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Explaining the striking difference in twist-stretch coupling between DNA and RNA: A comparative molecular dynamics analysis

机译:解释DNA和RNA之间的扭曲-拉伸偶联的显着差异:比较分子动力学分析

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Double stranded helical DNA and RNA are flexible molecules that can undergo global conformational fluctuations. Their bending, twisting and stretching deformabilities are of similar magnitude. However, recent single-molecule experiments revealed a striking qualitative difference indicating an opposite sign for the twist-stretch couplings of dsDNA and dsRNA [Lipfert et al. 2014. Proc. Natl. Acad. Sci. U.S.A. 111, 15408] that is not explained by existing models. Employing unconstrained Molecular Dynamics (MD) simulations we are able to reproduce the qualitatively different twist-stretch coupling for dsDNA and dsRNA in semi-quantitative agreement with experiment. Similar results are also found in simulations that include an external torque to induce over-or unwinding of DNA and RNA. Detailed analysis of the helical deformations coupled to twist indicate that the interplay of helical rise, base pair inclination and displacement from the helix axis upon twist changes are responsible for the different twist-stretch correlations. Overwinding of RNA results in more compact conformations with a narrower major groove and consequently reduced helical extension. Overwinding of DNA decreases the size of the minor groove and the resulting positive base pair inclination leads to a slender and more extended helical structure.
机译:双链螺旋DNA和RNA是可以经历全局构象波动的柔性分子。它们的弯曲,扭曲和拉伸变形能力相似。然而,最近的单分子实验揭示了惊人的定性差异,表明dsDNA和dsRNA的扭曲-拉伸偶联的符号相反[Lipfert等。 2014年。 Natl。学院科学[U.S.A. 111,15408],现有模型未对此进行说明。通过使用无约束分子动力学(MD)模拟,我们能够以与实验半定量的方式重现dsDNA和dsRNA的定性不同的扭曲-拉伸偶联。在模拟中也发现了类似的结果,其中包括一个外部扭矩以引起DNA和RNA的过度或解旋。对与扭曲有关的螺旋形变形的详细分析表明,在螺旋形变化时,螺旋形上升,碱基对倾斜和螺旋线位移的相互作用是造成不同扭曲-拉伸相关性的原因。 RNA的缠绕会导致结构更紧凑,主凹槽更窄,从而减少螺旋延伸。 DNA的过度缠绕会减小小沟的大小,并且所产生的正碱基对倾斜会导致细长且螺旋结构更加延伸。

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