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Counterions between charged polymers exhibit liquid-like organization and dynamics

机译:带电聚合物之间的抗衡离子表现出类似液体的组织和动力学

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摘要

Current understanding of electrostatics in water is based on mean-field theories like the Poisson-Boltzmann formalism and its approximations, which are routinely used in colloid science and computational biology. This approach, however, breaks down for highly charged systems, which exhibit counterintuitive phenomena such as overcharging and like-charge attraction. Models of counterion correlations have been proposed as possible explanations, but no experimental comparisons are available. Here, collective dynamics of counterions that mediate like-charge attraction between F-actin filaments have been directly observed in aqueous solution using high-resolution inelastic x-ray scattering down to molecular length-scales. We find a previously undescribed acoustic-like phonon mode associated with correlated counterions. The excitation spectra at high wave-vector Q reveal unexpected dynamics due to ions interacting with their "cages" of nearest neighbors. We examine this behavior in the context of intrinsic charge density variations on F-actin. The measured speed of sound and collective relaxation rates in this liquid agree surprisingly well with simple model calculations.
机译:当前对水中静电的理解是基于诸如Poisson-Boltzmann形式主义及其近似法的平均场理论,该理论通常用于胶体科学和计算生物学中。但是,这种方法无法解决高充电系统的问题,这些系统表现出违反直觉的现象,例如过度充电和类似电荷的吸引。已提出抗衡离子相关性的模型作为可能的解释,但没有实验比较可用。在这里,使用低至分子长度尺度的高分辨率非弹性x射线散射,可以直接在水溶液中观察到介导F-肌动蛋白丝之间类似电荷吸引的抗衡离子的集体动力学。我们发现与相关抗衡离子相关的先前未描述的类似声子的声子模式。由于离子与其最邻近的“笼”相互作用,因此高波矢Q处的激发光谱显示出出乎意料的动力学。我们在F-肌动蛋白的固有电荷密度变化的背景下研究了这种行为。在这种液体中测得的声音速度和集体弛豫率与简单的模型计算非常吻合。

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