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乌贼巨大纤维叶神经元的离子电导

Ionic conductances of squid giant fiber lobe neurons.

作者信息

Llano I, Bookman R J

出版信息

J Gen Physiol. 1986 Oct;88(4):543-69. doi: 10.1085/jgp.88.4.543.

DOI:10.1085/jgp.88.4.543
PMID:2431097
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2228845/
Abstract

The cell bodies of the neurons in the giant fiber lobe (GFL) of the squid stellate ganglion give rise to axons that fuse and thereby form the third-order giant axon, whose initial portion functions as the postsynaptic element of the squid giant synapse. We have developed a preparation of dissociated, cultured cells from this lobe and have studied the voltage-dependent conductances using patch-clamp techniques. This system offers a unique opportunity for comparing the properties and regional differentiation of ionic channels in somatic and axonal membranes within the same cell. Some of these cells contain a small inward Na current which resembles that found in axon with respect to tetrodotoxin sensitivity, voltage dependence, and inactivation. More prominent is a macroscopic inward current, carried by Ca2+, which is likely to be the result of at least two kinetically distinct types of channels. These Ca channels differ in their closing kinetics, voltage range and time course of activation, and the extent to which their conductance inactivates. The dominant current in these GFL neurons is outward and is carried by K+. It can be accounted for by a single type of voltage-dependent channel. This conductance resembles the K conductance of the axon, except that it partially inactivates during relatively short depolarizations. Ensemble fluctuation analysis of K currents obtained from excised outside-out patches is consistent with a single type of K channel and yields estimates for the single channel conductance of approximately 13 pS, independently of membrane potential. A preliminary analysis of single channel data supports the conclusion that there is a single type of voltage-dependent, inactivating K channel in the GFL neurons.

摘要

乌贼星状神经节巨纤维叶(GFL)中的神经元细胞体发出轴突,这些轴突融合从而形成三级巨轴突,其起始部分作为乌贼巨突触的突触后元件发挥作用。我们已经从这个叶中开发出一种解离的培养细胞制剂,并使用膜片钳技术研究了电压依赖性电导。这个系统为比较同一细胞内体细胞和轴突膜中离子通道的特性和区域分化提供了独特的机会。其中一些细胞含有小的内向钠电流,就河豚毒素敏感性、电压依赖性和失活而言,该电流类似于在轴突中发现的电流。更显著的是一种由Ca2+携带的宏观内向电流,这可能是至少两种动力学上不同类型通道的结果。这些钙通道在关闭动力学、激活的电压范围和时间进程以及其电导失活的程度方面存在差异。这些GFL神经元中的主要电流是外向的,由K+携带。它可以由单一类型的电压依赖性通道来解释。这种电导类似于轴突的K电导,只是在相对较短的去极化过程中它会部分失活。从切除的外侧向外膜片获得的K电流的整体波动分析与单一类型的K通道一致,并且独立于膜电位得出单通道电导的估计值约为13 pS。对单通道数据的初步分析支持这样的结论,即GFL神经元中存在单一类型的电压依赖性、失活的K通道。

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J Neurosci. 1997 Jul 1;17(13):5070-9. doi: 10.1523/JNEUROSCI.17-13-05070.1997.
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本文引用的文献

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Studies on the axon membrane; a new method.轴突膜的研究;一种新方法。
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Role of presynaptic calcium ions and channels in synaptic facilitation and depression at the squid giant synapse.突触前钙离子及通道在枪乌贼巨大突触的突触易化和抑制中的作用。
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Electrophysiology of mammalian inferior olivary neurones in vitro. Different types of voltage-dependent ionic conductances.体外培养的哺乳动物下橄榄核神经元的电生理学。不同类型的电压依赖性离子电导。
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