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Macromolecular size-and-shape distributions by sedimentation velocity analytical ultracentrifugation

机译:沉降速度分析超速离心的大分子尺寸和形状分布

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Sedimentation velocity analytical ultracentrifugation is an important tool in the characterization of macromolecules and nanoparticles in solution. The sedimentation coefficient distribution c(s) of Lamm equation solutions is based on the approximation of a single, weight-average frictional coefficient of all particles, determined from the experimental data, which scales the diffusion coefficient to the sedimentation coefficient consistent with the traditional s similar to M-2/3 power law. It provides a high hydrodynamic resolution, where diffusional broadening of the sedimentation boundaries is deconvoluted from the sedimentation coefficient distribution. The approximation of a single weight-average frictional ratio is favored by several experimental factors, and usually gives good results for chemically not too dissimilar macromolecules, such as mixtures of folded proteins. In this communication, we examine an extension to a two-dimensional distribution of sedimentation coefficient and frictional ratio, c( s, f(r)), which is representative of a more general set of size-and-shape distributions, including mass-Stokes radius distributions, c(M, R-S), and sedimentation coefficient-molar mass distributions c(s, M). We show that this can be used to determine average molar masses of macromolecules and characterize macromolecular distributions, without the approximation of any scaling relationship between hydrodynamic and thermodynamic parameters.
机译:沉降速度分析超速离心是表征溶液中大分子和纳米颗粒的重要工具。 Lamm方程解的沉降系数分布c(s)基于所有颗粒的单个重均摩擦系数的近似值,该系数由实验数据确定,将扩散系数缩放为与传统s一致的沉降系数类似于M-2 / 3幂定律。它提供了很高的流体动力学分辨率,其中沉降边界的扩散展宽从沉降系数分布中反褶积。几个实验因素都支持单个重均摩擦比的近似,对于化学上不太相似的大分子(例如折叠蛋白的混合物),通常会产生良好的结果。在本文中,我们研究了沉降系数和摩擦比二维分布c(s,f(r))的扩展,该分布代表了更通用的尺寸和形状分布集,包括质量-斯托克斯半径分布c(M,RS)和沉降系数-摩尔质量分布c(s,M)。我们表明,这可以用于确定大分子的平均摩尔质量并表征大分子的分布,而无需近似流体力学和热力学参数之间的任何比例关系。

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