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解开浓缩球状状态的DNA——解旋的影响。

Unzipping DNA from the condensed globule state-effects of unraveling.

作者信息

Lam Pui-Man, Levy J C

机构信息

Laboratoire de Physique Theorique de la Matiere Condensee, Universite Paris, 7-Denis Diderot, 2 Place Jussieu, 75251 Paris, France.

出版信息

Biopolymers. 2005 Dec 15;79(6):287-91. doi: 10.1002/bip.20292.

Abstract

We have studied theoretically the unzipping of a double-stranded DNA from a condensed globule state by an external force. At constant force, we found that the double-stranded DNA unzips an at critical force Fc and the number of unzipped monomers M goes as M approximately (Fc - F)-3, for both the homogeneous and heterogeneous double-stranded DNA sequence. This is different from the case of unzipping from an extended coil state in which the number of unzipped monomers M goes as M approximately (Fc - F)-chi, where the exponent chi is either 1 or 2 depending on whether the double-stranded DNA sequence is homogeneous or heterogeneous, respectively. In the case of unzipping at constant extension, we found that for a double-stranded DNA with a very large number N of base pairs, the force remains almost constant as a function of the extension, before the unraveling transition, at which the force drops abruptly to zero. Right at the unraveling transition, the number of base pairs remaining in the condensed globule state is still very large and goes as N(3/4), in agreement with theoretical predictions of the unraveling transition of polymers stretched by an external force.

摘要

我们从理论上研究了在外力作用下双链DNA从凝聚小球状态的解链过程。在恒定外力作用下,我们发现对于均一和非均一双链DNA序列,双链DNA在临界力Fc时解链,解链单体数M近似为M ∝ (Fc - F)-3 。这与从伸展线圈状态解链的情况不同,在从伸展线圈状态解链时,解链单体数M近似为M ∝ (Fc - F)-χ,其中指数χ分别根据双链DNA序列是均一还是非均一为1或2。在恒定伸长率下解链的情况下,我们发现对于具有非常大量N个碱基对的双链DNA,在解链转变之前,力作为伸长率的函数几乎保持恒定,在解链转变时力突然降至零。就在解链转变时,处于凝聚小球状态的碱基对数仍然非常大,且为N(3/4),这与外力拉伸聚合物的解链转变的理论预测一致。

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