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氧合血红蛋白和羧基血红蛋白水溶液中的介电色散。

Dielectric dispersion in aqueous solutions of oxyhaemoglobin and carboxyhaemoglobin.

作者信息

Grant E H, South G P, Takashima S, Ichimura H

出版信息

Biochem J. 1971 May;122(5):691-9. doi: 10.1042/bj1220691.

Abstract

The relative permittivity and conductivity of aqueous solutions of oxyhaemoglobin and carboxyhaemoglobin were measured over the frequency range 150kHz-100MHz. To minimize errors of measurement the investigations were carried out with three different samples of each type of haemoglobin, independent apparatus being used in two different laboratories. The dielectric increment and relaxation time were calculated at each of several temperatures from the results. These lead to a dipole moment of 400 Debyes and an activation enthalpy of 17.6+/-1.4kJ.mol(-1), both of which were found to be independent of temperature to within experimental error over the range 3-35 degrees C. The value of the dipole moment shows that the distribution of charge throughout the haemoglobin molecule is nearly symmetrical with respect to the centre of charge. The magnitude of the activation enthalpy is similar to that of the viscosity of water, in accord with the common observation that dielectric relaxation and viscosity are related phenomena. No significant differences are found between the dielectric parameters of oxyhaemoglobin and carboxyhaemoglobin. Combining the results with those obtained from X-ray diffraction of the solid a hydration value of 0.45g of water/g of protein is suggested, subject to the limitations of the model used. Finally, the results indicate the presence of a subsidiary dispersion, which could be attributed to the above quantity of bound water having a static permittivity of about 100 and a relaxation frequency in the region 100-200MHz.

摘要

在150kHz至100MHz的频率范围内测量了氧合血红蛋白和羧基血红蛋白水溶液的相对介电常数和电导率。为了将测量误差降至最低,对每种类型的血红蛋白的三个不同样品进行了研究,在两个不同的实验室中使用了独立的仪器。根据结果计算了几个温度下的介电增量和弛豫时间。这些结果得出偶极矩为400德拜,活化焓为17.6±1.4kJ·mol⁻¹,在3至35摄氏度范围内,在实验误差范围内,两者均与温度无关。偶极矩的值表明,整个血红蛋白分子中的电荷分布相对于电荷中心几乎是对称的。活化焓的大小与水的粘度相似,这与介电弛豫和粘度是相关现象这一常见观察结果一致。在氧合血红蛋白和羧基血红蛋白的介电参数之间未发现显著差异。将这些结果与从固体的X射线衍射获得的结果相结合,在所用模型的限制下,建议水合值为0.45g水/g蛋白质。最后,结果表明存在一个次级色散,这可能归因于上述数量的结合水,其静态介电常数约为100,弛豫频率在100 - 200MHz范围内。

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