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从雕刻毒蝎毒液中分离出的毒素对郎飞结钠电流的影响。

Effect of toxins isolated from the venom of the scorpion Centruroides sculpturatus on the Na currents of the node of Ranvier.

作者信息

Meves H, Rubly N, Watt D D

出版信息

Pflugers Arch. 1982 Mar;393(1):56-62. doi: 10.1007/BF00582392.

Abstract
  1. The effect of various toxin fractions isolated by Watt et al. (1978) from the venom of the scorpion Centruroides sculpturatus Ewing on the Na currents of the node of Ranvier has been studied with the voltage clamp method. 2. The toxin fractions were applied externally. The most potent fractions were toxins III, IV and V which were effective in concentrations of 0.33-3.33 microgram/ml. The effect of toxins III and IV was quite different from that of toxin V. 3. In toxin III or IV - treated nodes a strong depolarizing pulse was followed by a transient shift of the negative resistance branch of the INa (E) curve to more negative potentials. The amount of shift varied between -10 and -60 mV. A 500 ms depolarizing pulse of small amplitude produced a slowly developing Na inward current which slowly decayed after the end of the pulse. Inactivation was incomplete, even with 500 ms pulses to 0 mV. 4. The transient shift of the INa (E) curve was not seen in nodes treated with toxin V. This toxin merely caused slow and incomplete Na inactivation. The effect of toxin IV was not suppressed by a four times higher concentration of toxin V, suggesting that the two toxins act on different receptors. 5. Toxin I acted like toxin IV but was about 10 times less potent. The effect of high concentrations of variants 1, 2, 3, 5, 6 resembled tha of toxin V. 6. All effects observed with toxin III or IV were also seen with the whole venom (cf. Cahalan 1975).
摘要
  1. 瓦特等人(1978年)从雕刻毒蝎毒液中分离出的各种毒素组分对郎飞结钠电流的影响,已采用电压钳法进行了研究。2. 毒素组分是从外部施加的。最有效的组分是毒素III、IV和V,它们在浓度为0.33 - 3.33微克/毫升时有效。毒素III和IV的作用与毒素V的作用有很大不同。3. 在毒素III或IV处理的节点中,强去极化脉冲之后,INa(E)曲线的负电阻分支会短暂地向更负的电位偏移。偏移量在-10至-60毫伏之间变化。500毫秒的小幅度去极化脉冲会产生一个缓慢发展的钠内向电流,该电流在脉冲结束后会缓慢衰减。即使施加500毫秒至0毫伏的脉冲,失活也不完全。4. 在毒素V处理的节点中未观察到INa(E)曲线的短暂偏移。这种毒素仅导致钠缓慢且不完全失活。毒素IV的作用不会被四倍浓度更高的毒素V抑制,这表明这两种毒素作用于不同的受体。5. 毒素I的作用与毒素IV相似,但效力约低10倍。高浓度的变体1、2、3、5、6的作用类似于毒素V。6. 用毒素III或IV观察到的所有效应,用全毒液也能观察到(参见卡哈兰,1975年)。

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