Jøssang T, Feder J, Rosenqvist E
Institute of Physics, University of Oslo, Blindern, Norway.
J Protein Chem. 1988 Apr;7(2):165-71. doi: 10.1007/BF01025246.
The translational diffusion coefficient D020,w, of monomeric human immunoglobulin G (IgG) has been studied by photon-correlation spectroscopy as a function of pH and protein concentration. At pH 7.6, we find D020,w = 3.89 x 10(-7) cm2/sec, in good agreement with the value determined by classic methods. This value corresponds to an effective hydrodynamic radius R, of 55.1 +/- 0.3 A. As pH is increased to 8.9; with the same ionic strength, the molecule appears to expand slightly (3.5% increase in hydrodynamic radius). The concentration dependence of the IgG diffusion constant is interpreted in terms of solution electrostatic effects and shows that long-range repulsive interactions are negligible in the buffer used. The diffusion coefficient for dimeric IgG has also been determined to be D20,w = 2.81 x 10(-7) +/- 0.04 cm2/sec at 1.6 mg/ml, which corresponds to a hydrodynamic radius of 75 A. For light-scattering studies of protein molecules in the dimension range of 5-10 nm (Mr approximately 10(5)-10(7] we find monomeric horse spleen ferritin well suited as a reference standard. Ferritin is a spherical molecule with a hydrodynamic radius R of 6.9 +/- 0.1 nm and is stable for years in our standard Tris-HCl-NaCl buffer even at room temperature.
已通过光子相关光谱法研究了单体人免疫球蛋白G(IgG)的平移扩散系数D020,w与pH值和蛋白质浓度的关系。在pH 7.6时,我们发现D020,w = 3.89×10^(-7) cm²/秒,与经典方法测定的值吻合良好。该值对应于55.1±0.3 Å的有效流体动力学半径R。当pH值增加到8.9时;在相同离子强度下,分子似乎略有膨胀(流体动力学半径增加3.5%)。IgG扩散常数的浓度依赖性根据溶液静电效应进行解释,结果表明在所使用的缓冲液中长程排斥相互作用可忽略不计。还测定了二聚体IgG在1.6 mg/ml时的扩散系数为D20,w = 2.81×10^(-7)±0.04 cm²/秒,这对应于75 Å的流体动力学半径。对于尺寸范围在5 - 10 nm(Mr约为10^5 - 10^7)的蛋白质分子的光散射研究,我们发现单体马脾铁蛋白非常适合作为参考标准。铁蛋白是一种球形分子,流体动力学半径R为6.9±0.1 nm,即使在室温下,在我们的标准Tris - HCl - NaCl缓冲液中也能稳定存在数年。