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毒蜥毒素对鱿鱼轴突钾离子通道的阻断作用:一种来自墨西哥毒蝎毒液的毒素。

Blocking of the squid axon K+ channel by noxiustoxin: a toxin from the venom of the scorpion Centruroides noxius.

作者信息

Carbone E, Prestipino G, Spadavecchia L, Franciolini F, Possani L D

出版信息

Pflugers Arch. 1987 May;408(5):423-31. doi: 10.1007/BF00585064.

Abstract

We have studied the selective effects of noxiustoxin (NTX), a fraction of the venom of the scorpion Centruroides noxius, on the K currents of perfused squid giant axons using the voltage-clamp technique. At concentrations below 1.5 microM, NTX blocked K currents in a voltage-independent manner, with little effect on their turning-on and turning-off kinetics. Above 1.5 microM, the block by NTX became voltage-dependent and could be partially removed by repetitive pulsing and strong depolarizations. Long repolarizations and more negative holding potentials favoured the slow restoration of channel block. Reduction of K currents by internally perfusing the fibers with solutions of low K+ concentration (200 mM), affected very little the removal of NTX-block during repetitive pulsing, suggesting that block removal depended on membrane potential and not on outward movements of K+ ions through open channels. In high extracellular K+ (300 mM) the blocking action of NTX was reduced and the instantaneous I-V characteristics showed a marked outward rectification. At 20 microM NTX, inward tail currents measured on step repolarizations to -70 mV were fully blocked, suggesting a direct interaction of the toxin with the open channel. The effects of the total venom Centruroides noxius Hoffmann was also studied. External application of 0.25 mg/ml of the venom caused a marked reduction of both Na and K currents, an effect similar to that of other scorpion venoms.

摘要

我们使用电压钳技术研究了来自墨西哥毒蝎毒液中的一种成分——伤害性毒素(NTX)对灌流乌贼巨大轴突钾电流的选择性作用。在浓度低于1.5微摩尔时,NTX以电压非依赖性方式阻断钾电流,对其开启和关闭动力学影响很小。高于1.5微摩尔时,NTX的阻断作用变为电压依赖性,并且可以通过重复脉冲和强去极化部分消除。长时间复极化和更负的钳制电位有利于通道阻断的缓慢恢复。用低K +浓度(200毫摩尔)的溶液内部灌流纤维来降低钾电流,在重复脉冲期间对NTX阻断的消除影响很小,这表明阻断的消除取决于膜电位,而不取决于K +离子通过开放通道的外向移动。在高细胞外K +(300毫摩尔)中,NTX的阻断作用降低,瞬时I-V特性显示出明显的外向整流。在20微摩尔NTX时,在阶跃复极化至-70毫伏时测量的内向尾电流被完全阻断,表明毒素与开放通道直接相互作用。我们还研究了墨西哥毒蝎霍夫曼毒液的总体作用。外部施加0.25毫克/毫升的毒液会导致钠电流和钾电流显著降低,这一作用与其他蝎毒类似。

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