Modulation of ligands binding to the benzodiazepine receptor by an endogenous inhibitor (GABA-modulin) and bicuculline.

Journal de pharmacologie Pub Date : 1986-10-01
H Mousah, P Jacqmin, M Lesne
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Abstract

We have prepared and purified an endogenous protein (brain neuropeptide) by extraction with 0.025 N acetic acid and precipitation with a saturated ammonium sulfate solution followed by column chromatography. This protein was isolated and partially purified (approx. 500 times). When added to Triton X-100 treated synaptic membrane preparation obtained from rat CNS, this modulates specific high affinity GABA binding site without affecting low affinity site. This protein was called GABA-modulin (GM). GM like bicuculline (competitive GABA antagonist) modulates the affinity of benzodiazepine receptor ligands. But the effect of bicuculline is more important than that of GM. Bicuculline increases or decreases respectively the binding of 3H-beta-CCM or 3H-flunitrazepam by approximately 60%. In the same conditions, at a concentration of 12 micrograms/ml GM increases or decreases respectively the binding of 3H-beta-CCM or 3H-flunitrazepam by approximately 35% and no more modulation was obtained even the concentration of GM was increased. Bicuculline and GM doesn't modify the specific binding of 3H-Ro 15-1788 to the BZD receptor. It is concluded that GM exhibit a lower ability than bicuculline to modulate the binding of the BZD receptor ligands because GM interacts only with the GABA high affinity binding site without affecting the low affinity binding site. These observations suggest that the two GABA binding sites probably interact with the BZD receptor.

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内源性抑制剂(gaba -调节素)和双球茎碱对苯二氮卓受体配体结合的调节。
采用0.025 N乙酸提取,饱和硫酸铵沉淀,柱层析法制备了一种内源性蛋白(脑神经肽)。该蛋白被分离并部分纯化。500次)。添加到Triton X-100处理过的大鼠中枢神经系统突触膜制剂中,可调节特定的高亲和力GABA结合位点而不影响低亲和力位点。这种蛋白被称为gaba调节素(GM)。GM样双球茎碱(竞争性GABA拮抗剂)调节苯二氮卓受体配体的亲和力。但二胡兰的作用比GM更重要,二胡兰对3h - β - ccm和3h -氟西泮的结合分别增加或减少约60%。在相同条件下,当GM浓度为12微克/毫升时,3h - β - ccm和3h -氟硝西泮的结合分别增加或减少约35%,即使GM浓度增加,也没有得到更多的调节。双曲碱和GM不改变3H-Ro 15-1788与BZD受体的特异性结合。由此可见,GM调节BZD受体配体结合的能力低于双球茎碱,因为GM仅与GABA高亲和力结合位点相互作用,而不影响低亲和力结合位点。这些观察结果表明,这两个GABA结合位点可能与BZD受体相互作用。
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