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不同离子强度下蛋白质与聚电解质复合物形成的光散射研究。

Light scattering study of complex formation between protein and polyelectrolyte at various ionic strengths.

作者信息

Matsunami Hiroshi, Kikuchi Rie, Ogawa Kazuyoshi, Kokufuta Etsuo

机构信息

Graduate School of Life and Environmental Sciences, University of Tsukuba, Tsukuba, Ibaraki 305-8572, Japan.

出版信息

Colloids Surf B Biointerfaces. 2007 Apr 15;56(1-2):142-8. doi: 10.1016/j.colsurfb.2006.10.003. Epub 2006 Oct 10.

Abstract

Formation of protein-polyelectrolyte complexes (PPCs) between bovine serum albumin (BSA) and potassium poly (vinyl alcohol) sulfate (KPVS) was studied at pH 3 as a function of ionic strength. Turbidimetric titration was employed by a combination of dynamic light scattering (DLS) and electrophoretic light scattering (ELS). The formal charge (Z(PPC)) of the resulting PPCs at different ionic strengths were estimated from ELS data by assuming the free draining and the non-free draining model. The radius of a BSA molecule in the complex was used in the former model for calculation of Z(PPC) with the Henry's equation, while in the latter case the hydrodynamic radius of a PPC particle determined from DLS was employed. The results obtained were compared with the Z(PPC) values calculated using a relation of Z(PPC)=n(b)Z(BSA)+alphaZ(KPVS), where Z(BSA) (> or =0) and Z(KPVS) (< or =0) denote the formal charge of BSA and KPVS, respectively. Moreover, n(b) is the number of bound proteins per complex composed of alpha polymer chains. It was suggested that the PPC between BSA and KPVS behaves as a free draining molecule during the electrophoresis, at least at a high ionic strength. Also suggested is that the PPC formation at low ionic strength follows a 1:1 stoichiometry in the charge neutralization.

摘要

在pH值为3的条件下,研究了牛血清白蛋白(BSA)与聚乙烯醇硫酸钾(KPVS)之间蛋白质 - 聚电解质复合物(PPCs)的形成与离子强度的关系。采用动态光散射(DLS)和电泳光散射(ELS)相结合的方法进行比浊滴定。通过假设自由排水模型和非自由排水模型,根据ELS数据估算了不同离子强度下所得PPCs的形式电荷(Z(PPC))。在自由排水模型中,利用复合物中BSA分子的半径,通过亨利方程计算Z(PPC);而在非自由排水模型中,则采用由DLS测定的PPC颗粒的流体力学半径。将所得结果与使用Z(PPC)=n(b)Z(BSA)+αZ(KPVS)关系计算得到的Z(PPC)值进行比较,其中Z(BSA)(≥0)和Z(KPVS)(≤0)分别表示BSA和KPVS的形式电荷。此外,n(b)是由α条聚合物链组成的每个复合物中结合蛋白质的数量。结果表明,至少在高离子强度下,BSA与KPVS之间的PPC在电泳过程中表现为自由排水分子。还表明,在低离子强度下,PPC的形成在电荷中和方面遵循1:1的化学计量比。

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