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椎实螺神经元中二价离子选择性的非电压依赖性钙通道:通透特性及细胞内镁离子的抑制作用

Divalent-selective voltage-independent calcium channels in Lymnaea neurons: permeation properties and inhibition by intracellular magnesium.

作者信息

Strong J A, Scott S A

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907.

出版信息

J Neurosci. 1992 Aug;12(8):2993-3003. doi: 10.1523/JNEUROSCI.12-08-02993.1992.

Abstract

Calcium channels are tightly regulated. Voltage-gated calcium channels open only in response to depolarization, while voltage-independent calcium channels usually open only in response to specific intracellular or extracellular ligands. Voltage-independent calcium channels have been described in several invertebrate neurons. One difficulty in understanding the function of the neuronal channels is that their regulators are unknown. They open rarely in intact cells but are activated by formation of a cell-free patch, suggesting that some intracellular inhibitor usually keeps them closed. This article provides evidence that intracellular Mg2+ is one important regulator of the voltage-independent calcium channel (HP channel) in neurons of the pond snail Lymnaea stagnalis. Mg2+ (1 mM) rapidly and reversibly inhibited activity of this calcium channel when applied to the intracellular side of cell-free membrane patches. The primary effect of the Mg2+ was to promote long closings of the channel. The mechanism of the intracellular Mg2+ inhibition is distinct from open channel block, a phenomenon seen in a variety of cation channels. Open channel block can also be seen in the HP channels, but only at very positive membrane potentials. Some of the permeability and selectivity characteristics of these channels were also examined. The channels are permeable to Mg2+ and Ca2+ as well as Ba2+. Outward currents carried by monovalent cations can be observed only at very positive membrane potentials, indicating high selectivity for divalent over monovalent cations. The single channel current-voltage relationship is markedly nonlinear, becoming quite shallow near the reversal potential, and hence is qualitatively similar to that seen in many voltage-activated calcium channels.

摘要

钙通道受到严格调控。电压门控钙通道仅在去极化时开放,而电压非依赖性钙通道通常仅在特定的细胞内或细胞外配体作用下开放。在几种无脊椎动物神经元中已描述了电压非依赖性钙通道。理解神经元通道功能的一个困难在于其调节因子尚不清楚。它们在完整细胞中很少开放,但可通过形成无细胞膜片而被激活,这表明某种细胞内抑制剂通常使其保持关闭状态。本文提供证据表明,细胞内Mg2+是椎实螺神经元中电压非依赖性钙通道(HP通道)的一个重要调节因子。当将Mg2+(1 mM)施加于无细胞膜片的细胞内侧时,它能快速且可逆地抑制该钙通道的活性。Mg2+的主要作用是促使通道长时间关闭。细胞内Mg2+抑制的机制不同于开放通道阻断,开放通道阻断是在多种阳离子通道中可见的一种现象。在HP通道中也能看到开放通道阻断,但仅在非常正的膜电位时出现。还研究了这些通道的一些通透性和选择性特征。这些通道对Mg2+、Ca2+以及Ba2+均有通透性。仅在非常正的膜电位时才能观察到单价阳离子携带的外向电流,这表明对二价阳离子的选择性高于单价阳离子。单通道电流-电压关系明显呈非线性,在反转电位附近变得相当平缓,因此在定性上与许多电压激活钙通道中所见的情况相似。

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