polymers with End-Constraints

机译:带有末端约束的硬质手性聚合物的构象分析

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摘要

We present a Lie-group-theoretic method for the kinematic and dynamic analysis of chiral semi-flexible polymers with end constraints. The first is to determine the minimum energy conformations of semi-flexible polymers with end constraints, and the second is to perform normal mode analysis based on the determined minimum energy conformations. In this paper, we use concepts from the theory of Lie groups and principles of variational calculus to model such polymers as inextensible or extensible chiral elastic rods with coupling between twisting and bending stiffnesses, and/or between twisting and extension stiffnesses. This method is general enough to include any stiffness and chirality parameters in the context of elastic filament models with the quadratic elastic potential energy function. As an application of this formulation, the analysis of DNA conformations is discussed. We demonstrate our method with examples of DNA conformations in which topological properties such as writhe, twist, and linking number are calculated from the results of the proposed method. Given these minimum energy conformations, we describe how to perform the normal mode analysis. The results presented here build both on recent experimental work in which DNA mechanical properties have been measured, and theoretical work in which the mechanics of non-chiral elastic rods has been studied.
机译:我们提出了一种具有末端约束的手性半柔性聚合物运动学和动力学分析的李群理论方法。第一个是确定具有末端约束的半柔性聚合物的最小能量构象,第二个是基于确定的最小能量构象执行正态分析。在本文中,我们使用李群理论和变分微积分的原理对诸如不可伸长或可伸长的手性弹性杆等聚合物进行建模,这些聚合物在扭转和弯曲刚度之间和/或在扭转和延伸刚度之间具有耦合。该方法足够通用,可以在具有二次弹性势能函数的弹性长丝模型的上下文中包括任何刚度和手性参数。作为该制剂的应用,讨论了DNA构象的分析。我们用DNA构象实例证明了我们的方法,其中从拟议方法的结果中计算出了拓扑特性,如旋绕,扭曲和连接数。给定这些最小的能量构象,我们描述了如何执行正常模式分析。这里介绍的结果既建立在最近的实验工作中,在该工作中测量了DNA的机械性能,又在理论工作中研究了非手性弹性棒的力学。

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