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A study of the molecular sources of nonideal osmotic pressure of bovine serum albumin solutions as a function of pH.

机译:牛血清白蛋白溶液非理想渗透压的分子来源与pH的关系研究。

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摘要

The nonideal osmotic pressure of bovine serum albumin (BSA) solutions was studied extensively by Scatchard and colleagues. The extent of pH- and salt-dependent nonideality changes are large and unexplained. In 1992, Fullerton et al. derived new empirical expressions to describe solution nonideal colligative properties including osmotic pressure (Fullerton et al. 1992. Biochem. Cell Biol. 70:1325-1331). These expressions are based on the concepts of volume occupancy and hydration force. Nonideality is accurately described by a solute/solvent interaction parameter I and an "effective" osmotic molecular weight Ae. This paper uses the interaction-corrected nonideal expressions for osmotic pressure to calculate the hydration I values and "effective" osmotic molecular weight of BSA, Ae, as a function of pH. Both factors vary in a predictable manner due to denaturing of the BSA molecule. Both contribute to an increase in osmotic pressure for the same protein concentration as the solution pH moves away from the isoelectric point. Increased nonideality is caused by larger hydration resulting from larger solvent-accessible surface areas and by the decrease in "effective" osmotic molecular weight, Ae, due to segmental motion of denatured (filamentous) molecules.
机译:Scatchard及其同事广泛研究了牛血清白蛋白(BSA)溶液的非理想渗透压。 pH和盐依赖性非理想性变化的程度很大,无法解释。在1992年,Fullerton等人。派生出新的经验表达式来描述溶液的非理想依数性质,包括渗透压(Fullerton等人1992. Biochem。Cell Biol。70:1325-1331)。这些表述基于体积占有率和水合力的概念。非理想性由溶质/溶剂相互作用参数I和“有效”渗透分子量Ae准确描述。本文使用相互作用校正的渗透压非理想表达式来计算BSA,Ae的水合I值和“有效”渗透分子量与pH的关系。由于BSA分子的变性,这两个因素以可预测的方式变化。当溶液的pH值从等电点移开时,对于相同的蛋白质浓度,两者都有助于增加渗透压。非理想性的增加是由于变性剂(丝状)分子的分段运动导致的更大的水合作用,这是由于较大的溶剂可及表面积导致的,这是由于水合作用增加,以及“有效”渗透分子量Ae的降低所致。

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