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Quantitative nanoscale electrostatics of viruses

机译:定量纳米静电学的病毒

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Electrostatics is one of the fundamental driving forces of the interaction between biomolecules in solution. In particular, the recognition events between viruses and host cells are dominated by both specific and non-specific interactions and the electric charge of viral particles determines the electrostatic force component of the latter. Here we probe the charge of individual viruses in liquid milieu by measuring the electrostatic force between a viral particle and the Atomic Force Microscope tip. The force spectroscopy data of co-adsorbed phi 29 bacteriophage proheads and mature virions, adenovirus and minute virus of mice capsids is utilized for obtaining the corresponding density of charge for each virus. The systematic differences of the density of charge between the viral particles are consistent with the theoretical predictions obtained from X-ray structural data. Our results show that the density of charge is a distinguishing characteristic of each virus, depending crucially on the nature of the viral capsid and the presence/absence of the genetic material.
机译:静电学的基本驾驶生物分子之间的相互作用的力量解决方案。病毒与宿主细胞之间是由特异性和非特异性相互作用和病毒颗粒的电荷决定后者的静电力组件。在这里,我们调查的指控单个病毒通过测量静电液体环境病毒粒子和原子之间的力力显微镜小费。co-adsorbedφ29噬菌体proheads和成熟的病毒粒子,腺病毒和病毒老鼠衣壳是用于获取相应的电荷密度为每一个病毒。系统的密度的差异电荷之间的病毒颗粒是一致的与理论预测得到x射线结构数据。电荷密度是有区别的每个病毒的特点,根据至关重要病毒衣壳和的性质/没有遗传物质存在。

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