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DNA 拉伸过度的转变机制:分子动力学的微观观察。

The transition mechanism of DNA overstretching: a microscopic view using molecular dynamics.

机构信息

Laboratory of Physiology, Department of Biology, University of Florence, Sesto Fiorentino, Firenze, Italy.

Laboratory of Physiology, Department of Biology, University of Florence, Sesto Fiorentino, Firenze, Italy

出版信息

J R Soc Interface. 2014 Aug 6;11(97):20140399. doi: 10.1098/rsif.2014.0399.

Abstract

The overstretching transition in torsionally unconstrained DNA is studied by means of atomistic molecular dynamics simulations. The free-energy profile as a function of the length of the molecule is determined through the umbrella sampling technique providing both a thermodynamic and a structural characterization of the transition pathway. The zero-force free-energy profile is monotonic but, in accordance with recent experimental evidence, becomes two-state at high forces. A number of experimental results are satisfactorily predicted: (i) the entropic and enthalpic contributions to the free-energy difference between the basic (B) state and the extended (S) state; (ii) the longitudinal extension of the transition state and (iii) the enthalpic contribution to the transition barrier. A structural explanation of the experimental finding that overstretching is a cooperative reaction characterized by elementary units of approximately 22 base pairs is found in the average distance between adenine/thymine-rich regions along the molecule. The overstretched DNA adopts a highly dynamical and structurally disordered double-stranded conformation which is characterized by residual base pairing, formation of non-native intra-strand hydrogen bonds and effective hydrophobic screening of apolar regions.

摘要

通过原子分子动力学模拟研究了扭转无约束 DNA 的过度拉伸转变。通过伞状采样技术确定了作为分子长度函数的自由能曲线,从而对转变途径进行了热力学和结构特征描述。零力自由能曲线是单调的,但与最近的实验证据一致,在高力下变为两态。许多实验结果得到了令人满意的预测:(i)基本(B)态和扩展(S)态之间自由能差的熵和焓贡献;(ii)转变态的纵向延伸;(iii)转变势垒的焓贡献。实验发现过度拉伸是一个由大约 22 个碱基对组成的基本单元的协同反应,在沿分子的腺嘌呤/胸腺嘧啶丰富区域之间的平均距离中找到了结构解释。过度拉伸的 DNA 采用高度动态和结构无序的双链构象,其特征是残留碱基配对、形成非天然的链内氢键以及有效屏蔽疏水区。

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本文引用的文献

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