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具有固有曲率的DNA末端扭曲诱导的超螺旋

Terminal twist-induced writhe of DNA with intrinsic curvature.

作者信息

Hu Kai

机构信息

Department of Applied Mathematics, National Dong Hwa University, Hualien, Taiwan 97401, ROC.

出版信息

Bull Math Biol. 2007 Apr;69(3):1019-30. doi: 10.1007/s11538-006-9156-y. Epub 2007 Feb 15.

Abstract

Supercoiling of a closed circular DNA rod may result from an application of terminal twist to the DNA rod by cutting the rod, rotating one of the cut faces as the other being fixed and then sealing the cut. According to White's formula, DNA supercoiling is probably accompanied by a writhe of the DNA axis. Deduced from the elastic rod model for DNA structure, an intrinsically straight closed circular DNA rod does not writhe as subject to a terminal twist, until the number of rotation exceeds a rod-dependent threshold. By contrast, a closed circular DNA rod with intrinsic curvature writhes instantly as subject to a terminal twist. This noteworthy character in fact belongs to many intrinsically curved DNA rods. By solving the dynamic equations, the linearization of the Euler-Lagrange equations governing intrinsically curved DNA rods, this paper shows that almost every clamped-end intrinsically curved DNA rod writhes instantly when subject to a terminal twist (clamped-end DNA rods include closed circular DNA rods and topological domains of open DNA rods). In terms of physical quantities, the exceptions are identified with points in R(6) whose projections onto R(5) (through ignoring the total energy density of a rod) form a subset of a quadratic hypersurface. This paper also suggests that the terminal twist induced writhe is due to the elasticity and the clamped-end boundary conditions of the DNA rods.

摘要

闭合环状DNA棒的超螺旋可能源于对DNA棒施加末端扭转,方法是切割该棒,在固定另一端面的同时旋转其中一个切割面,然后密封切口。根据怀特公式,DNA超螺旋可能伴随着DNA轴的扭曲。从DNA结构的弹性棒模型推导可知,本质上笔直的闭合环状DNA棒在受到末端扭转时不会扭曲,直到旋转数超过一个与棒相关的阈值。相比之下,具有固有曲率的闭合环状DNA棒在受到末端扭转时会立即扭曲。事实上,许多具有固有曲率的DNA棒都有这一值得注意的特性。通过求解动力学方程,即控制具有固有曲率的DNA棒的欧拉 - 拉格朗日方程的线性化,本文表明几乎每一个夹紧端具有固有曲率的DNA棒在受到末端扭转时都会立即扭曲(夹紧端DNA棒包括闭合环状DNA棒和开放DNA棒的拓扑结构域)。从物理量的角度来看,例外情况与R(6)中的点相对应,这些点在R(5)上的投影(通过忽略棒的总能量密度)形成一个二次超曲面的子集。本文还表明,末端扭转引起的扭曲是由于DNA棒的弹性和夹紧端边界条件所致。

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