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海葵毒素和蝎子毒素共享一个与动作电位钠离子载体相关的共同受体位点。

Sea anemone toxin and scorpion toxin share a common receptor site associated with the action potential sodium ionophore.

作者信息

Catterall W A, Beress L

出版信息

J Biol Chem. 1978 Oct 25;253(20):7393-6.

PMID:29897
Abstract

Toxin II isolated from the sea anemone Anemonia sulcata enhances activation of the action potential sodium ionophore of electrically excitable neuroblastoma cells by veratridine and batrachotoxin. This heterotropic cooperative effect is identical to that observed previously with scorpion toxin but occurs at a 110-fold higher concentration. Depolarization of the neuroblastoma cells inhibits the effect of sea anemone toxin as observed previously for scorpion toxin. Specific scorpion toxin binding is inhibited by sea anemone toxin with KD approximately equal to 90 nM. These results show that the polypeptides scorpion toxin and sea anemone toxin II share a common receptors site associated with action potential sodium ionophores.

摘要

从沟迎风海葵中分离出的毒素II可增强藜芦定和蟾毒素对电兴奋性神经母细胞瘤细胞动作电位钠离子载体的激活作用。这种异源协同效应与先前观察到的蝎毒素相同,但发生浓度高110倍。如先前对蝎毒素的观察一样,神经母细胞瘤细胞的去极化抑制海葵毒素的作用。海葵毒素可抑制蝎毒素的特异性结合,解离常数约为90 nM。这些结果表明,蝎毒素和海葵毒素II这两种多肽共享一个与动作电位钠离子载体相关的共同受体位点。

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