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首页> 外文期刊>The Journal of Chemical Physics >Density functional theory for encapsidated polyelectrolytes: A comparison with Monte Carlo simulation
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Density functional theory for encapsidated polyelectrolytes: A comparison with Monte Carlo simulation

机译:囊化聚电解质的密度泛函理论:与蒙特卡洛模拟的比较

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摘要

Genome packaging inside viral capsids is strongly influenced by the molecular size and the backbone structure of RNA/DNA chains and their electrostatic affinity with the capsid proteins. Coarsegrained models are able to capture the generic features of non-specific interactions and provide a useful testing ground for theoretical developments. In this work, we use the classical density functional theory (DFT) within the framework of an extended primitive model for electrolyte solutions to investigate the self-organization of flexible and semi-flexible linear polyelectrolytes in spherical capsids that are permeable to small ions but not polymer segments. We compare the DFT predictions with Monte Carlo (MC) simulation for the density distributions of polymer segments and small ions at different backbone flexibilities and several solution conditions. In general, the agreement between DFT and MC is near quantitative except when the simulation results are noticeably influenced by the boundary effects. The numerical efficiency of the DFT calculations makes it promising as a useful tool for quantification of the structural and thermodynamic properties of viral nucleocapsids in vivo and at conditions pertinent to experiments.
机译:病毒衣壳内部的基因组包装受RNA / DNA链的分子大小和骨架结构以及它们与衣壳蛋白的静电亲和力的强烈影响。粗粒度模型能够捕获非特定交互的一般特征,并为理论发展提供有用的测试基础。在这项工作中,我们在电解质溶液的扩展原始模型的框架内使用经典密度泛函理论(DFT),研究球形衣壳中的柔性和半柔性线性聚电解质的自组织性,该小球蛋白可渗透小离子,但不能渗透聚合物链段。我们将DFT预测与蒙特卡罗(MC)模拟在不同主链柔度和几种溶液条件下的聚合物链段和小离子的密度分布进行了比较。通常,DFT和MC之间的一致性几乎是定量的,除非模拟结果受到边界效应的明显影响。 DFT计算的数值效率使其有望成为定量体内和实验条件下病毒核衣壳的结构和热力学性质的有用工具。

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