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A comparative study of avermectin B1a and other modulators of the gamma- aminobutyric acid receptor . chloride ion channel complex

机译:阿维菌素B1a和其他调节剂的γ-氨基丁酸受体的比较研究。氯离子通道络合物

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摘要

The interactions of the anthelmintic agent avermectin B1a, the anticonvulsant pentobarbital, and the anxiolytic tracazolate with the gamma-aminobutyric acid (GABA) receptor . chloride ion channel complex in rat brain membrane were studied. The results indicated that they all potentiated ligand binding to the GABA and benzodiazepine receptors. The stimulatory effects of avermectin B1a and pentobarbital, but not tracazolate, on GABA receptor binding were inhibited by picrotoxin. The effect of avermectin B1a was not additive with those of tracazolate and pentobarbital. On the other hand, the stimulatory effect of GABA on benzodiazepine binding was additive with those of avermectin B1a and pentobarbital, but tracazolate and pentobarbital inhibited the effect of avermectin B1a. In the receptor heat inactivation experiments, avermectin B1a and clonazepam protected GABA receptors, whereas avermectin B1a and GABA protected benzodiazepine receptors. Tracazolate, pentobarbital, and picrotoxin did not protect either receptor. These findings suggest that the recognition sites for the benzodiazepines, avermectin B1a, pentobarbital, and picrotoxin are coupled allosterically to the GABA receptor . chloride ion channel complex in different ways. The binding sites for avermectin B1a may be partially shared by picrotoxin, pentobarbital, and tracazolate.
机译:驱虫药阿维菌素B1a,抗惊厥性戊巴比妥和抗焦虑药traazoazolate与γ-氨基丁酸(GABA)受体的相互作用。研究了大鼠脑膜中的氯离子通道复合物。结果表明,它们都增强了配体与GABA和苯并二氮杂receptor受体的结合。阿维菌素B1a和戊巴比妥(而不是曲他唑酯)对GABA受体结合的刺激作用被微毒素抑制。阿维菌素B1a的作用与曲拉唑酯和戊巴比妥的作用不相加。另一方面,GABA对苯并二氮杂卓结合的刺激作用与阿维菌素B1a和戊巴比妥的相加,但曲拉唑酯和戊巴比妥抑制阿维菌素B1a的作用。在受体热灭活实验中,阿维菌素B1a和氯硝西am保护GABA受体,而阿维菌素B1a和GABA保护苯并二氮杂receptor受体。曲唑,戊巴比妥和微毒素不保护任何一个受体。这些发现表明,苯二氮卓类,阿维菌素B1a,戊巴比妥和微毒素的识别位点与GABA受体呈变构偶联。氯离子通道络合物的方式不同。阿维菌素B1a的结合位点可能被微毒素,戊巴比妥和曲拉唑酯部分共享。

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