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Open channel noise. V. Fluctuating barriers to ion entry in gramicidin A channels.

机译:明渠噪音。 V.波动的壁垒以防止短杆菌肽A通道中的离子进入。

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摘要

We have measured the fluctuations in the current through gramicidin A (GA) channels in symmetrical solutions of monovalent cations of various concentrations, and compared the spectral density values with those computed using E. Frehland's theory for noise in discrete transport systems (Frehland, E. 1978. Biophys. Chem. 8:255-265). The noise for the transport of NH4+ and Na+ ions in glycerol-monooleate/squalene membranes could be accounted for entirely by "shot noise" in the process of transport through a single-filing pore with two ion binding sites. However, in confirmation of results in a previous paper (Sigworth, F. J., D. W. Urry, and K. U. Prasad. 1987. Biophys. J. 52:1055-1064) currents of Cs+ showed a substantial excess noise at low ion concentrations, as did currents of K+ and Rb+. The excess noise was increased in thicker membranes. The observations are accounted for by a theory that postulates fluctuations of the entry rates of ions into the channel on a time scale of approximately 1 microsecond. These fluctuations occur preferentially when the channel is empty; the presence of bound ions stabilizes the "high conductance" conformation of the channel. The fluctuations are sensed to different degrees by the various ion species, and their kinetics depend on membrane thickness.
机译:我们已经测量了在各种浓度的单价阳离子对称溶液中通过短杆菌肽A(GA)通道产生的电流波动,并将光谱密度值与使用E.Frehland理论计算的离散运输系统中的噪声进行了比较(Frehland,E. 1978.Biophys.Chem.8:255-265)。甘油单油酸酯/角鲨烯膜中NH4 +和Na +离子运输的噪声可以完全通过“散粒噪声”解决,该噪声是通过带有两个离子结合位点的单孔进行的运输过程中的“散粒噪声”。但是,为证实先前的论文(Sigworth,FJ,DW Urry和KU Prasad。1987. Biophys。J. 52:1055-1064)中的结果,Cs +电流在低离子浓度下显示出明显的过量噪声,电流也是如此。 K +和Rb +。较厚的膜会增加多余的噪音。观察结果是由一种理论解释的,该理论假定离子进入通道的速率在大约1微秒的时间范围内波动。当通道为空时,这些波动优先发生。结合离子的存在稳定了通道的“高电导”构象。各种离子种类在不同程度上感测起伏,其动力学取决于膜的厚度。

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