Quandt F N, Nicol G D, Schnetkamp P P
Lions Sight Centre, University of Calgary Faculty of Medicine, Alberta, Canada.
Neuroscience. 1991;42(3):629-38. doi: 10.1016/0306-4522(91)90032-j.
The properties of the cyclic-GMP-activated conductance in the plasma membrane of bovine rod outer segments were studied in excised membranes. Multiple-channel and single-channel currents were recorded by the patch-clamp technique in symmetrical NaCl solutions which were free of divalent cations. The current-voltage relationship for the current, recorded when a large population of channels was activated, exhibited outward rectification. Rectification decreased as the concentration of cyclic-GMP was increased, and the concentration of cyclic-GMP required for half maximal activation of the channel decreased with depolarization. At a concentration of 1-3 microM cyclic-GMP, single-channel activity could be observed from these excised patches. The conductance of the open channel was 6 pS and was independent of the membrane potential. These results are consistent with the interpretation that under these conditions, the mechanism responsible for the outward rectification is due to an increase in the probability of an open channel as the membrane is depolarized. The cyclic-GMP-activated current could be blocked by L-cis-diltiazem. Block was voltage and time dependent. The time constant for the onset of block and its steady state level increased with depolarization. The extent of block by diltiazem was not enhanced as the cyclic-GMP concentration was increased, suggesting that the channel is not required to be open for block to occur. Complete block was never attained even for high concentrations of diltiazem. However, the diltiazem-resistant component of the cyclic-GMP-activated current could be blocked by tetracaine.
在离体膜片上研究了牛视杆细胞外段质膜中环状鸟苷单磷酸(cGMP)激活的电导特性。采用膜片钳技术在不含二价阳离子的对称氯化钠溶液中记录多通道和单通道电流。当大量通道被激活时记录的电流-电压关系呈现外向整流特性。随着cGMP浓度增加,整流作用减弱,且通道半最大激活所需的cGMP浓度随去极化而降低。在1-3微摩尔/升的cGMP浓度下,可从这些离体膜片中观察到单通道活性。开放通道的电导为6皮安,且与膜电位无关。这些结果与以下解释一致:在这些条件下,外向整流的机制是由于膜去极化时开放通道概率增加。cGMP激活的电流可被L-顺式地尔硫䓬阻断。阻断作用与电压和时间有关。阻断起始的时间常数及其稳态水平随去极化增加。随着cGMP浓度增加地尔硫䓬的阻断程度未增强,这表明通道阻断发生时不一定需要开放。即使使用高浓度的地尔硫䓬也从未实现完全阻断。然而,cGMP激活电流中对地尔硫䓬耐药的成分可被丁卡因阻断。