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Small-angle neutron scattering and molecular dynamics structural study of gelling DNA nanostars.

机译:胶凝DNA纳米星的小角中子散射和分子动力学结构研究。

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摘要

DNA oligomers with properly designed sequences self-assemble into well defined constructs. Here, we exploit this methodology to produce bulk quantities of tetravalent DNA nanostars (each one composed of 196 nucleotides) and to explore the structural signatures of their aggregation process. We report small-angle neutron scattering experiments focused on the evaluation of both the form factor and the temperature evolution of the scattered intensity at a nanostar concentration where the system forms a tetravalent equilibrium gel. We also perform molecular dynamics simulations of one isolated tetramer to evaluate the form factor numerically, without resorting to any approximate shape. The numerical form factor is found to be in very good agreement with the experimental one. Simulations predict an essentially temperature-independent form factor, offering the possibility to extract the effective structure factor and its evolution during the equilibrium gelation.
机译:具有适当设计序列的DNA低聚物可自组装为定义明确的构建体。在这里,我们利用这种方法来产生大量的四价DNA纳米星(每个由196个核苷酸组成),并探索其聚集过程的结构特征。我们报告了小角中子散射实验,该实验着重于纳米星浓度下系统形成四价平衡凝胶的形状因子和散射强度的温度演化评估。我们还对一种分离的四聚体进行了分子动力学模拟,以数字方式评估形状因子,而无需求助于任何近似的形状。发现数字形状因子与实验形状因子非常吻合。模拟预测了基本上与温度无关的形状因数,从而提供了在平衡胶凝过程中提取有效结构因数及其演变的可能性。

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