Schroeder I, Hansen U-P
Center of Biochemistry and Molecular Biology (ZBM), Leibnizstr. 11, 24098 Kiel, Germany.
J Membr Biol. 2006 Apr;210(3):199-212. doi: 10.1007/s00232-006-0858-8. Epub 2006 Aug 14.
Single-channel current seems to be one of the most obvious characteristics of ion transport. But in some cases, its determination is more complex than anticipated at first glance. Problems arise from fast gating in time series of patch-clamp current, which can lead to a reduced apparent (measured) single-channel current. Reduction is caused by undetected averaging over closed and open intervals in the anti-aliasing filter. Here it is shown that fitting the measured amplitude histograms by Beta distributions is an efficient tool of reconstructing the true current level from measured data. This approach becomes even more powerful when it is applied to amplitude distributions-per-level. Simulated time series are employed to show that the error sum is a good guideline for finding the correct current level. Furthermore, they show that a Markov model smaller than the one used for gating analysis can be used for current determination (mostly O-C, i.e., open-closed). This increases the reliability of the Beta fit. The knowledge of the true current level is not only important for the understanding of the biophysical properties of the channel. It is also a prerequisite for the correct determination of the rate constants of gating. The approach is applied to measured data. The examples reveal the limits of the analysis imposed by the signal-to-noise ratio and the shape of the amplitude distribution. One application shows that the negative slope of the I-V curve of the human MaxiK channel expressed in HEK293 cells is caused by fast gating.
单通道电流似乎是离子转运最明显的特征之一。但在某些情况下,其测定比乍看之下更为复杂。问题源于膜片钳电流时间序列中的快速门控,这可能导致表观(测量到的)单通道电流降低。降低是由抗混叠滤波器中未检测到的闭合和开放间隔的平均化引起的。本文表明,用贝塔分布拟合测量到的幅度直方图是从测量数据重建真实电流水平的有效工具。当将此方法应用于每一级别的幅度分布时,它会变得更加强大。使用模拟时间序列表明误差总和是找到正确电流水平的良好指导。此外,它们表明可使用比用于门控分析的模型更小的马尔可夫模型来确定电流(主要是开-闭,即开放-闭合)。这提高了贝塔拟合的可靠性。真实电流水平的知识不仅对于理解通道的生物物理特性很重要。它也是正确确定门控速率常数的先决条件。该方法应用于测量数据。这些例子揭示了信噪比和幅度分布形状对分析的限制。一个应用表明,在HEK293细胞中表达的人MaxiK通道的I-V曲线的负斜率是由快速门控引起的。