Kuba K, Tanaka E, Kumamoto E, Minota S
Department of Physiology, Saga Medical School, Japan.
Pflugers Arch. 1989 Jun;414(2):105-12. doi: 10.1007/BF00580950.
Nicotinic acetylcholine-receptor ion channels (AChR channels) were studied in bullfrog sympathetic ganglion cells cultured for 1 day to 3 weeks, using a patch clamp technique. Microsuperfusion of ACh (2-10 microM) to the ganglion cell under the whole cell clamp produced an inward current at membrane potentials negative to -60 mV, which had a fast onset and decay. This rapid ACh-induced current was accompanied by a large current fluctuation, decreased and increased in amplitude by membrane depolarization and hyperpolarization, respectively, and blocked by d-tubocurarine. Thus, this current must be induced by the nicotinic action of ACh, but not by a muscarinic effect to activate a slow cation-selective current. At depolarized levels more than -50 mV, ACh induced an additional inward current which was slow in time course, accompanied by no or decreased current fluctuation and increased in amplitude by membrane depolarization. Accordingly, this slow ACh-induced current could result from the suppression of a voltage-dependent K+ current (M-current: Brown and Adams 1980) by the muscarinic action of ACh. Fluctuation analysis of the rapid ACh-induced current at potentials negative to -50 mV revealed the elementary conductance of 14 pS and a power spectral density distribution of the double Lorentzian function which yielded the time constants of 5.4 and 62.5 ms at -60 to -80 mV. The variance of either component was independent of the mean current.
采用膜片钳技术,对培养1天至3周的牛蛙交感神经节细胞中的烟碱型乙酰胆碱受体离子通道(AChR通道)进行了研究。在全细胞钳制下,向神经节细胞微量灌注乙酰胆碱(2 - 10 μM),在膜电位负于 -60 mV时产生内向电流,该电流起始和衰减迅速。这种快速的乙酰胆碱诱导电流伴有较大的电流波动,膜去极化时电流幅度减小,膜超极化时电流幅度增大,并被筒箭毒碱阻断。因此,该电流必定是由乙酰胆碱的烟碱样作用诱导产生的,而非由毒蕈碱样作用激活慢阳离子选择性电流所致。在去极化水平超过 -50 mV时,乙酰胆碱诱导出另一种内向电流,其时间进程缓慢,电流波动不明显或减小,膜去极化时电流幅度增大。因此,这种缓慢的乙酰胆碱诱导电流可能是由乙酰胆碱的毒蕈碱样作用抑制电压依赖性钾电流(M电流:Brown和Adams,1980)所致。对负于 -50 mV电位下快速的乙酰胆碱诱导电流进行波动分析,结果显示其基本电导为14 pS,功率谱密度分布符合双洛伦兹函数,在 -60至 -80 mV时时间常数分别为5.4和62.5 ms。任一成分的方差均与平均电流无关。