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Physical Chemistry of DNA Viruses

机译:DNA病毒的物理化学

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The relative simplicity of viruses makes it possible to apply generic physical approaches to the understanding of their structure and function. We focus here on viruses that have double-stranded (ds)DNA genomes that are enclosed in a protein container called the capsid. Their structures are now known in precise detail from cryo-electron microscopy. dsDNA is a stiff, highly charged polymer, and typical viral DNAs have contour lengths 1000 times longer than the radius of the capsid into which they are introduced in the assembly process, which is driven by a biological motor. As a result, the confined DNA is highly stressed. The energy stored in the dsDNA, which is compressed to crystalline densities, drives the ejection of the genome into the host at the start of an infection. Experiments have examined the packaging and ejection of the genomes, which have also been the subject of analytic theories and simulations.
机译:病毒的相对简单性使得可以将通用的物理方法应用于了解其结构和功能。我们在这里关注的是具有双链(ds)DNA基因组的病毒,这些基因组被封闭在称为衣壳的蛋白质容器中。现在可以从冷冻电子显微镜精确地了解它们的结构。 dsDNA是一种刚性高电荷的聚合物,典型的病毒DNA的轮廓长度比在组装过程中由生物马达驱动的衣壳半径要大1000倍。结果,封闭的DNA高度受力。 dsDNA中存储的能量被压缩成晶体密度,从而在感染开始时驱使基因组向宿主中弹射。实验已经检查了基因组的包装和弹出,这也是分析理论和模拟的主题。

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