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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >The scorpion alpha-like toxin Lqh III specifically alters sodium channel inactivation in frog myelinated axons.
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The scorpion alpha-like toxin Lqh III specifically alters sodium channel inactivation in frog myelinated axons.

机译:蝎子类α毒素Lqh III特别改变了青蛙髓鞘轴突中的钠通道失活。

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摘要

The effects of 1-100 nM Lqh III, an alpha-like toxin isolated from the scorpion Leiurus quinquestriatus hebraeus, were assessed on the nodal membrane potential and ionic currents of single frog myelinated axons. In current-clamped axons, Lqh III increased the duration of action potentials without markedly affecting the peak amplitude and the resting membrane potential. The toxin was less effective when the resting membrane potential of axons was increasingly more positive. The Lqh III-induced increase in action potential duration was not due to the blockade of K(+) channels, since the toxin had no significant effect upon the K(+) current. In contrast, Lqh III inhibited the inactivation of a fraction of the Na(+) current, leading to a maintained late inward Na(+) current which represented about 45% of the peak Na(+) current, as observed during long-lasting depolarisations and in steady-state Na(+) current inactivation-voltage relationships when the pre-pulse potential was more positive than about -30mV. The activation kinetics of the late Na(+) current were well described by a single exponential whose time constant was 8.53+/-0.78 ms (n=3). Finally, Lqh III slowed the time-course of the remaining peak Na(+) current inactivation by altering initial amplitudes (to time zero of depolarisation) and time constants of its fast and slow phases. No significant additional effect was detected during the action of the toxin.In conclusion, we propose that, in frog myelinated axons, the effects of Lqh III are those typically attributed to classical scorpion alpha-toxins.
机译:从单个青蛙有髓轴突的结膜电位和离子电流评估了1-100 nM Lqh III(一种从蝎蝎Leiurus quinquestriatus hebraeus分离出的α样毒素)的影响。在电流钳制的轴突中,Lqh III增加了动作电位的持续时间,而没有明显影响峰幅度和静止膜电位。当轴突的静息膜电位越来越强时,该毒素的效力降低。 Lqh III诱导的动作电位持续时间的增加不是由于K(+)通道的阻塞,因为该毒素对K(+)电流没有显着影响。相比之下,Lqh III抑制了一部分Na(+)电流的失活,导致维持了后期的向内Na(+)电流,这代表了在持久状态下观察到的最大Na(+)电流的45%。当预脉冲电位大于约-30mV时,去极化和稳态Na(+)电流失活-电压关系。晚期Na(+)电流的激活动力学由单个指数很好地描述,其时间常数为8.53 +/- 0.78 ms(n = 3)。最后,Lqh III通过改变初始振幅(去极化的时间零)及其快速和慢速相位的时间常数,减慢了剩余峰值Na(+)电流失活的时间进程。在该毒素的作用过程中未检测到明显的附加作用。总之,我们认为,在青蛙髓鞘轴突中,Lqh III的作用通常是经典蝎子α-毒素所引起的。

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