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高浓度蛋白质溶液中盐的活度系数。I. 等离子牛血清白蛋白溶液中的碱金属氯化物

Activity coefficients of salts in highly concentrated protein solutions. I. Alkali chlorides in isoionic bovine serum albumin solutions.

作者信息

Reboiras M D, Pfister H, Pauly H

出版信息

Biophys Chem. 1978 Nov;9(1):37-46. doi: 10.1016/0301-4622(78)87013-6.

Abstract

In order to understand the thermodynamic state of simple salts in living cells, the mean activity coefficients of LiCl, NaCl, KCl, RbCl, CsCl were determined in concentrated isoionic bovine serum albumin (BSA) solutions by use of the EMF method with ion exchange membrane electrodes. The protein concentration range extended up to 22 wt%, whereas the salt concentration was kept constant at 0.1 mole per kilogram water. These solutions may be regarded as crude but appropriate model systems for the cytoplasm of cells as far as type and magnitude of the macromolecular component influence on the chemical potential of the salts is concerned. The mean stoichiometric activity coefficients of the alkali chlorides in the isoionic BSA solutions decreased linearly with the protein molality; this decrease, however, did not exceed ca. 10% compared with the pure 0.1 molal salt solutions. Only very small differences in the behavior of the different alkali chlorides were observed. The results may be interpreted by the superposition of the effects of specific Cl- ion binding to BSA and BSA bound "non-solvent" water with probably electrostatic long range interactions of the BSA(Cl-)nu polyions with the salt ions in solution. The resulting mean activity coefficients, corrected for ion binding and non-solvent water, showed a very slight linear dependence on the protein concentration. The departure from the value in the pure 0.1 molal salt solutions did not exceed +/- 2%.

摘要

为了了解活细胞中简单盐类的热力学状态,采用离子交换膜电极的电动势法,测定了LiCl、NaCl、KCl、RbCl、CsCl在浓缩等离子强度牛血清白蛋白(BSA)溶液中的平均活度系数。蛋白质浓度范围扩展至22 wt%,而盐浓度保持恒定,为每千克水0.1摩尔。就大分子成分对盐类化学势的影响类型和程度而言,这些溶液可被视为细胞胞质的粗略但合适的模型体系。等离子强度BSA溶液中碱金属氯化物的平均化学计量活度系数随蛋白质质量摩尔浓度呈线性下降;然而,与纯0.1 molal盐溶液相比,这种下降不超过约10%。仅观察到不同碱金属氯化物的行为存在非常小的差异。这些结果可以通过特异性Cl-离子与BSA结合以及BSA结合的“非溶剂”水的影响叠加来解释,可能还伴随着BSA(Cl-)nu聚离子与溶液中盐离子的静电长程相互作用。经离子结合和非溶剂水校正后的平均活度系数对蛋白质浓度呈现出非常轻微的线性依赖关系。与纯0.1 molal盐溶液中的值相比,偏差不超过±2%。

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