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Decoding the signaling of a GPCR heteromeric complex reveals a unifying mechanism of action of antipsychotic drugs

机译:解码GPCR异源复合物的信号揭示了抗精神病药的统一作用机制

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Atypical antipsychotic drugs, such as clozapine and risperidone, have a high affinity for the serotonin 5-HT_(2A) G protein-coupled receptor (GPCR), the 2AR, which signals via a G_q heterotrimeric G protein. The closely related non-antipsychotic drugs, such as ritanserin and methysergide, also block 2AR function, but they lack comparable neuropsychological effects. Why some but not all 2AR inhibitors exhibit antipsychotic properties remains unresolved. We now show that a heteromeric complex between the 2AR and the G_i-linked GPCR, metabotropic glutamate 2 receptor (mGluR2), integrates ligand input, modulating signaling output and behavioral changes. Serotonergic and glutamatergic drugs bind the mGluR2/2AR heterocomplex, which then balances Gi-and Gq-dependent signaling. We find that the mGluR2/2AR-mediated changes in Gi and Gq activity predict the psychoactive behavioral effects of a variety of pharmocological compounds. These observations provide mechanistic insight into antipsychotic action that may advance therapeutic strategies for disorders including schizophrenia and dementia.
机译:非典型抗精神病药,例如氯氮平和利培酮,对血清素5-HT_(2A)G蛋白偶联受体(GPCR)2AR具有高亲和力,该受体通过G_q异三聚体G蛋白发出信号。密切相关的非抗精神病药,如利坦色林和美塞麦肽,也可阻断2AR功能,但它们缺乏可比的神经心理学作用。为什么有些但不是全部2AR抑制剂表现出抗精神病特性仍未解决。现在,我们显示2AR与G_i关联的GPCR,代谢型谷氨酸2受体(mGluR2)之间的异源复合体整合了配体输入,调节信号输出和行为变化。血清素能和谷氨酸能药物结合mGluR2 / 2AR异源复合物,从而平衡了Gi和Gq依赖性信号传导。我们发现,mGluR2 / 2AR介导的Gi和Gq活性变化预示了多种药理学化合物的心理行为效应。这些观察为抗精神病药的作用提供了机械方面的见解,可以促进精神分裂症和痴呆症等疾病的治疗策略。

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