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通透离子对小鼠神经母细胞瘤细胞中单个钙通道激活的影响:离子通道相互作用。

The effect of permeant ions on single calcium channel activation in mouse neuroblastoma cells: ion-channel interaction.

作者信息

Shuba Y M, Teslenko V I, Savchenko A N, Pogorelaya N H

机构信息

A. A. Bogomoletz Institute of Physiology, Academy of Sciences of the Ukrainian SSR, Kiev.

出版信息

J Physiol. 1991 Nov;443:25-44. doi: 10.1113/jphysiol.1991.sp018820.

Abstract
  1. Single low-threshold inactivating (LTI or T-type) Ca2+ channels of undifferentiated neuroblastoma cells (clone N1E-115) were investigated using the patch-clamp technique. 2. Single-channel conductance, gi, for Ca2+, Sr2+ or Ba2+ as a permeant cation was similar (7.2 pS). Mean channel open time, tau op, was also practically independent of the divalent ion species; it decreased from 0.7 to 0.3 ms between -40 and 0 mV. 3. Modification of the calcium channel selectivity by lowering the external Ca2+ concentration to 10(-8) M produced an increase in gi for Na+ and Li+ ions and a shift of potential-dependent characteristics in the hyperpolarizing direction. Voltage sensitivity and absolute values of tau op were also changed. These changes were dependent on both permeant monovalent ion type and concentration. 4. At high [Na+]o, tau op was almost potential independent (congruent to 0.3 ms). Decrease in [Na+]o and substitution of Li+ for Na+ increased tau op and the steepness of its potential dependency. 5. The divalent and monovalent cations that were tested had much smaller effect on the mean intraburst shut time, tau cl(f), which was nearly independent of membrane potential (congruent to 0.6 ms). By contrast, mean burst duration was strongly potential dependent and noticeably affected by permeant ion type. 6. All kinetic changes were analysed in terms of a four-state sequential model for channel activation. According to this model the channel enters the open state through three closed states. Transitions between closed states can be formally related to the transmembrane movement of two charged gating particles (m2 process). The interaction between ion flux and a sterical region of the Ca2+ channel selectivity filter may, depending on ion transfer rate and ionic radius, lead to a local increase of the dielectric constant, resulting in redistribution of the electric field and changes in potential dependency of tau op.
摘要
  1. 采用膜片钳技术研究了未分化神经母细胞瘤细胞(克隆N1E - 115)中的单个低阈值失活(LTI或T型)Ca2+通道。2. 作为通透阳离子的Ca2+、Sr2+或Ba2+的单通道电导gi相似(7.2 pS)。平均通道开放时间tau op实际上也与二价离子种类无关;在 - 40至0 mV之间,它从0.7 ms降至0.3 ms。3. 将细胞外Ca2+浓度降至10(-8) M对钙通道选择性的改变导致Na+和Li+离子的gi增加,以及电位依赖性特征向超极化方向移动。电压敏感性和tau op的绝对值也发生了变化。这些变化取决于通透单价离子的类型和浓度。4. 在高[Na+]o时,tau op几乎与电位无关(约为0.3 ms)。[Na+]o降低以及用Li+替代Na+会增加tau op及其电位依赖性的陡度。5. 所测试的二价和单价阳离子对平均爆发内关闭时间tau cl(f)的影响要小得多,tau cl(f)几乎与膜电位无关(约为0.6 ms)。相比之下,平均爆发持续时间强烈依赖于电位,并明显受通透离子类型的影响。6. 根据通道激活的四态序列模型对所有动力学变化进行了分析。根据该模型,通道通过三个关闭状态进入开放状态。关闭状态之间的转变可以形式上与两个带电门控粒子的跨膜运动(m2过程)相关。离子通量与Ca2+通道选择性过滤器的空间区域之间的相互作用可能根据离子转移速率和离子半径导致介电常数局部增加,从而导致电场重新分布以及tau op电位依赖性的变化。

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