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首页> 外文期刊>The European physical journal, E. Soft matter >Mimicking DNA stretching with the Static Mode method: Shear stress versus transverse pulling stress
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Mimicking DNA stretching with the Static Mode method: Shear stress versus transverse pulling stress

机译:使用静态模式方法模拟DNA拉伸:剪切应力与横向拉应力

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DNA sequencing using nanopores is closer than ever to become a reality, but further research and development still need to be done, especially to unravel the atomic-scale mechanisms of induced DNA stretching. At this level, molecular modeling and simulation are essential to investigate DNA conformational flexibility and its response to the forces involved. In this work, through a Static Mode approach, we present a directed exploration of the deformations of a 27-mer subjected to externally imposed forces, as it could be in a nanopore. We show how the DNA sugar-phosphate backbone undergoes the majority of the induced deformation, before the base pairing is affected, and to what extent unzipping initiation depends on the force direction.
机译:使用纳米孔进行DNA测序比以往任何时候都更加接近现实,但是仍然需要做进一步的研究和开发,尤其是要揭示诱导DNA拉伸的原子尺度机制。在此水平上,分子建模和模拟对于研究DNA构象的灵活性及其对所涉及力的反应至关重要。在这项工作中,通过静态模式方法,我们对27-mer受到外部施加力的变形进行了定向探索,因为它可能在纳米孔中。我们展示了在碱基配对受到影响之前,DNA糖-磷酸主链如何经历大部分诱导的变形,解压缩的起始程度取决于受力方向。

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