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定向磷脂双分子层中亲脂蛋白的电子自旋共振自旋标记研究。

An electron spin resonance spin-label study of lipophilin in oriented phospholipid bilayers.

作者信息

Post J F, Dijkema C

出版信息

Arch Biochem Biophys. 1983 Sep;225(2):795-801. doi: 10.1016/0003-9861(83)90091-7.

Abstract

Model membranes consisting of dimyristoyl phosphatidylcholine and a hydrophobic protein from bovine myelin, lipophilin, were studied using the cholesterol-resembling cholestane ESR spin label. Orientation of the membranes made it possible to deconvolute the spectra into two fractions, one of oriented spin labels reflecting phospholipid bilayer of high order, and one of isotropically tumbling spin labels ascribed to the lipid fraction surrounding the protein molecule (boundary lipid). This isotropic tumbling is different from the behavior of phospholipid molecules near the protein, which retain some degree of order, and indicates that the boundary lipid fraction in our model system forms a rather fluid environment for the protein. A nonlinear relation was found between protein concentration and amount of boundary spin labels. Addition of cholesterol decreases the amount of boundary spin labels. Both findings form evidence for a preferential binding of cholesterol by the membrane protein.

摘要

使用类似胆固醇的胆甾烷ESR自旋标记物,对由二肉豆蔻酰磷脂酰胆碱和来自牛髓磷脂的一种疏水蛋白(亲脂蛋白)组成的模型膜进行了研究。膜的取向使得能够将光谱解卷积为两个部分,一个是反映高阶磷脂双层的取向自旋标记物部分,另一个是归因于围绕蛋白质分子的脂质部分(边界脂质)的各向同性翻滚自旋标记物部分。这种各向同性翻滚不同于蛋白质附近磷脂分子的行为,后者保留了一定程度的有序性,这表明我们模型系统中的边界脂质部分为蛋白质形成了一个相当流动的环境。发现蛋白质浓度与边界自旋标记物的量之间存在非线性关系。添加胆固醇会减少边界自旋标记物的量。这两个发现都证明了膜蛋白对胆固醇的优先结合。

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