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外周蛋白与带电脂质膜结合过程中的蛋白质表面分布及蛋白质-蛋白质相互作用。

Protein surface-distribution and protein-protein interactions in the binding of peripheral proteins to charged lipid membranes.

作者信息

Heimburg T, Marsh D

机构信息

Max-Planck-Institut für biophysikalische Chemie, Abt. Spektroskopie, Göttingen, Germany.

出版信息

Biophys J. 1995 Feb;68(2):536-46. doi: 10.1016/S0006-3495(95)80215-8.

Abstract

The binding of native cytochrome c to negatively charged lipid dispersions of dioleoyl phosphatidylglycerol has been studied over a wide range of ionic strengths. Not only is the strength of protein binding found to decrease rapidly with increasing ionic strength, but also the binding curves reach an apparent saturation level that decreases rapidly with increasing ionic strength. Analysis of the binding isotherms with a general statistical thermodynamic model that takes into account not only the free energy of the electrostatic double layer, but also the free energy of the surface distribution of the protein, demonstrates that the apparent saturation effects could arise from a competition between the out-of-plane binding reaction and the lateral in-plane interactions between proteins at the surface. It is found that association with nonlocalized sites results in binding isotherms that display the apparent saturation effect to a much more pronounced extent than does the Langmuir adsorption isotherm for binding to localized sites. With the model for nonlocalized sites, the binding isotherms of native cytochrome c can be described adequately by taking into account only the entropy of the surface distribution of the protein, without appreciable enthalpic interactions between the bound proteins. The binding of cytochrome c to dioleoyl phosphatidylglycerol dispersions at a temperature at which the bound protein is denatured on the lipid surface, but is nondenatured when free in solution, has also been studied. The binding curves for the surface-denatured protein differ from those for the native protein in that the apparent saturation at high ionic strength is less pronounced. This indicates the tendency of the denatured protein to aggregate on the lipid surface, and can be described by the binding isotherms for nonlocalized sites only if attractive interactions between the surface-bound proteins are included in addition to the distributional entropic terms. Additionally, it is found that the binding capacity for the native protein is increased at low ionic strength to a value that is greater than that for complete surface coverage, and that corresponds more closely to neutralization of the effective charge (determined from the ionic strength dependence), rather than of the total net charge, on the protein. Electron spin resonance experiments with spin-labeled lipids indicate that this different mode of binding arises from a penetration or disturbance of the bilayer surface by the protein that may alleviate the effects of in-plane interactions under conditions of strong binding.

摘要

已在很宽的离子强度范围内研究了天然细胞色素c与二油酰磷脂酰甘油带负电荷的脂质分散体的结合。不仅发现蛋白质结合强度随离子强度增加而迅速降低,而且结合曲线达到的表观饱和水平也随离子强度增加而迅速降低。用一个综合统计热力学模型分析结合等温线,该模型不仅考虑了静电双层的自由能,还考虑了蛋白质表面分布的自由能,结果表明,表观饱和效应可能源于平面外结合反应与表面蛋白质之间的侧向平面内相互作用的竞争。研究发现,与非定位位点的结合导致结合等温线比与定位位点结合的朗缪尔吸附等温线更明显地表现出表观饱和效应。对于非定位位点模型,仅考虑蛋白质表面分布的熵,而不考虑结合蛋白质之间明显的焓相互作用,就可以充分描述天然细胞色素c的结合等温线。还研究了细胞色素c在脂质表面结合蛋白变性但在溶液中游离时未变性的温度下与二油酰磷脂酰甘油分散体的结合。表面变性蛋白的结合曲线与天然蛋白的结合曲线不同,在于高离子强度下的表观饱和不太明显。这表明变性蛋白在脂质表面聚集的趋势,并且只有在除了分布熵项之外还包括表面结合蛋白之间的吸引相互作用时,才能用非定位位点的结合等温线来描述。此外,还发现天然蛋白在低离子强度下的结合能力增加到一个大于完全表面覆盖时的值,该值更接近于中和蛋白质上的有效电荷(由离子强度依赖性确定),而不是总净电荷。用自旋标记脂质进行的电子自旋共振实验表明,这种不同的结合模式源于蛋白质对双层表面的穿透或扰动,这可能减轻强结合条件下平面内相互作用的影响。

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