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通过普罗丹荧光检测含胆固醇膜的表面性质。

Surface properties of cholesterol-containing membranes detected by Prodan fluorescence.

作者信息

Krasnowska E K, Bagatolli L A, Gratton E, Parasassi T

机构信息

Istituto di Neurobiologia e Medicina Molecolare, CNR, Viale Marx 15-43, 00137 Rome, Italy.

出版信息

Biochim Biophys Acta. 2001 Apr 2;1511(2):330-40. doi: 10.1016/s0005-2736(01)00286-3.

Abstract

The fluorescent membrane probe 6-propionyl-2-dimethylaminonaphthalene (Prodan) displays a high sensitivity to the polarity and packing properties of lipid membrane. Contrary to 6-lauroyl-2-dimethylaminonaphthalene (Laurdan), Prodan can also monitor the properties of the membrane surface, i.e., the polar-head pretransition. In bilayers composed of coexisting gel and liquid-crystalline phases, Prodan shows a preferential partitioning in the latter, so that the detected membrane properties mainly belong to fluid domains. In the presence of cholesterol, the packing properties of the gel phase phospholipids are modified in such a way that Prodan can penetrate and label the membrane. Although Prodan labeling of the gel phase is a function of cholesterol concentration, 3 mol percent cholesterol is sufficient for a 60% Prodan labeling with respect to the maximum labeling reached at 15 mol percent cholesterol. We present steady-state and dynamical fluorescence measurements of Prodan in bilayers in the presence of cholesterol. Our results fit the liquid-ordered/liquid-disordered phase model for cholesterol-containing membranes and show that the presence of cholesterol, in addition to modification to the phase state of the hydrophobic portion of the bilayer, strongly affects the packing and the polarity of the membrane hydrophobic-hydrophilic interface.

摘要

荧光膜探针6-丙酰基-2-二甲基氨基萘(Prodan)对脂质膜的极性和堆积特性具有高度敏感性。与6-月桂酰基-2-二甲基氨基萘(Laurdan)不同,Prodan还可以监测膜表面的特性,即极性头部预转变。在由共存的凝胶相和液晶相组成的双层膜中,Prodan在后者中表现出优先分配,因此检测到的膜特性主要属于流体域。在存在胆固醇的情况下,凝胶相磷脂的堆积特性会以这样一种方式被改变,即Prodan可以穿透并标记膜。尽管Prodan对凝胶相的标记是胆固醇浓度的函数,但相对于在15摩尔百分比胆固醇时达到的最大标记,3摩尔百分比的胆固醇足以实现60%的Prodan标记。我们展示了在存在胆固醇的情况下双层膜中Prodan的稳态和动态荧光测量结果。我们的结果符合含胆固醇膜的液相有序/液相无序相模型,并表明胆固醇的存在,除了改变双层膜疏水部分的相态外,还强烈影响膜疏水-亲水界面的堆积和极性。

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