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Concentration Dependence of the Self-Diffusion of Human and Lumbricus terrestris Hemoglobin

机译:人和陆mb血红蛋白自我扩散的浓度依赖性

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摘要

The self-diffusion coefficient of the extracellular hemoglobin of Lumbricus terrestris (mol wt 3.7 × 106 daltons) has been measured at protein concentrations ranging from 2 to 25 g/100 ml. The self-diffusion coefficient of human hemoglobin has been measured at concentrations between 10 and 43 g/100 ml. For these measurements, 14C-labeled hemoglobin was made to diffuse from one Millipore filter into three consecutively arranged Millipore filters containing unlabeled hemoglobin. After a suitable time the filters were separated, and the protein diffusion coefficient was determined from the distribution of radioactivity in the four filters with a table given by Kawalki (1894, Ann. Phys. Chem. >52:166-190.). The following results were obtained. The diffusion coefficient of Lumbricus hemoglobin is 1.2 × 10-7 cm2s-1 at a protein concentration of 2.1 g/100 ml, and is reduced to about 1/10 of this value when the concentration is 25 g/100 ml (T = 21°C). Between 0 and 16 g/100 ml the logarithm of the diffusion coefficient of Lumbricus hemoglobin falls linearly with concentration. Above 16 g/100 ml a marked increase in the concentration dependence of the diffusion coefficient is observed. Extrapolation of the data to zero hemoglobin concentration yields a limiting value of the diffusion coefficient of Lumbricus hemoglobin of 1.3 × 10-7 cm2s-1. The diffusion coefficient of human hemoglobin is 4.5 × 10-7 cm2s-1 at a hemoglobin concentration of 9.7 g/100 ml, and falls to 0.14 × 10-7 cm2s-1 at a hemoglobin concentration of 43.0 g/100 ml. In addition to diffusivities, the viscosities of human and Lumbricus hemoglobin solutions were measured in a wide range of protein concentrations.The concentration dependence of the diffusivity of Lumbricus hemoglobin is compared to that of myoglobin, ovalbumin, and tetrameric hemoglobin. Proportionality between the diffusion coefficient and the reciprocal of the viscosity of the protein solution is found for all these proteins. It is also shown that an equation proposed by Anderson (1973) gives an excellent description of the diffusivity of the various proteins up to moderate protein concentrations. Above concentrations of 16 g/100 ml for Lumbricus hemoglobin, and 30 g/100 ml for tetrameric hemoglobin, however, protein diffusivity falls much more rapidly with increasing concentration than is predicted by this equation.
机译:在蛋白质浓度为2至25 g / 100 ml的范围内,测定了陆地mb的细胞外血红蛋白的自扩散系数(mol wt 3.7×10 6 道尔顿)。人血红蛋白的自扩散系数已在10至43 g / 100 ml的浓度范围内测量。为了进行这些测量,使 14 标记的血红蛋白从一个密理博过滤器扩散到三个连续排列的含有未标记的血红蛋白的密理博过滤器中。在合适的时间后,分离滤膜,并用Kawalki(1894,Ann。Phys。Chem。> 52 :166)给出的表格从四个滤膜中的放射性分布确定蛋白质扩散系数。 -190。)。获得了以下结果。蛋白质浓度为2.1 g / 100 ml时,Lu血红蛋白的扩散系数为1.2×10 -7 cm 2 s -1 ,并且当浓度为25 g / 100 ml(T = 21°C)时,减少到该值的大约1/10。在0到16 g / 100 ml之间,Lumbricus血红蛋白的扩散系数的对数随浓度线性下降。高于16 g / 100 ml,观察到扩散系数的浓度依赖性显着增加。将数据外推至零血红蛋白浓度可得出Lu血红蛋白扩散系数的极限值为1.3×10 -7 cm 2 s -1 。当血红蛋白浓度为9.7 g / 100 ml时,人血红蛋白的扩散系数为4.5×10 -7 cm 2 s -1 。在血红蛋白浓度为43.0 g / 100 ml时降至0.14×10 -7 cm 2 s -1 。除了弥散性之外,还测量了人和Lumbricus血红蛋白溶液在各种蛋白质浓度下的粘度,并比较了Lumbricus血红蛋白与肌红蛋白,卵清蛋白和四聚体血红蛋白的扩散浓度依赖性。对于所有这些蛋白质,发现了扩散系数与蛋白质溶液粘度的倒数之间的比例。还表明,由安德森(Anderson,1973)提出的方程式很好地描述了各种蛋白质直至中等蛋白质浓度的扩散性。对于黄Lu血红蛋白,浓度高于16 g / 100 ml,对于四聚体血红蛋白,浓度高于30 g / 100 ml,但是,随着浓度的增加,蛋白质的扩散速度比该方程式预测的要快得多。

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