Engel J, Rabba J, Schild D
Physiologisches Institut, Universität Göttingen, Humboldtallee 23, D-37073 Göttingen, Germany.
Pflugers Arch. 1996 Sep;432(5):845-52. doi: 10.1007/s004240050207.
A transient K+ current in cultured olfactory bulb neurons of Xenopus tadpoles was studied using the whole-cell patch-clamp technique. The current, which was resistant to 80 mM tetraethylammoniumchloride (TEA) and 10 nM charybdotoxin but blocked by 5 mM 4-aminopyridine (4-AP), activated between -60 and -40 mV and showed time- and voltage-dependent inactivation. Its peak amplitude was nearly independent of the extracellular K+ concentration ([K+]o) in the range of 0.05 to 10 mM, indicating that its conductance increased upon increasing [K+]o. The transient K+ current showed a slow recovery from inactivation with the time for half-maximum recovery from a conditioning pulse to 80 mV for 1 s varying from 100 ms to 500 ms. Complete recovery required as much as 5-10 s at -80 mV, but could be speeded up at hyperpolarized potentials. The current resembles the RCK4 (Kv1.4) current of rat neurons except that its recovery from inactivation was independent of [K+]o. High-frequency stimulation (20-67 Hz) of the neurons with short (5 ms) voltage pulses resulted in a frequency-dependent, progressive inactivation of the transient K+ current. This suggests that, during phasic responses of olfactory bulb neurons, inactivation of the transient K+ current occurs and may lead to lengthening of action potentials and facilitation of synaptic transmission.
采用全细胞膜片钳技术研究了非洲爪蟾蝌蚪培养的嗅球神经元中的一种瞬时钾电流。该电流对80 mM四乙铵氯化物(TEA)和10 nM蝎毒素有抗性,但被5 mM 4-氨基吡啶(4-AP)阻断,在-60至-40 mV之间激活,并表现出时间和电压依赖性失活。其峰值幅度在0.05至10 mM的细胞外钾浓度([K+]o)范围内几乎与[K+]o无关,表明其电导随[K+]o增加而增加。瞬时钾电流从失活状态恢复缓慢,从-80 mV的1 s条件脉冲恢复到半最大恢复时间从100 ms到500 ms不等。在-80 mV时完全恢复需要长达5-10 s,但在超极化电位下可以加速。该电流类似于大鼠神经元的RCK4(Kv1.4)电流,只是其从失活状态的恢复与[K+]o无关。用短(5 ms)电压脉冲对神经元进行高频刺激(20-67 Hz)会导致瞬时钾电流出现频率依赖性、渐进性失活。这表明,在嗅球神经元的相位反应期间,瞬时钾电流会发生失活,并可能导致动作电位延长和突触传递增强。