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DNA i-motif provides steel-like tough ends to chromosomes

机译:DNA i-motif为染色体提供了类似钢的坚硬末端

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摘要

We studied the structure and mechanical properties of DNA i-motif nanowires by means of molecular dynamics computer simulations. We built up to 230 nm-long nanowires, based on a repeated TC5 sequence from NMR crystallographic data, fully relaxed and equilibrated in water. The unusual C•C+ stacked structure, formed by four ssDNA strands arranged in an intercalated tetramer, is here fully characterized both statically and dynamically. By applying stretching, compression and bending deformations with the steered molecular dynamics and umbrella sampling methods, we extract the apparent Young's and bending moduli of the nanowire, as well as estimates for the tensile strength and persistence length. According to our results, i-motif nanowires share similarities with structural proteins, as far as their tensile stiffness, but are closer to nucleic acids and flexible proteins, as far as their bending rigidity is concerned. Curiously enough, their tensile strength makes such DNA fragments tough as mild steel or a nickel alloy. Besides their yet to be clarified biological significance, i-motif nanowires may qualify as interesting candidates for nanotechnology templates, due to such outstanding mechanical properties.
机译:我们通过分子动力学计算机模拟研究了DNA i-基序纳米线的结构和力学性能。我们基于NMR晶体学数据中重复的TC5序列,构建了长达230 nm的纳米线,在水中完全放松并达到了平衡。由排列在插入四聚体中的4条ssDNA链形成的不寻常的C•C +堆叠结构在此处可以静态和动态地充分表征。通过使用转向分子动力学和伞式采样方法应用拉伸,压缩和弯曲变形,我们提取了纳米线的表观杨氏模量和弯曲模量,以及拉伸强度和持久性长度的估计值。根据我们的结果,就其抗张刚度而言,i-基序纳米线与结构蛋白具有相似性,但就其抗弯刚度而言,它们更接近于核酸和柔性蛋白。奇怪的是,它们的拉伸强度使这种DNA片段像低碳钢或镍合金一样坚韧。除了其尚未阐明的生物学意义外,由于其出色的机械性能,i-基序纳米线还可以作为纳米技术模板的有趣候选物。

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  • 会议地点 Boston MA(US)
  • 作者单位

    Institut d'Electronique Microelectronique et Nanotechnologie (IEMN Cnrs - UMR 8520), University of Lille I Sciences and Technology, 59652 Villeneuve d'Ascq, France,Interdisciplinary Research Institute (IR1 Cnrs - USR 3078), University of Lille Ⅰ Sciences and Technology, 59655 Villeneuve d'Ascq, France;

    Interdisciplinary Research Institute (IR1 Cnrs - USR 3078), University of Lille Ⅰ Sciences and Technology, 59655 Villeneuve d'Ascq, France;

    Institut d'Electronique Microelectronique et Nanotechnologie (IEMN Cnrs - UMR 8520), University of Lille I Sciences and Technology, 59652 Villeneuve d'Ascq, France;

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