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Osmotic Pressure and Packaging Structure of Caged DNA

机译:笼状DNA的渗透压和包装结构。

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摘要

We present a theoretical model for aqueous solutions of double-stranded (ds) DNA with explicit consideration of electrostatic interactions, excluded-volume effects, van der Waals attractions, and salt ions. With reasonable parameters estimated from the DNA structure and experimental data for electrolytes, we are able to reproduce the DNA osmotic pressure in the bulk in good agreement with experiment. The predicted DNA osmotic pressure in λ-bacteriophages is found to coincide with that of the PEG8000 solution that inhibits DNA ejection as reported in recent experiments. Based on the radial distributions of DNA segments and of counterions at different degrees of packaging, we find that in the presence of Mg2+, DNA forms a multilayer structure near the inner surface of a fully loaded bacteriophage, but at low packing density the DNA segments are depleted from the surface owing to the local condensation of DNA induced by the divalent counterions. By contrast, the multilayer DNA structure is less distinctive in the presence of Na+ despite the increase of the DNA density at contact, and the depletion near the capsid surface is not found at low packing density.
机译:我们提出了一种双链(ds)DNA水溶液的理论模型,其中明确考虑了静电相互作用,排除体积效应,范德华引力和盐离子。通过从电解质的DNA结构和实验数据估算出合理的参数,我们能够与实验很好地重现DNA的渗透压。据发现,λ噬菌体中预测的DNA渗透压与抑制DNA喷射的PEG8000溶液的渗透压一致,如最近的实验报道。根据DNA片段和抗衡离子在不同包装程度下的径向分布,我们发现在Mg 2 + 存在的情况下,DNA在充满噬菌体的内表面附近形成多层结构,但是在低堆积密度下,由于二价抗衡离子诱导的DNA局部凝结,DNA片段从表面耗尽。相反,尽管存在接触时DNA密度增加,但在Na + 存在的情况下,多层DNA结构的独特性较低,并且在低堆积密度下未发现衣壳表面附近的损耗。

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