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聚合物支撑脂质层中膜分子的电荷测定

Charge determination of membrane molecules in polymer-supported lipid layers.

作者信息

Dietrich C, Tampé R

机构信息

Physik Department, Technische Universität München, Garching, Germany.

出版信息

Biochim Biophys Acta. 1995 Sep 13;1238(2):183-91. doi: 10.1016/0005-2736(95)00129-q.

Abstract

A method for two-dimensional micro-electrophoresis and charge determination of fluorescence-labeled membrane molecules in lipid layers is presented. Therefore, the labeled molecules are dissolved in a lipid monolayer which acts as a fluid matrix. The essential part of the sample preparation is an aqueous polymer film composed of agarose onto which the layer is transferred by Langmuir-Blodgett technique. The induced force of an applied electric field leads to a drift of the charged fluorescent molecules. The mobility is determined by an analysis of the steady-state bleach profile which is produced by continuous fluorescence micro-photolysis of a rectangular area of the monolayer. Testing a variety of amphiphilic molecules, measurements yielded values of zero, plus or minus one elementary net charge within a margin of error. The experimental set-up described here can be used for lateral separation, enrichment and isoelectric focusing of membrane components.

摘要

本文介绍了一种用于脂质层中荧光标记膜分子的二维微电泳和电荷测定的方法。因此,将标记分子溶解在作为流体基质的脂质单层中。样品制备的关键部分是由琼脂糖组成的水性聚合物膜,通过朗缪尔-布洛杰特技术将脂质层转移到该膜上。施加电场产生的诱导力导致带电荧光分子漂移。迁移率通过对稳态漂白轮廓的分析来确定,该轮廓是由单层矩形区域的连续荧光微光解产生的。测试了多种两亲分子,测量结果在误差范围内得出零、正负一个基本净电荷的值。这里描述的实验装置可用于膜成分的横向分离、富集和等电聚焦。

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