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海葵沟迎风海葵毒素II对骨骼肌和神经肌肉传递的影响。

Effects of the sea anemone Anemonia sulcata toxin II on skeletal muscle and on neuromuscular transmission.

作者信息

Erxleben C, Rathmayer W

出版信息

Toxicon. 1984;22(3):387-99. doi: 10.1016/0041-0101(84)90083-7.

Abstract

Effects of anemone toxin II (ATX II) have been analysed on the neuromuscular junction of the frog and different twitch muscles. Amplitudes of evoked endplate potentials and endplate currents are increased by ATX II, without effects on the amplitudes of miniature endplate potentials and endplate currents resulting from ionophoretically applied transmitter. The increase in evoked transmitter release is due to an increase in quantal content caused by an effect of the toxin on the presynaptic action potentials. ATX II is also effective on muscle fibers. The action potentials of frog twitch muscles are reversibly prolonged by ATX II. Their rate of rise and amplitudes are increased, while there is no effect on resting membrane potential. Similarly, action potentials of fast twitch muscle (extensor digitorum longus, EDL) of the mouse are reversibly prolonged by ATX II. In slow twitch muscle (soleus, SOL) of the mouse the toxin induces repetitive action potentials following the generation of a single action potential. Tetrodotoxin resistant action potentials of both denervated EDL and SOL are greatly and irreversibly prolonged by ATX II. The effects on muscle are due to a Na+ channel specific action of ATX II. Na+ current inactivation is slowed with the time constant tau h increasing towards positive membrane potentials. The steady state inactivation curve hoo was shifted to more positive potentials and its slope reduced.

摘要

已对海葵毒素II(ATX II)对青蛙神经肌肉接头及不同抽搐肌肉的作用进行了分析。ATX II可增加诱发终板电位和终板电流的幅度,而对离子电渗法施加递质所产生的微小终板电位和终板电流的幅度无影响。诱发递质释放的增加是由于毒素对突触前动作电位的作用导致量子含量增加所致。ATX II对肌纤维也有效。ATX II可使青蛙抽搐肌肉的动作电位可逆性延长。其上升速率和幅度增加,而对静息膜电位无影响。同样,ATX II可使小鼠快肌(趾长伸肌,EDL)的动作电位可逆性延长。在小鼠慢肌(比目鱼肌,SOL)中,该毒素在单个动作电位产生后可诱发重复动作电位。ATX II可使去神经支配的EDL和SOL的河豚毒素抗性动作电位大幅且不可逆地延长。对肌肉的作用是由于ATX II对钠通道的特异性作用。钠电流失活减慢,时间常数tau h向正向膜电位增加。稳态失活曲线hoo向更正的电位移动,其斜率降低。

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