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吸附在云母上的蛋白A的表面形态与表面力之间的相关性。

Correlation between surface morphology and surface forces of protein A adsorbed on mica.

作者信息

Ohnishi S, Murata M, Hato M

机构信息

Department of Polymer Physics, National Institute of Materials and Chemical Research, Ibaraki, Japan.

出版信息

Biophys J. 1998 Jan;74(1):455-65. doi: 10.1016/S0006-3495(98)77803-8.

Abstract

We have investigated the morphology and surface forces of protein A adsorbed on mica surface in the protein solutions of various concentrations. The force-distance curves, measured with a surface force apparatus (SFA), were interpreted in terms of two different regimens: a "large-distance" regimen in which an electrostatic double-layer force dominates, and an "adsorbed layer" regimen in which a force of steric origin dominates. To further clarify the forces of steric origin, the surface morphology of the adsorbed protein layer was investigated with an atomic force microscope (AFM) because the steric repulsive forces are strongly affected by the adsorption mode of protein A molecules on mica. At lower protein concentrations (2 ppm, 10 ppm), protein A molecules were adsorbed "side-on" parallel to the mica surfaces, forming a monolayer of approximately 2.5 nm. AFM images at higher concentrations (30 ppm, 100 ppm) showed protruding structures over the monolayer, which revealed that the adsorbed protein A molecules had one end oriented into the solution, with the remainder of each molecule adsorbed side-on to the mica surface. These extending ends of protein A overlapped each other and formed a "quasi-double layer" over the mica surface. These AFM images proved the existence of a monolayer of protein A molecules at low concentrations and a "quasi-double layer" with occasional protrusions at high concentrations, which were consistent with the adsorption mode observed in the force-distance curves.

摘要

我们研究了在不同浓度蛋白质溶液中吸附在云母表面的蛋白A的形态和表面力。使用表面力仪(SFA)测量的力-距离曲线,根据两种不同的情况进行解释:一种是“大距离”情况,其中静电双层力占主导;另一种是“吸附层”情况,其中空间位阻力占主导。为了进一步阐明空间位阻力,用原子力显微镜(AFM)研究了吸附蛋白层的表面形态,因为空间位阻排斥力受蛋白A分子在云母上的吸附模式强烈影响。在较低蛋白质浓度(2 ppm、10 ppm)下,蛋白A分子“侧着”平行于云母表面吸附,形成约2.5 nm的单层。较高浓度(30 ppm、100 ppm)下的AFM图像显示单层上有突出结构,这表明吸附的蛋白A分子一端伸向溶液,每个分子的其余部分侧着吸附在云母表面。蛋白A的这些伸出端相互重叠,在云母表面形成一个“准双层”。这些AFM图像证明了低浓度下存在蛋白A分子单层,高浓度下存在偶尔有突出的“准双层”,这与在力-距离曲线中观察到的吸附模式一致。

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