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来自蝎毒的泰蒂乌毒素-Kα可阻断培养的中枢神经元中电压门控性、非失活性钾电流。

Tityustoxin-K alpha, from scorpion venom, blocks voltage-gated, non-inactivating potassium current in cultured central neurons.

作者信息

Eccles C U, Rogowski R S, Gu X, Alger B E, Blaustein M P

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, University of Maryland, Baltimore 21201, USA.

出版信息

Neuropharmacology. 1994 Dec;33(12):1523-8. doi: 10.1016/0028-3908(94)90125-2.

Abstract

Whole-cell voltage-clamp was used to examine the effects of tityustoxin-K alpha (TsTX-K alpha), from the venom of the scorpion Tityus serrulatis, on voltage-gated K+ currents in cultured hippocampal neurons and cerebellar granule cells. Slowly activating, noninactivating outward currents (IK) were generated by depolarizing steps from a holding potential of -60 mV to potentials positive to -40 mV. TsTX-K alpha produced a dose-dependent block of the sustained outward current. The fraction of total current blocked ranged from 10 to 60% over a concentration range of 2.5-120 nM in both cerebellar and hippocampal neurons. A hyperpolarizing prepulse to -100 mV was used to generate a rapidly inactivating current with properties like those of IA. When IA was isolated pharmacologically (with 5-10 mM TEA to block IK) or by subtracting IK from total outward current, TsTX-K alpha had no effect on the IA in either cell type. TsTX-K alpha also had no apparent effect on the leak conductance or on the inward rectifier current in these cells. The data indicate that TsTX-K alpha in cultured mammalian neurons is a potent and selective blocker of a voltage-gated, non-inactivating K+ current with properties like those of a delayed rectifier.

摘要

采用全细胞膜片钳技术,研究了来自锯齿钝尾蝎毒液的替尤斯毒素 - Kα(TsTX - Kα)对培养的海马神经元和小脑颗粒细胞中电压门控钾离子电流的影响。通过从 -60 mV 的钳制电位去极化至 -40 mV 以上的电位产生缓慢激活、非失活的外向电流(IK)。TsTX - Kα 对持续外向电流产生剂量依赖性阻断。在小脑和海马神经元中,在 2.5 - 120 nM 的浓度范围内,被阻断的总电流分数为 10%至 60%。使用 -100 mV 的超极化预脉冲产生具有 IA 特性的快速失活电流。当通过药理学方法分离出 IA(用 5 - 10 mM 四乙铵阻断 IK)或从总外向电流中减去 IK 时,TsTX - Kα 对两种细胞类型的 IA 均无影响。TsTX - Kα 对这些细胞的漏电流或内向整流电流也无明显影响。数据表明,培养的哺乳动物神经元中的 TsTX - Kα 是一种强效且选择性的电压门控、非失活钾离子电流阻断剂,其特性类似于延迟整流钾电流。

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