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轴浆微管对于膜兴奋是否必要?

Are axoplasmic microtubules necessary for membrane excitation?

作者信息

Terakawa S, Nakayama T

出版信息

J Membr Biol. 1985;85(1):65-77. doi: 10.1007/BF01872006.

Abstract

The excitability of the squid giant axon was studied as a function of transmembrane hydrostatic pressure differences, the latter being altered by the technique of intracellular perfusion. When a KF solution was used as the internal medium, a pressure difference of about 15 cm water had very little effect on either the membrane potential or excitability. However, within a few minutes after introducing either a KCl-containing, a KBr-containing, or a colchicine-containing solution as the internal medium, with the same pressure difference across the membrane, the axon excitability was suppressed. In these cases, removal of the pressure difference restored the excitability, indicating that the structure of membrane was not irreversibly damaged. Electron-microscopic observations of these axons revealed that the perfusion with a KF solution or colchicine-containing solution preserves the submembranous cytoskeletal layer, whereas perfusion with a KCl or KBr solution dissolves it. These results suggest that the submembranous cytoskeletons including microtubules provide an important mechanical support to the excitable membrane but are not essential elements in channel activities.

摘要

乌贼巨大轴突的兴奋性作为跨膜静水压力差的函数进行了研究,后者通过细胞内灌注技术改变。当使用KF溶液作为内部介质时,约15厘米水柱的压力差对膜电位或兴奋性影响很小。然而,在引入含KCl、含KBr或含秋水仙碱的溶液作为内部介质后的几分钟内,在跨膜压力差相同的情况下,轴突兴奋性受到抑制。在这些情况下,去除压力差可恢复兴奋性,表明膜结构未受到不可逆损伤。对这些轴突的电子显微镜观察显示,用KF溶液或含秋水仙碱的溶液灌注可保留膜下细胞骨架层,而用KCl或KBr溶液灌注则会使其溶解。这些结果表明,包括微管在内的膜下细胞骨架为可兴奋膜提供了重要的机械支持,但不是通道活动的必需元素。

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