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来自锯齿蝎(Tityus serrulatus)的α-蝎毒素对钠通道门控的修饰作用。

Modification of Na channel gating by an alpha scorpion toxin from Tityus serrulatus.

作者信息

Kirsch G E, Skattebøl A, Possani L D, Brown A M

机构信息

Department of Physiology and Molecular Biophysics, Baylor College of Medicine, Houston, Texas 77030.

出版信息

J Gen Physiol. 1989 Jan;93(1):67-83. doi: 10.1085/jgp.93.1.67.

Abstract

The effects of TsIV-5, a toxin isolated from the Brazilian scorpion Tityus serrulatus, on whole-cell and single-channel Na currents were determined in N18 neuroblastoma cells. In whole-cell records at a test potential of -10 mV, external application of 500 nM TsIV-5 slowed inactivation 20-fold and increased peak current by about one-third without changing time-to-peak. Both the steady-state activation and inactivation curves were shifted to more negative potentials. Other alpha scorpion toxins produce similar effects but the single-channel mechanism is not known. TsIV-5 caused a voltage-dependent prolongation of mean single-channel open time such that at a test potential of -60 mV no change was observed, whereas at -20 mV mean open time increased about threefold and prolonged bursting was observed. Macroscopic current reconstructed from summed single-channel records showed a characteristic toxin-induced potentiation of peak current and a 20-fold slowing of the decay phase. TsIV-5 does not discriminate between tissue-specific Na channel subtypes. Prolonged open times and bursting were also observed in toxin-treated Na channels from rat ventricular myocytes, rat cortical neurons, and mouse skeletal muscle. The toxin effects are shown to be consistent with a kinetic model in which TsIV-5 selectively interferes with the ability of the channel to reach the inactivated state.

摘要

从巴西蝎子锯齿脂鲤(Tityus serrulatus)中分离出的毒素TsIV-5对N18神经母细胞瘤细胞全细胞和单通道钠电流的影响已被确定。在-10 mV测试电位下的全细胞记录中,外部施加500 nM TsIV-5可使失活减慢20倍,并使峰值电流增加约三分之一,而不改变峰值时间。稳态激活曲线和失活曲线均向更负的电位移动。其他α-蝎毒素也产生类似的作用,但单通道机制尚不清楚。TsIV-5导致平均单通道开放时间呈电压依赖性延长,使得在-60 mV测试电位下未观察到变化,而在-20 mV时平均开放时间增加约三倍,并观察到爆发性延长。从总和单通道记录重建的宏观电流显示出毒素诱导的峰值电流增强和衰减相减慢20倍的特征。TsIV-5不能区分组织特异性钠通道亚型。在大鼠心室肌细胞、大鼠皮质神经元和小鼠骨骼肌的毒素处理钠通道中也观察到开放时间延长和爆发性。毒素的作用与一个动力学模型一致,在该模型中,TsIV-5选择性地干扰通道进入失活状态的能力。

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