Willems G M, Hermens W T, Hemker H C
Cardiovascular Research Institute Maastricht, University of Limburg, The Netherlands.
J Biomater Sci Polym Ed. 1991;2(3):217-26. doi: 10.1080/09205063.1991.9756661.
Data on protein adsorption usually show that for increasing surface coverage the adsorption velocity decreases much faster than linearly. This contrasts to the classical Langmuir model with an adsorption velocity proportional to the number of unoccupied binding sites. It has been shown that this non-linearity may explain phenomena like transient adsorption of different proteins from a protein mixture or dilution-dependent changes in binding properties, collectively called Vroman effects. However, the molecular mechanisms explaining this non-linear behavior remain to be established. A Monte Carlo simulation model is presented that incorporates steric hindrance, lateral mobility and mutual interactions of adsorbed molecules. Experimental data on the adsorption kinetics of prothrombin and annexin V, a recently discovered anticoagulant protein, at phospholipid bilayers are analyzed with this model. A major conclusion is that the steep decline in adsorption rates for increasing surface coverage can be explained, without assuming repulsive forces between adsorbed molecules, as a surface exclusion effect combined with lateral mobility of adsorbed molecules. The fact that annexin V shows this effect to a much lesser degree than prothrombin is tentatively explained by clustering of adsorbed annexin V molecules. A qualitative effect of lateral mobility on the adsorption characteristics, predicted by the model, is confirmed in experiments in which the fluidity of the bilayers was manipulated.
关于蛋白质吸附的数据通常表明,随着表面覆盖率的增加,吸附速度下降的速度比线性下降快得多。这与经典的朗缪尔模型形成对比,在该模型中,吸附速度与未占据结合位点的数量成正比。已经表明,这种非线性可以解释诸如从蛋白质混合物中不同蛋白质的瞬时吸附或结合特性的稀释依赖性变化等现象,这些现象统称为弗罗因德效应。然而,解释这种非线性行为的分子机制仍有待确定。本文提出了一个蒙特卡罗模拟模型,该模型纳入了空间位阻、横向迁移率和吸附分子之间的相互作用。用该模型分析了凝血酶原和膜联蛋白V(一种最近发现的抗凝血蛋白)在磷脂双层上的吸附动力学实验数据。一个主要结论是,在不假设吸附分子之间存在排斥力的情况下,表面覆盖率增加时吸附速率的急剧下降可以解释为表面排斥效应与吸附分子的横向迁移率相结合。膜联蛋白V表现出这种效应的程度比凝血酶原小得多,这一事实初步解释为吸附的膜联蛋白V分子的聚集。该模型预测的横向迁移率对吸附特性的定性影响,在操纵双层流动性的实验中得到了证实。