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以血清白蛋白 - 脂质体复合物作为脂蛋白膜模型的研究。

Studies of a serum albumin-liposome complex as a model lipoprotein membrane.

作者信息

Sogor B V, Zull J E

出版信息

Biochim Biophys Acta. 1975 Feb 14;375(3):363-80. doi: 10.1016/0005-2736(75)90353-3.

Abstract

Electron microscopy shows that the lipoprotein dispersions formed from the interaction of negatively charged liposomes with bovine serum albumin contain closed, vesicu lar, multilamellar structures. Discontinuous density gradient studies indicate that the lipoprotein suspensions are vesicles in which bovine serum albumin homogenously associates with lipid. Low angle X-ray diffraction results show that all the systems, positively and negatively charged, with and without protein, have the characteristic lamellar structure observed in biological membranes. The lamellar spacing (bilayer plus water layer) of negatively charged liposomes without bovine serum albumin is 55 A. The same lamellar separation in the positively charged system is 108 A. The lamellar spacing corresponding to bilayer, water, and protein for the negatively charged lipoprotein system is 93 A while that for the positively charged lipoprotein system is 91 A. These dimensions suggest that a layer of protein one molecule thick is incorporated between the lamellae bound to the surface of the bilayer. Wide angle X-ray diffraction results indicate no major effect of the protein on the 4.1 A spacing, characteristic of hexagonal packing of the hydrocarbon chains. A classical light scattering technique is used to show that the lipoprotein systems are osmotically active. The solute permeability exhibited by these lipoprotein systems follows the sequence (glucose smaller than arabinose smaller than malonamide smaller than glycerol). K+ diffusion from negatively charged lipoprotein systems is greater than that found for positively charged lipoprotein systems.

摘要

电子显微镜显示,由带负电荷的脂质体与牛血清白蛋白相互作用形成的脂蛋白分散体含有封闭的、囊泡状的多层结构。不连续密度梯度研究表明,脂蛋白悬浮液是囊泡,其中牛血清白蛋白与脂质均匀结合。低角度X射线衍射结果表明,所有系统,无论带正电还是带负电,有无蛋白质,都具有在生物膜中观察到的特征性层状结构。不带牛血清白蛋白的带负电荷脂质体的层间距(双层加水层)为55埃。带正电荷系统中的相同层间距为108埃。带负电荷的脂蛋白系统中对应于双层、水和蛋白质的层间距为93埃,而带正电荷的脂蛋白系统为91埃。这些尺寸表明,一层单分子厚的蛋白质掺入到与双层表面结合的薄片之间。广角X射线衍射结果表明,蛋白质对烃链六方堆积特征的4.1埃间距没有主要影响。一种经典的光散射技术用于表明脂蛋白系统具有渗透活性。这些脂蛋白系统表现出的溶质渗透性遵循以下顺序(葡萄糖小于阿拉伯糖小于丙二酰胺小于甘油)。带负电荷的脂蛋白系统中K+的扩散大于带正电荷的脂蛋白系统。

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