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水母运动神经元中类似心脏的钠电流。

A cardiac-like sodium current in motor neurons of a jellyfish.

作者信息

Grigoriev N G, Spafford J D, Przysiezniak J, Spencer A N

机构信息

Department of Biological Sciences, University of Alberta, Edmonton, Canada.

出版信息

J Neurophysiol. 1996 Oct;76(4):2240-9. doi: 10.1152/jn.1996.76.4.2240.

Abstract
  1. Whole cell voltage-clamp recordings from isolated swimming motor neurons (SMNs) reveal a rapidly activating and inactivating sodium current. 2. Permeability ratios of PLi/PNa = 0.941 and P(guanidinium)/PNa = 0.124 were measured for the mediating channel, which was impermeable to rubidium. 3. The conductance/voltage and steady state inactivation curves are shifted in a depolarizing direction by approximately 45 mV relative to most neuronal sodium currents in higher animals. 4. Activation could be fitted with two exponents and maximal current peaked at 0.74 +/- 0.06 ms (mean +/- SD). 5. Inactivation could be fitted with fast (Tau 1 = 1.91 +/- 0.07 ms at +10 mV) and slow (Tau 2 = 11.65 +/- 0.55 ms at +10 mV) exponents. 6. Half-recovery from inactivation occurred slowly (52.6 +/- 2.9 ms). 7. A second class of identifiable neurons, "B" neurons, possesses a distinctly different population of sodium channels. they showed different inactivation kinetics and far more rapid recovery from inactivation (half-recovery < 5 ms). 8. We conclude that there was physiological diversification of sodium channels early in metazoan evolution and that there has been considerable cell-specific selection of channel properties.
摘要
  1. 对分离出的游泳运动神经元(SMNs)进行全细胞电压钳记录,结果显示出一种快速激活和失活的钠电流。2. 测得介导通道的渗透率比PLi/PNa = 0.941和P(胍鎓)/PNa = 0.124,该通道对铷不渗透。3. 相对于高等动物的大多数神经元钠电流,电导/电压曲线和稳态失活曲线在去极化方向上大约偏移45 mV。4. 激活过程可用两个指数拟合,最大电流在0.74 +/- 0.06 ms(平均值 +/- 标准差)时达到峰值。5. 失活过程可用快速(在+10 mV时Tau 1 = 1.91 +/- 0.07 ms)和慢速(在+10 mV时Tau 2 = 11.65 +/- 0.55 ms)指数拟合。6. 失活后的半恢复过程缓慢(52.6 +/- 2.9 ms)。7. 第二类可识别的神经元,即“B”神经元,具有明显不同的钠通道群体。它们表现出不同的失活动力学,并且从失活中恢复得更快(半恢复 < 5 ms)。8. 我们得出结论,后生动物进化早期钠通道存在生理多样性,并且通道特性存在相当多的细胞特异性选择。

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