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急性分离的鸡睫状神经节神经元中多种电压激活钾电流的特性

Characteristics of multiple voltage-activated K+ currents in acutely dissociated chick ciliary ganglion neurones.

作者信息

Wisgirda M E, Dryer S E

机构信息

Department of Biological Science B-221, Florida State University, Tallahassee 32306.

出版信息

J Physiol. 1993 Oct;470:171-89. doi: 10.1113/jphysiol.1993.sp019853.

Abstract
  1. The properties of voltage-activated K+ currents were examined using whole-cell recording techniques in acutely isolated chick ciliary ganglion neurones. 2. Application of depolarizing voltage pulses from a holding potential of -60 mV evoked sustained outward currents that inactivated with time constants of hundreds of milliseconds (IDR). Bath application of 10 mM tetraethylammonium (TEA) caused a 70-90% reduction of IDR. Application of depolarizing voltage steps from a holding potential of -120 mV revealed a second class of TEA-resistant outward currents. These currents activated quickly but inactivated completely within tens of milliseconds (IA). IA activated at more negative command potentials than IDR. However, IDR exhibited a steeper voltage dependence of activation than IA. 3. The midpoint of the steady-state inactivation curve of IA was between -95 and -110 mV. By contrast the midpoint of the steady-state inactivation curve of IDR was between -80 and -90 mV. It was not possible to produce a complete inactivation of IDR using prepulses of up to 2 s duration. 4. The time course of IA inactivation could only be fitted with double-exponential curves with time constants of 5-18 ms and 30-60 ms at membrane potentials positive to -30 mV. The inactivation of IA was slower at more positive membrane potentials because of a greater contribution of the long time constant. The individual time constants were not markedly voltage dependent. 5. Bath application of 5 mM 4-aminopyridine (4-AP) caused a 70-100% block of IA whereas 1 mM 4-AP was ineffective. Bath application of 560 nM alpha-dendrotoxin (DTX) produced a 50-70% reduction of IA, but application of 280 nM DTX had no effect on IA. 6. Application of 1 mM 4-AP produced a reversible 55-80% block of IDR measured at the end of a 500 ms depolarizing pulse. The 4-AP-sensitive components of IDR activated rapidly and exhibited a gradual inactivation with continued depolarization. The 4-AP-resistant components of IDR activated much more slowly and showed very little tendency to inactivate. Significant blockade of IDR was produced by 10 microM 4-AP. 7. The decay of IDR tail currents could only be fitted with double exponential curves with time constants of 3-6 and 40-60 ms, respectively. The fast and slow components of the tail currents behaved independently with respect to the duration of the depolarizing voltage step. 8. Application of 1 mM 4-AP eliminated the fast, but not the slow component of IDR tail currents.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用全细胞记录技术,在急性分离的鸡睫状神经节神经元中研究电压门控钾离子电流的特性。2. 从 -60 mV 的钳制电位施加去极化电压脉冲,诱发持续的外向电流,该电流以数百毫秒的时间常数失活(IDR)。浴槽中加入 10 mM 四乙铵(TEA)可使 IDR 降低 70 - 90%。从 -120 mV 的钳制电位施加去极化电压阶跃,揭示出另一类对 TEA 不敏感的外向电流。这些电流快速激活,但在几十毫秒内完全失活(IA)。IA 比 IDR 在更负的指令电位下激活。然而,IDR 表现出比 IA 更陡峭的激活电压依赖性。3. IA 的稳态失活曲线中点在 -95 至 -110 mV 之间。相比之下,IDR 的稳态失活曲线中点在 -80 至 -90 mV 之间。使用长达 2 s 的预脉冲不可能使 IDR 完全失活。4. 在膜电位高于 -30 mV 时,IA 失活的时间进程只能用时间常数分别为 5 - 18 ms 和 30 - 60 ms 的双指数曲线拟合。由于长时间常数的贡献更大,IA 在更正的膜电位下失活较慢。各个时间常数对电压的依赖性不明显。5. 浴槽中加入 5 mM 4 - 氨基吡啶(4 - AP)可使 IA 阻断 70 - 100%,而 1 mM 4 - AP 无效。浴槽中加入 560 nM α - 树眼镜蛇毒素(DTX)可使 IA 降低 50 - 70%,但加入 280 nM DTX 对 IA 无影响。6. 加入 1 mM 4 - AP 可使在 500 ms 去极化脉冲结束时测量的 IDR 产生 55 - 80%的可逆阻断。IDR 中对 4 - AP 敏感的成分快速激活,并随着持续去极化逐渐失活。IDR 中对 4 - AP 不敏感的成分激活慢得多,且几乎没有失活倾向。10 μM 4 - AP 可显著阻断 IDR。7. IDR 尾电流的衰减只能用时间常数分别为 3 - 6 ms 和 40 - 60 ms 的双指数曲线拟合。尾电流的快成分和慢成分在去极化电压阶跃持续时间方面表现独立。8. 加入 1 mM 4 - AP 消除了 IDR 尾电流中的快成分,但未消除慢成分。(摘要截短于 400 字)

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