Rüdisüli A, Weingart R
Department of Physiology, University of Berne, Switzerland.
Pflugers Arch. 1989 Oct;415(1):12-21. doi: 10.1007/BF00373136.
Cell pairs were isolated from adult guinea pig ventricles to study the electrical properties of gap junction channels. The experiments involved a double voltage-clamp approach and whole-cell, tight-seal recording. Heptanol decreased the intracellular current, In, in a dose-dependent fashion. Before complete uncoupling, In showed fluctuations suggesting the operation of gated channels. In the presence of 3 mM heptanol, In showed quantal steps arising from spontaneous opening and closing of single channels. The IV-relationship of the channels was linear (range: +/- 95 mV). Analysis of current records revealed the following single-channel conductances, gamma n: Mean value = 37 pS; median value = 33 pS. gamma n was insensitive to the non-junctional membrane potential (range: -90 to +10 mV). 3 mM ATP4- in the pipette solution had no effects on gamma n, 6 mM ATP4- produced a small decrease, and 6 mM ATP + 0.1 mM cAMP- an increase in gamma n. Channel transitions from closed to open state were variable (range of apparent time constants: 2.5-32 ms; mean: 11 ms).
从成年豚鼠心室分离出细胞对,以研究缝隙连接通道的电学特性。实验采用双电压钳方法和全细胞、紧密封接记录。庚醇以剂量依赖方式降低细胞内电流In。在完全解偶联之前,In显示出波动,提示门控通道的运作。在3 mM庚醇存在下,In显示出由单通道自发开放和关闭引起的量子步阶。通道的电流-电压关系呈线性(范围:±95 mV)。对电流记录的分析揭示了以下单通道电导γn:平均值 = 37 pS;中值 = 33 pS。γn对非连接膜电位不敏感(范围:-90至+10 mV)。移液管溶液中3 mM ATP4-对γn无影响,6 mM ATP4-导致小幅下降,而6 mM ATP + 0.1 mM cAMP使γn增加。通道从关闭状态到开放状态的转变是可变的(表观时间常数范围:2.5 - 32 ms;平均值:11 ms)。