首页> 外文OA文献 >Human 5-HT7 Receptor-Induced Inactivation of Forskolin-Stimulated Adenylate Cyclase by Risperidone, 9-OH-Risperidone and Other “Inactivating Antagonists”
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Human 5-HT7 Receptor-Induced Inactivation of Forskolin-Stimulated Adenylate Cyclase by Risperidone, 9-OH-Risperidone and Other “Inactivating Antagonists”

机译:人5-HT7受体诱导的灭活 利培酮,9-OH-利培酮和福司柯林刺激的腺苷酸环化酶 其他“灭活拮抗剂”

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摘要

We have previously reported on the unusual human 5-hydroxytryptamine7 (h5-HT7) receptor-inactivating properties of risperidone, 9-OH-risperidone, bromocriptine, methiothepin, metergoline, and lisuride. Inactivation was defined as the inability of 10 μM 5-HT to stimulate cAMP accumulation after brief exposure and thorough removal of the drugs from HEK293 cells expressing h5-HT7 receptors. Herein we report that brief exposure of the h5-HT7 receptor-expressing cells to inactivating drugs, followed by removal of the drugs, results in potent and efficacious irreversible inhibition of forskolin-stimulated adenylate cyclase activity. Pretreatment, followed by removal of the inactivating drugs inhibited 10 μM forskolin-stimulated adenylate cyclase activity with potencies similar to the drugs' affinities for the h5-HT7 receptor. The actions of the inactivating drugs were pertussis toxin-insensitive, indicating the lack of Gi in their mechanism(s) of action. Methiothepin and bromocriptine maximally inhibited 10 μM forskolin-stimulated adenylate cyclase, whereas the other drugs produced partial inhibition, indicating the drugs are inducing slightly different inactive conformations of the h5-HT7 receptor. Maximal effects of these inactivating drugs occurred within 15 to 30 min of exposure of the cells to the drugs. A Gs-mediated inhibition of forskolin-stimulated activity has never been reported. The inactivating antagonists seem to induce a stable conformation of the h5-HT7 receptor, which induces an altered state of Gs, which, in turn, inhibits forskolin-mediated stimulation of adenylate cyclase. These and previous observations indicate that the inactivating antagonists represent a unique class of drugs and may reveal GPCR regulatory mechanisms previously unknown. These drugs may produce innovative approaches to the development of therapeutic drugs.
机译:我们以前曾报道过利培酮,9-OH-利培酮,溴隐亭,美沙西平,美特古琳和利苏立德具有非常规的人类5-羟色胺7(h5-HT7)受体失活特性。灭活定义为短暂暴露并从表达h5-HT7受体的HEK293细胞中彻底清除药物后10μM5-HT无法刺激cAMP积累。在本文中,我们报道了将表达h5-HT7受体的细胞短暂暴露于灭活药物,然后去除药物,导致了对佛司可林刺激的腺苷酸环化酶活性的有效,不可逆的抑制。进行预处理,然后去除灭活药物,可抑制10μM福司柯林刺激的腺苷酸环化酶活性,其效力类似于该药物对h5-HT7受体的亲和力。灭活药物的作用对百日咳毒素不敏感,表明它们的作用机制缺乏Gi。 Methiothepin和溴隐亭最大程度地抑制了10μMforskolin刺激的腺苷酸环化酶,而其他药物产生了部分抑制作用,表明这些药物诱导h5-HT7受体的活性构象略有不同。这些灭活药物的最大作用发生在细胞暴露于药物的15至30分钟内。从未报道过Gs介导的对福司柯林刺激的活性的抑制。失活的拮抗剂似乎诱导了h5-HT7受体的稳定构象,从而诱导了Gs状态的改变,进而抑制了福司可林介导的腺苷酸环化酶的刺激。这些和以前的观察结果表明,灭活拮抗剂代表一类独特的药物,可能揭示了以前未知的GPCR调节机制。这些药物可以为治疗药物的开发提供创新的方法。

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