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来自海蜇多管水母的离体运动神经元中的电压激活钾电流。

Voltage-activated potassium currents in isolated motor neurons from the jellyfish Polyorchis penicillatus.

作者信息

Przysiezniak J, Spencer A N

机构信息

Department of Zoology, University of Alberta, Edmonton, Canada.

出版信息

J Neurophysiol. 1994 Aug;72(2):1010-9. doi: 10.1152/jn.1994.72.2.1010.

Abstract
  1. We describe two voltage-activated potassium currents in the swim motor neurons (SMNs) of the hydrozoan jellyfish, Polyorchis penicillatus. Recordings from neurons isolated in primary cultures were made using the tight-seal, whole-cell technique. 2. One current, IK-fast, turned on rapidly (time to peak = 6-15 ms), was half-activated at -10 to 0 mV, decayed with two exponential phases (tau were approximately 70 ms and approximately 1 s), and was half-inactivated by prepulses around -53 mV. It likely plays an important role in regulating the duration of SMN action potentials. IK-fast has features shared by delayed rectifiers and A-like currents in other invertebrates and vertebrates. 3. Another current, IK-slow, elicited from a holding potential of -30 mV, exhibited a slow onset (tau = 65-250 ms), was half-activated approximately +24 mV, exhibited a shallower voltage dependence than IK-fast, and did not inactivate. It was slower than most known delayed rectifiers.
摘要
  1. 我们描述了水螅水母类动物多管水母游泳运动神经元(SMNs)中的两种电压激活钾电流。使用紧密封全细胞技术对原代培养中分离出的神经元进行记录。2. 一种电流,即快速钾电流(IK-fast),开启迅速(达到峰值的时间为6 - 15毫秒),在 - 10至0毫伏时被激活一半,以两个指数相衰减(时间常数分别约为70毫秒和约1秒),并在约 - 53毫伏的预脉冲作用下被一半失活。它可能在调节SMN动作电位的持续时间方面发挥重要作用。IK-fast具有其他无脊椎动物和脊椎动物中延迟整流器和A类电流所共有的特征。3. 另一种电流,即缓慢钾电流(IK-slow),从 - 30毫伏的钳制电位引发,起始缓慢(时间常数 = 65 - 250毫秒),在约 + 24毫伏时被激活一半,与IK-fast相比表现出较弱的电压依赖性,并且不会失活。它比大多数已知的延迟整流器要慢。

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