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蝎神经毒素。对神经肌肉接头和突触体的作用方式。

Scorpion neurotoxin. Mode of action on neuromuscular junctions and synaptosomes.

作者信息

Romey G, Abita J P, Chicheportiche R, Rochat H, Lazdunski M

出版信息

Biochim Biophys Acta. 1976 Nov 2;448(4):607-19. doi: 10.1016/0005-2736(76)90114-0.

Abstract

Electrophysiological analysis of the effects of scorpion toxin I, one of the neurotoxins from the venom of the scorpion Androctonus australis Hector, upon crayfish neuromuscular junctions has shown that the toxin strongly associates with the nerve terminal to stimulate release of neurotransmitters. The biochemical approach has shown that the binding of scorpion toxin I to rat brain synaptosomes is accompanied by a decrease in their capacity to accumulate gamma-aminobutyric acid. The main effect of the toxin is to stimulate neurotransmitter release. The apparent dissociation constant of the toxin-receptor complex is 0.1-0.2 muM at 22 degrees C. The rate of dissociation is so slow that complex formation seems to be quasi-irreversible. The "quasi-irreversibility" has also been observed in electrophysiological experiments with the crayfish neuromuscular junction. Tetrodotoxin prevents scorpion toxin I action if it is incubated with synaptosomes or with crayfish neuromuscular junctions before scorpion toxin I application. Tetrodotoxin does not reverse scorpion toxin action if it is added to the preparation after scorpion toxin I. Prevention of scorpion toxin action by tetrodotoxin permits measurements of binding characteristics of this toxin to synaptosomes. The dissociation constant of the tetrodotoxin-receptor complex is 2.2 nM at 22 degrees C. No cooperativity is observed in the binding. Because of its high affinity for synaptosomes (and the "quasi-irreversibility" of the binding), scorpion toxin I appears to be a potentially excellent tool for further studies of the molecular mechanism of neurotransmitter secretion.

摘要

对来自澳毒蝎毒液的神经毒素之一——蝎毒素I对小龙虾神经肌肉接头作用的电生理分析表明,该毒素与神经末梢紧密结合,刺激神经递质释放。生化方法表明,蝎毒素I与大鼠脑突触体的结合伴随着其积累γ-氨基丁酸能力的下降。该毒素的主要作用是刺激神经递质释放。在22℃时,毒素-受体复合物的表观解离常数为0.1 - 0.2μM。解离速率非常缓慢,以至于复合物的形成似乎是准不可逆的。在小龙虾神经肌肉接头的电生理实验中也观察到了“准不可逆性”。如果在应用蝎毒素I之前将河豚毒素与突触体或小龙虾神经肌肉接头一起孵育,河豚毒素可阻止蝎毒素I的作用。如果在蝎毒素I之后将河豚毒素添加到制剂中,河豚毒素不会逆转蝎毒素的作用。河豚毒素对蝎毒素作用的阻止使得能够测量该毒素与突触体的结合特性。在22℃时,河豚毒素-受体复合物的解离常数为2.2 nM。在结合过程中未观察到协同性。由于蝎毒素I对突触体具有高亲和力(以及结合的“准不可逆性”),它似乎是进一步研究神经递质分泌分子机制的潜在优秀工具。

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