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脂质双分子层膜中电噪声的相关性分析:短杆菌肽A通道的动力学

Correlation analysis of electrical noise in lipid bilayer membranes: kinetics of gramicidin A channels.

作者信息

Kolb H A, Läuger P, Bamberg E

出版信息

J Membr Biol. 1975;20(1-2):133-54. doi: 10.1007/BF01870632.

Abstract

If a membrane contains ion-conducting channels which form and disappear in a random fashion, an electric current which is passed through the membrane under constant voltage shows statistical fluctuations. Information on the kinetics of channel formation and on the conductance of the single channel may be obtained by analyzing the electrical noise generated in a membrane containing a great number of channels. For this purpose the autocorrelation function of the current noise is measured at different concentrations of the channel-forming substance. As a test system for the application of this technique we have used lipid bilayer membranes doped with gramicidin A. From the correlation time of the current noise generated by the membrane, the rate constants of formation (k-R) and dissociation (k-D) of the channels could be determined. In addition, the mean square of the current fluctuations yielded the single-channel conductance lambda. The values of k-R, k-D, and lambda obtained from the noise analysis agreed closely with the values determined by relaxation measurments and single-channel experiments.

摘要

如果细胞膜含有以随机方式形成和消失的离子传导通道,那么在恒定电压下通过该膜的电流会呈现出统计涨落。通过分析包含大量通道的膜中产生的电噪声,可以获得有关通道形成动力学和单通道电导的信息。为此,在不同浓度的通道形成物质下测量电流噪声的自相关函数。作为应用该技术的测试系统,我们使用了掺杂短杆菌肽A的脂质双分子层膜。根据膜产生的电流噪声的相关时间,可以确定通道形成(k-R)和解离(k-D)的速率常数。此外,电流涨落的均方给出了单通道电导λ。从噪声分析获得的k-R、k-D和λ值与通过弛豫测量和单通道实验确定的值非常吻合。

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