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蛋白质包覆的β-氢氧化铁氧化物颗粒。一项动电和电光研究。

Protein-coated beta-ferric hydrous oxide particles. An electrokinetic and electrooptic study.

作者信息

Dobrikova A G, Dimitrov M I, Taneva S G, Petkanchin I B

机构信息

Institute of Biophysics, Bulgarian Academy of Sciences, Acad. G. Bonchev Str., Bl. 21, Sofia 1113, Bulgaria.

出版信息

Colloids Surf B Biointerfaces. 2007 Apr 15;56(1-2):114-20. doi: 10.1016/j.colsurfb.2006.11.034. Epub 2006 Dec 5.

Abstract

Using microelectrophoresis and electric light scattering techniques, we investigated the adsorption characteristics, surface coverage and surface electric parameters of superstructures from two isoforms of plastocyanin, PCa and PCb, in an oxidized state adsorbed on beta-ferric hydrous oxide particles. The surface electric charge and electric dipole moments of the composite particles and the thickness of the protein adsorption layer are determined in a wide pH range, at different ionic strengths and concentration ratios of PC to beta-FeOOH. The adsorption of the two proteins was found to shift the particles' isoelectric point and to alter the total electric charge and the electric dipole moments of the oxide particles to different extent. A "reversal" in the direction of the permanent dipole moment is observed at lower pH for PCb- than for PCa-coated oxide particles. Strict correlation is found between the changes in the electrokinetic charge of the composite particles and the variation in their "permanent" dipole moments. Data suggest that the adsorption of the proteins is driven by electrostatic and/or hydrophobic interactions with the oxide surfaces dependent on pH. The adsorption behaviour is consistent with the involvement of the "eastern" and "northern" patches of the plastocyanin molecules in their adsorption on the oxide surfaces that are differently charged depending on pH.

摘要

利用微电泳和电光散射技术,我们研究了氧化态下质体蓝素的两种同工型PCa和PCb吸附在β-氢氧化铁颗粒上形成的超结构的吸附特性、表面覆盖率和表面电学参数。在较宽的pH范围内、不同离子强度以及PC与β-FeOOH不同浓度比的条件下,测定了复合颗粒的表面电荷、电偶极矩以及蛋白质吸附层的厚度。发现两种蛋白质的吸附会使颗粒的等电点发生移动,并在不同程度上改变氧化物颗粒的总电荷和电偶极矩。在较低pH值下,观察到PCb包覆的氧化物颗粒的永久偶极矩方向比PCa包覆的氧化物颗粒发生了“反转”。发现复合颗粒的电动电荷变化与其“永久”偶极矩变化之间存在严格的相关性。数据表明,蛋白质的吸附是由与氧化物表面的静电和/或疏水相互作用驱动的,这种相互作用取决于pH值。吸附行为与质体蓝素分子的“东部”和“北部”区域参与其在不同pH值下带不同电荷的氧化物表面的吸附一致。

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