Kolb H A
J Membr Biol. 1979 Apr 9;45(3-4):277-92. doi: 10.1007/BF01869289.
The conductance noise of the monazomycin pore has been studied by autocorrelation analysis in multi-pore systems. The autocorrelation function could be described by a superposition of two single exponential functions of different time- and voltage-dependence. The slow voltage-dependent correlation time in the range of seconds is assigned to the formation of nonconducting pore precursors. The fast voltage-independent correlation time in the msec range is related to fluctuations in the number of open pores whereby each pore adopts only two conducting states (open and closed). The corresponding correlation amplitude depends on monazomycin concentration and could be related to the single pore conductance. With increasing voltage, a slight increase of the single pore conductance was obtained which is explained on the basis of an electrostatic barrier within the pore. The pore was found to be virtually unselective for different alkali ions (Li, K, Cs).
通过多通道系统中的自相关分析研究了独居霉素通道的电导噪声。自相关函数可以用两个具有不同时间和电压依赖性的单指数函数叠加来描述。秒级范围内缓慢的电压依赖性相关时间被归因于非导电孔前体的形成。毫秒级范围内快速的电压非依赖性相关时间与开放孔数量的波动有关,其中每个孔仅采用两种导电状态(开放和关闭)。相应的相关幅度取决于独居霉素浓度,并且可能与单通道电导有关。随着电压升高,单通道电导略有增加,这是基于通道内的静电屏障来解释的。发现该通道对不同的碱金属离子(锂、钾、铯)几乎没有选择性。