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阿拉伯胶与牛血清白蛋白之间的静电相互作用和复合物形成。

Electrostatic interaction and complex formation between gum arabic and bovine serum albumin.

机构信息

Centre for Water-Soluble Polymers, Glyndwr University, Plas Coch, Mold Road, Wrexham, LL11 2AW, United Kingdom.

出版信息

Biomacromolecules. 2010 Dec 13;11(12):3367-74. doi: 10.1021/bm100486p. Epub 2010 Nov 11.

Abstract

The interaction of gum arabic (GA) and bovine serum albumin (BSA) has been investigated through turbidity and light scattering intensity measurements and by the use of dynamic light scattering, laser Doppler velocimetry, and isothermal titration calorimetry. It has been shown that GA and BSA can form soluble and insoluble complexes depending on the solution pH and the mixing ratio and is a function of the net charge on the complex. Soluble complexes were obtained when the electrophoretic mobility was greater than ±1. 5 μm s(-1) V(-1) cm(-1). Changes in the value of the isoelectric point of the complexes with mixing ratio and isothermal titration calorimetric data indicated that complexes formed at pHs 3 and 4 consisted of ∼60 BSA molecules for every GA molecule, while at pH 5 there were ∼10 BSA molecules per GA molecule. Calorimetric studies also indicated that the interaction occurred in two stages at both pH 3 and pH 4, but that the nature of the interaction at these two pH values was significantly different. This was attributed to differences in the relative magnitude of the positive and negative charges on the BSA and GA, respectively, and possibly due to changes in the BSA conformation. The fact that there is an interaction at pH 5, which is above the isoelectric point of the BSA, is due to the interaction of the carboxylate groups on the GA with positive patches on the BSA or to the charge regulation of the protein-polysaccharide system brought about by changes in dissociation equilibria. Complexation is reduced as the ionic strength of the solvent increases and is prevented at a NaCl concentration of 120 mM.

摘要

通过浊度和光散射强度测量,并结合动态光散射、激光多普勒测速和等温热滴定法,研究了阿拉伯树胶(GA)和牛血清白蛋白(BSA)之间的相互作用。结果表明,GA 和 BSA 可以根据溶液 pH 值和混合比形成可溶和不可溶复合物,并且是复合物净电荷的函数。当电泳迁移率大于±1.5μm s(-1) V(-1) cm(-1)时,可获得可溶性复合物。复合物等电点随混合比的变化和等温热滴定数据表明,在 pH 3 和 4 下形成的复合物由约 60 个 BSA 分子和每 GA 分子组成,而在 pH 5 下,每 GA 分子有 10 个 BSA 分子。量热研究还表明,在 pH 3 和 pH 4 下,该相互作用分两个阶段发生,但这两个 pH 值下的相互作用性质显著不同。这归因于 BSA 和 GA 上的正电荷和负电荷的相对大小的差异,并且可能由于 BSA 构象的变化。在 pH 5 下存在相互作用(BSA 的等电点以上)是由于 GA 上的羧酸盐基团与 BSA 上的正斑点相互作用,或者由于解离平衡变化引起的蛋白质-多糖系统的电荷调节。随着溶剂离子强度的增加,络合作用降低,并在 NaCl 浓度为 120mM 时被阻止。

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