Minton Allen P
Laboratory of Biochemistry and Genetics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, U.S. Department of Health and Human Services, Bethesda, Maryland, USA.
Biophys J. 2007 Aug 15;93(4):1321-8. doi: 10.1529/biophysj.107.103895. Epub 2007 May 25.
Exact expressions for the static light scattering of a solution containing up to three species of point-scattering solutes in highly nonideal solutions at arbitrary concentration are obtained from multicomponent scattering theory. Explicit expressions for thermodynamic interaction between solute molecules, required to evaluate the scattering relations, are obtained using an equivalent hard particle approximation similar to that employed earlier to interpret scattering of a single protein species at high concentration. The dependence of scattering intensity upon total protein concentration is calculated for mixtures of nonassociating proteins and for a single self-associating protein over a range of concentrations up to 200 g/l. An approximate semiempirical analysis of the concentration dependence of scattering intensity is proposed, according to which the contribution of thermodynamic interaction to scattering intensity is modeled as that of a single average hard spherical species. Simulated data containing pseudo-noise comparable in magnitude to actual experimental uncertainty are modeled using relations obtained from the proposed semiempirical analysis. It is shown that by using these relations one can extract from the data reasonably reliable information about underlying weak associations that are manifested only at very high total protein concentration.
从多组分散射理论中得出了在任意浓度下高度非理想溶液中含有多达三种点散射溶质的溶液的静态光散射精确表达式。使用类似于早期用于解释高浓度下单种蛋白质散射的等效硬粒子近似,得到了评估散射关系所需的溶质分子间热力学相互作用的显式表达式。计算了非缔合蛋白质混合物以及单一自缔合蛋白质在高达200 g/l浓度范围内散射强度对总蛋白质浓度的依赖性。提出了对散射强度浓度依赖性的近似半经验分析,据此将热力学相互作用对散射强度的贡献建模为单一平均硬球物种的贡献。使用从所提出的半经验分析中获得的关系对包含与实际实验不确定性大小相当的伪噪声的模拟数据进行建模。结果表明,通过使用这些关系,可以从数据中提取关于仅在非常高的总蛋白质浓度下才表现出的潜在弱缔合的合理可靠信息。