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利用定向分子动力学模拟研究30个碱基对DNA双链的过度拉伸:结构缺陷对结构和力-伸长关系的影响

Overstretching of a 30 bp DNA duplex studied with steered molecular dynamics simulation: effects of structural defects on structure and force-extension relation.

作者信息

Li H, Gisler T

机构信息

Universität Konstanz, Fachbereich Physik, 78457 Konstanz, Germany.

出版信息

Eur Phys J E Soft Matter. 2009 Nov;30(3):325-32. doi: 10.1140/epje/i2009-10524-5. Epub 2009 Oct 22.

DOI:10.1140/epje/i2009-10524-5
PMID:19847465
Abstract

Single-molecule experiments on polymeric DNA show that the molecule can be overstretched at nearly constant force by about 70% beyond its relaxed contour length. In this publication we use steered molecular dynamics (MD) simulation to study the effect of structural defects on force-extension curves and structures at high elongation in a 30 base pair duplex pulled by its torsionally unconstrained 5' -5' ends. The defect-free duplex shows a plateau in the force-extension curve at 120 pN in which large segments with inclined and paired bases ("S-DNA") near both ends of the duplex coexist with a central B-type segment separated from the former by small denaturation bubbles. In the presence of a base mismatch or a nick, force-extension curves are very similar to the ones of the defect-free duplex. For the duplex with a base mismatch, S-type segments with highly inclined base pairs are not observed; rather, the overstretched duplex consists of B-type segments separated by denaturation bubbles. The nicked duplex evolves, via a two-step transition, into a two-domain structure characterized by a large S-type segment coexisting with several short S-type segments which are separated by short denaturation bubbles. Our results suggest that in the presence of nicks the force-extension curve of highly elongated duplex DNA might reflect locally highly inhomogeneous stretching.

摘要

对聚合DNA进行的单分子实验表明,该分子在几乎恒定的力作用下可以被过度拉伸,使其超出松弛轮廓长度约70%。在本出版物中,我们使用引导分子动力学(MD)模拟来研究结构缺陷对由其无扭转约束的5'-5'末端拉动的30个碱基对双链体在高伸长率下的力-伸长曲线和结构的影响。无缺陷的双链体在120 pN的力-伸长曲线中显示出一个平台期,其中双链体两端附近具有倾斜和配对碱基的大段(“S-DNA”)与由小变性泡隔开的中央B型段共存。在存在碱基错配或切口的情况下,力-伸长曲线与无缺陷双链体的曲线非常相似。对于存在碱基错配的双链体,未观察到具有高度倾斜碱基对的S型段;相反,过度拉伸的双链体由由变性泡隔开的B型段组成。有切口的双链体通过两步转变演变成一种双结构域结构,其特征是一个大的S型段与几个由短变性泡隔开的短S型段共存。我们的结果表明,在存在切口的情况下,高度伸长的双链DNA的力-伸长曲线可能反映了局部高度不均匀的拉伸。

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