Suppr超能文献

远低于0摄氏度时枪乌贼巨大轴突的钠通道和钾通道特性

Properties of sodium and potassium channels of the squid giant axon far below 0 degrees C.

作者信息

Kukita F

出版信息

J Membr Biol. 1982;68(2):151-60. doi: 10.1007/BF01872261.

Abstract

Squid giant axon could be excited in concentrated glycerol solutions containing normal concentrations of electrolytes, when osmolalities of solutions inside and outside the axon were matched. These glycerol solutions did not freeze at the temperature as low as -19 degrees C. The nerve excitation in these solutions were observed at this low temperature. The excitation process at this low temperature was slowed down and time constants of the excitation kinetics were several hundredfold larger than those in normal seawater at 10 degrees C, under which temperature the squid habituated. The temperature coefficients for the electrophysiological membrane parameters under this condition were larger than those in normal seawater above 0 degrees C. The Q10 value for the conduction velocity was 2.0 and that of the duration of the action potential was around 8.5. The time course of the membrane currents was also slowed with the Q10 value of around 5 and the magnitude decreased with the Q10 value of around 2 as the temperature was lowered. The Q10 values for the kinetics of the on process of the Na-channel were around 4.5 and were almost the same as those of the off process of the Na-channel in the wide range of the temperature below 0 degrees C. The Q10 value of the on process of K-channel was around 6.5 and was larger than those for Na-channel. The Q10 values increased gradually as the temperature was lowered.

摘要

当轴突内外溶液的渗透压相匹配时,鱿鱼巨轴突可在含有正常电解质浓度的浓缩甘油溶液中被激发。这些甘油溶液在低至-19摄氏度的温度下不会结冰。在这个低温下观察到了这些溶液中的神经激发。在这个低温下激发过程变慢,激发动力学的时间常数比在10摄氏度的正常海水中大几百倍,在这个温度下鱿鱼会适应。在这种情况下,电生理膜参数的温度系数比0摄氏度以上的正常海水大。传导速度的Q10值为2.0,动作电位持续时间的Q10值约为8.5。随着温度降低,膜电流的时间进程也变慢,Q10值约为5,幅度随Q10值约为2而降低。在低于0摄氏度的宽温度范围内,钠通道开启过程动力学的Q10值约为4.5,与钠通道关闭过程的Q10值几乎相同。钾通道开启过程的Q10值约为6.5,比钠通道的大。随着温度降低,Q10值逐渐增加。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验