Solc C K, Aldrich R W
Department of Neurobiology, Stanford University School of Medicine, California 94305-5401.
J Gen Physiol. 1990 Jul;96(1):135-65. doi: 10.1085/jgp.96.1.135.
The voltage-dependent gating of transient A2-type potassium channels from primary cultures of larval Drosophila central nervous system neurons was studied using whole-cell and single-channel voltage clamp. A2 channels are genetically distinct from the Shaker A1 channels observed in Drosophila muscle, and differ in single-channel conductance, voltage dependence, and gating kinetics. Single A2 channels were recorded and analyzed at -30, -10, +10, and +30 mV. The channels opened in bursts in response to depolarizing steps, with three to four openings per burst and two to three bursts per 480-ms pulse (2.8-ms burst criterion). Mean open durations were in a range of 2-4 ms and mean burst durations in a range of 9-17 ms. With the exception of the first latency distributions, none of the means of the distributions measured showed a consistent trend with voltage. Macroscopic inactivation of both whole-cell A currents and ensemble average currents of single A2 channels was well fitted by a sum of two exponentials. The fast time constants in different cells were in a range of 9-25 ms, and the slow time constants in a range of 60-140 ms. A six-state kinetic model (three closed, one open, two inactivated states) was tested at four command voltages by fitting frequency histograms of open durations, burst durations, burst closed durations, number of openings per burst, and number of bursts per trace. The model provided good fits to these data, as well as to the ensemble averages. With the exception of the rates leading to initial opening, the transitions in the model were largely independent of voltage.
利用全细胞和单通道电压钳技术,研究了来自果蝇幼虫中枢神经系统神经元原代培养物的瞬时A2型钾通道的电压依赖性门控。A2通道在基因上与果蝇肌肉中观察到的Shaker A1通道不同,在单通道电导、电压依赖性和门控动力学方面存在差异。在-30、-10、+10和+30 mV下记录并分析单A2通道。通道在去极化步骤中以爆发形式开放,每个爆发有三到四个开放,每480毫秒脉冲有两到三个爆发(爆发标准为2.8毫秒)。平均开放持续时间在2-4毫秒范围内,平均爆发持续时间在9-17毫秒范围内。除了第一个潜伏期分布外,所测量的分布均值均未显示出与电压一致的趋势。全细胞A电流和单A2通道的总体平均电流的宏观失活都很好地拟合为两个指数之和。不同细胞中的快速时间常数在9-25毫秒范围内,慢速时间常数在60-140毫秒范围内。通过拟合开放持续时间、爆发持续时间、爆发关闭持续时间、每个爆发的开放次数和每个轨迹的爆发次数的频率直方图,在四个指令电压下测试了一个六态动力学模型(三个关闭态、一个开放态、两个失活态)。该模型对这些数据以及总体平均值都提供了很好的拟合。除了导致初始开放的速率外,模型中的转换在很大程度上与电压无关。