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外切蛋白酶在调控肉毒杆菌毒素神经元内代谢中的作用。

The role of exoproteases in governing intraneuronal metabolism of botulinum toxin.

作者信息

Simpson Lance L, Maksymowych Andrew B, Kouguchi Hirokazu, Dubois Garrett, Bora Roop S, Joshi Suresh

机构信息

Department of Medicine, Jefferson Medical College, Philadelphia, PA, USA.

出版信息

Protein J. 2005 Apr;24(3):155-65. doi: 10.1007/s10930-005-7839-0.

Abstract

Botulinum toxin type A has a long duration of action, and thus it can block transmitter release for several weeks to several months. However, little is known about the precise mechanism that accounts for termination of toxin action. Therefore, experiments were done to gauge the effects of aminopeptidases and carboxypeptidases on the structure and function of the toxin. Exoproteases were added to the holotoxin, the native light chain, and a recombinant light chain. Treated toxin and light chain were examined for their effects on neuromuscular transmission and on isolated substrate. The data showed that aminopeptidase attack did not alter the N-terminus of the toxin/light chain, nor did it produce losses in biological activity. Carboxypeptidase attack did alter the C-terminus of the light chain, but not sufficiently to alter biological activity. The data suggest that the tertiary structure of the light chain confers upon the molecule substantial resistance to exoproteases.

摘要

A型肉毒杆菌毒素作用持续时间长,因此它可阻断神经递质释放数周乃至数月。然而,对于毒素作用终止的确切机制却知之甚少。因此,开展了实验以评估氨肽酶和羧肽酶对毒素结构和功能的影响。将外切蛋白酶添加到全毒素、天然轻链和重组轻链中。检测处理后的毒素和轻链对神经肌肉传递及分离底物的影响。数据表明,氨肽酶攻击并未改变毒素/轻链的N端,也未导致生物活性丧失。羧肽酶攻击确实改变了轻链的C端,但不足以改变生物活性。数据表明,轻链的三级结构赋予该分子对外切蛋白酶的显著抗性。

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