Perozo E, Jong D S, Bezanilla F
Department of Physiology, University of California, Los Angeles 90024.
J Gen Physiol. 1991 Jul;98(1):19-34. doi: 10.1085/jgp.98.1.19.
The effects of phosphorylation on the properties of the 20-pS channel of the squid giant axon were studied using the cut-open axon technique. Phosphorylation of the channel was achieved by photoreleasing caged ATP (inside the patch pipette) in the presence of the catalytic subunit of the protein kinase A. An inverted K+ gradient (500 K+ external parallel 5 K+ internal) was used to study the activation process. Phosphorylation decreased the frequency of openings of the channel at most potentials by shifting the probability vs. voltage curve toward more positive potentials. The mean open times showed no voltage dependence and were not affected by phosphorylation. The distribution of first latencies, on the other hand, displayed a sharp voltage dependence. Phosphorylation increased the latency to the first opening at all potentials, shifting the median first latency vs. voltage curve toward more positive potentials. The slow inactivation process was studied in the presence of a physiological K+ gradient (10 K+ external parallel 310 K+ internal). Pulses to 40 mV from different holding potentials were analyzed. Phosphorylation increases the overall ensemble probability by decreasing the number of blank traces. A single channel inactivation curve was constructed by computing the relative appearance of blank traces at different holding potentials before and after photoreleasing caged ATP. As determined in dialyzed axons, the effect of phosphorylation consisted in a shift of the inactivation curve toward more positive potentials. The 20-pS channel has the same characteristics as the delayed rectifier current in activation kinetics, steady-state inactivation, and phosphorylation effects.
利用切开的轴突技术研究了磷酸化对鱿鱼巨轴突20-pS通道特性的影响。在蛋白激酶A催化亚基存在的情况下,通过光释放笼化ATP(在膜片移液器内部)实现通道的磷酸化。使用反向K+梯度(外部500 K+与内部5 K+平行)来研究激活过程。磷酸化通过将概率与电压曲线向更正的电位移动,在大多数电位下降低了通道的开放频率。平均开放时间不显示电压依赖性,且不受磷酸化影响。另一方面,首次潜伏期的分布显示出明显的电压依赖性。磷酸化在所有电位下都增加了首次开放的潜伏期,将中位首次潜伏期与电压曲线向更正的电位移动。在生理K+梯度(外部10 K+与内部310 K+平行)存在的情况下研究了缓慢失活过程。分析了从不同保持电位到40 mV的脉冲。磷酸化通过减少空白轨迹的数量增加了整体集合概率。通过计算光释放笼化ATP前后不同保持电位下空白轨迹的相对出现情况构建了单通道失活曲线。如在透析轴突中所确定的,磷酸化的作用在于使失活曲线向更正的电位移动。20-pS通道在激活动力学、稳态失活和磷酸化效应方面与延迟整流电流具有相同的特征。