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通过大肠杆菌外膜LamB通道开放态和糖诱导关闭态的离子电流噪声分析:糖与通道内部结合动力学的评估

Noise analysis of ion current through the open and the sugar-induced closed state of the LamB channel of Escherichia coli outer membrane: evaluation of the sugar binding kinetics to the channel interior.

作者信息

Nekolla S, Andersen C, Benz R

机构信息

Lehrstuhl für Biotechnologie, Theodor-Boveri-Institut (Biozentrum), Universität Würzburg, Germany.

出版信息

Biophys J. 1994 May;66(5):1388-97. doi: 10.1016/S0006-3495(94)80929-4.

Abstract

LamB, a sugar-specific channel of Escherichia coli outer membrane was reconstituted into lipid bilayer membranes and the current noise was investigated using fast Fourier transformation. The current noise through the open channels had a rather small spectral density, which was a function of the inverse frequency up to about 100 Hz. The spectral density of the noise of the open LamB channels was a quadratic function of the applied voltage. Its magnitude was not correlated to the number of channels in the lipid bilayer membrane. Upon addition of sugars to the aqueous phase the current decreased in a dose-dependent manner. Simultaneously, the spectral density of the current noise increased drastically, which indicated interaction of the sugars with the binding site inside the channel. The frequency dependence of the spectral density was of Lorentzian type, although the power of its frequency dependence was not identical to -2. Analysis of the power density spectra using a previously proposed simple model (Benz, R., A. Schmid, and G. H. Vos-Scheperkeuter. 1987. J. Membr. Biol. 100: 12-29), allowed the evaluation of the on- and the off-rate constants for the maltopentaose binding to the binding site inside the LamB channels. This means also that the maltopentaose flux through the LamB channel could be estimated by assuming a simple one-site, two-barrier model for the sugar transport from the results of the noise analysis.

摘要

LamB是大肠杆菌外膜的一种糖特异性通道,它被重组到脂质双分子层膜中,并使用快速傅里叶变换研究电流噪声。通过开放通道的电流噪声具有相当小的谱密度,它是高达约100 Hz的频率倒数的函数。开放的LamB通道噪声的谱密度是施加电压的二次函数。其大小与脂质双分子层膜中通道的数量无关。向水相中添加糖后,电流以剂量依赖的方式下降。同时,电流噪声的谱密度急剧增加,这表明糖与通道内结合位点发生了相互作用。谱密度的频率依赖性是洛伦兹型的,尽管其频率依赖性的幂与 -2不相同。使用先前提出的简单模型(Benz, R., A. Schmid, and G. H. Vos-Scheperkeuter. 1987. J. Membr. Biol. 100: 12 - 29)对功率密度谱进行分析,可以评估麦芽五糖与LamB通道内结合位点结合的结合和解离速率常数。这也意味着,根据噪声分析的结果,通过假设一个简单的单位点、双屏障模型来进行糖转运,可以估算麦芽五糖通过LamB通道的通量。

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本文引用的文献

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