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水和溶质与蛋白质混合物及蛋白质包被氧化铝的结合。

Binding of water and solute to protein-mixture and protein-coated alumina.

作者信息

Dutta P, Hajra S, Chattoraj D K

机构信息

Department of Food Technology & Biochemical Engg., Jadavpur University, Calcutta, India.

出版信息

Indian J Biochem Biophys. 1997 Oct;34(5):449-60.

PMID:9594425
Abstract

Extent of water vapour adsorption (n1) of gelatin and bovine serum albumin and their mixtures in different proportion respectively has been measured by isopiestic vapour pressure methods at various values of water activity (a1) ranging between zero and unity. Similar measurements have also been carried out with gelatin and BSA coated alumina powder. At a given value of a1, n1 for the protein mixture is found to be significantly less than their ideal value obtained from the additivity rule. Such decrease is probably due to the protein-protein interaction as a result of which some of the water binding sites become unavailable for water vapour adsorption. On the other hand when a protein is mixed with alumina powder, the water vapour adsorption of the protein coated alumina surface at a given water activity is found to be 2 to 3 times larger than its ideal value obtained from the additivity rule. The standard free energy changes for hydration of protein mixtures and protein-coated alumina have been evaluated using Bull equation. The extent of excess hydration of these proteins and their mixtures as well as protein-coated alumina in the presence of excess neutral salts and urea respectively have been evaluated using the isopiestic method. In all cases, the moles of water and solute respectively bound in absolute amount to biopolymers, biopolymer mixtures and protein-coated alumina have been evaluated in the limited range of solute concentrations in the medium. Based on the Gibbs-Duhem equations, a rigorous expression for the standard free energy change for binding of excess solute and solvent to biopolymer have been evaluated with reference to unit solute mole fraction as standard state. Free energies of excess hydration of different biopolymer systems have been evaluated using this equation.

摘要

分别采用等压蒸气压法,在水活度(a1)介于零和一之间的不同值下,测定了明胶、牛血清白蛋白及其不同比例混合物的水蒸气吸附程度(n1)。还对明胶和牛血清白蛋白包覆的氧化铝粉末进行了类似测量。在给定的a1值下,发现蛋白质混合物的n1明显小于根据加和规则得到的理想值。这种降低可能是由于蛋白质 - 蛋白质相互作用,导致一些水结合位点无法用于水蒸气吸附。另一方面,当一种蛋白质与氧化铝粉末混合时,发现在给定水活度下,蛋白质包覆的氧化铝表面的水蒸气吸附量比根据加和规则得到的理想值大2至3倍。使用布尔方程评估了蛋白质混合物和蛋白质包覆氧化铝水合作用的标准自由能变化。分别使用等压法评估了这些蛋白质及其混合物以及蛋白质包覆氧化铝在存在过量中性盐和尿素时的过量水合程度。在所有情况下,在介质中溶质浓度的有限范围内,分别评估了与生物聚合物、生物聚合物混合物和蛋白质包覆氧化铝绝对结合的水和溶质的摩尔数。基于吉布斯 - 杜亥姆方程,以单位溶质摩尔分数为标准态,评估了过量溶质和溶剂与生物聚合物结合的标准自由能变化的严格表达式。使用该方程评估了不同生物聚合物系统的过量水合自由能。

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