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盖斐毒素与乙酰胆碱受体-离子通道复合物的相互作用。II. 脱敏作用的增强。

Interactions of gephyrotoxin with the acetylcholine receptor-ionic channel complex. II. Enhancement of desensitization.

作者信息

Souccar C, Varanda W A, Aronstam R S, Daly J W, Albuquerque E X

出版信息

Mol Pharmacol. 1984 May;25(3):395-400.

PMID:6328265
Abstract

The actions of the tricyclic alkaloid gephyrotoxin ( GyTX ) on the extrajunctional and junctional acetylcholine (ACh) sensitivity and desensitization were studied in the chronically denervated rat soleus muscle and cutaneous pectoris muscle of the frog. At low concentrations, GyTX greatly depressed the extrajunctional ACh sensitivity of the chronically denervated soleus muscles. In addition, GyTX produced a strong inhibition of junctional end-plate potentials evoked by ACh. Junctional and extrajunctional desensitizations induced by microiontophoretically applied ACh were greatly enhanced by the alkaloid in a frequency-dependent manner. These effects were readily reversible. The interaction of GyTX with binding sites on the acetylcholine receptor-channel (AChR) complex was studied on electroplax membranes from Torpedo californica. GyTX binds to the AChR complex at a site distinct from the ACh binding site, as revealed by its lack of inhibition of [125I]alpha-bungarotoxin ( [125I]BGT) binding. On the other hand, GyTX at a concentration range between 1 microM and 100 microM significantly increased the potency of the agonist carbamylcholine as an antagonist of binding of [125I]BGT. At low micromolar concentrations, GyTX inhibited the binding of [3H]perhydrohistrionicotoxin and [3H] phencyclidine to sites associated with the ionic channel of the AChR complex. The affinity of GyTX for these sites was increased 3- to 5-fold by carbamylcholine. Results of electrophysiological and binding studies indicate that GyTX not only blocks the open channel of the AChR but also enhances desensitization of the AChR complex by increasing receptor affinity for agonists.

摘要

在慢性去神经支配的大鼠比目鱼肌和青蛙胸皮肌中,研究了三环生物碱盖菲罗毒素(GyTX)对非接头和接头处乙酰胆碱(ACh)敏感性及脱敏作用的影响。在低浓度时,GyTX极大地降低了慢性去神经支配比目鱼肌的非接头处ACh敏感性。此外,GyTX对ACh诱发的接头终板电位产生强烈抑制作用。通过微离子透入法施加ACh所诱导的接头和非接头脱敏作用,被该生物碱以频率依赖性方式显著增强。这些作用很容易逆转。在加州电鳐的电鳐细胞膜上,研究了GyTX与乙酰胆碱受体 - 通道(AChR)复合物上结合位点的相互作用。GyTX在一个不同于ACh结合位点的部位与AChR复合物结合,这一点通过其对[125I]α - 银环蛇毒素([125I]BGT)结合缺乏抑制作用得以揭示。另一方面,浓度在1μM至100μM之间的GyTX显著增加了激动剂氨甲酰胆碱作为[125I]BGT结合拮抗剂的效力。在低微摩尔浓度时,GyTX抑制[3H]全氢组氨毒素和[3H]苯环利定与AChR复合物离子通道相关位点的结合。氨甲酰胆碱使GyTX对这些位点的亲和力增加了3至5倍。电生理和结合研究结果表明,GyTX不仅阻断AChR的开放通道,还通过增加受体对激动剂的亲和力来增强AChR复合物的脱敏作用。

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