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A coarse grain model for DNA

机译:DNA的粗粒模型

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Understanding the behavior of DNA at the molecular level is of considerable fundamental and engineering importance.While adequate representations of DNA exist at the atomic and continuum level,there is a relative lack of models capable of describing the behavior of DNA at mesoscopic length scales.We present a mesoscale model of DNA that reduces the complexity of a nucleotide to three interactions sites,one each for the phosphate,sugar,and base,thereby rendering the investigation of DNA up to a few microns in length computationally tractable.The charges on these sites are considered explicitly.The model is parametrized using thermal denaturation experimental data at a fixed salt concentration.The validity of the model is established by its ability to predict several aspects of DNA behavior,including salt-dependent melting,bubble formation and rehybridization,and the mechanical properties of the molecule as a function of salt concentration.
机译:在分子水平上理解DNA的行为具有相当重要的基础和工程重要性。尽管在原子和连续性水平上存在足够的DNA表示,但是相对缺乏能够描述介观长度尺度上DNA行为的模型。提出了一种中尺度的DNA模型,该模型将核苷酸的复杂性降低到三个相互作用位点,每个相互作用位点分别涉及磷酸盐,糖和碱基,从而使DNA的研究长度可达几微米,在计算上易于处理。使用固定盐浓度下的热变性实验数据对模型进行参数化。模型的有效性取决于其预测DNA行为的几个方面的能力,包括盐依赖性熔解,气泡形成和再杂交,以及分子的机械性能随盐浓度的变化而变化。

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