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鉴定三个对 5-羟色胺 2A-代谢型谷氨酸 2(5-HT2A·mGlu2)受体异源三聚体形成及其精神活性行为功能至关重要的残基。

Identification of three residues essential for 5-hydroxytryptamine 2A-metabotropic glutamate 2 (5-HT2A·mGlu2) receptor heteromerization and its psychoactive behavioral function.

机构信息

Department of Psychiatry, Mount Sinai School of Medicine, New York, New York 10029, USA.

出版信息

J Biol Chem. 2012 Dec 28;287(53):44301-19. doi: 10.1074/jbc.M112.413161. Epub 2012 Nov 5.

Abstract

Serotonin and glutamate G protein-coupled receptor (GPCR) neurotransmission affects cognition and perception in humans and rodents. GPCRs are capable of forming heteromeric complexes that differentially alter cell signaling, but the role of this structural arrangement in modulating behavior remains unknown. Here, we identified three residues located at the intracellular end of transmembrane domain four that are necessary for the metabotropic glutamate 2 (mGlu2) receptor to be assembled as a GPCR heteromer with the serotonin 5-hydroxytryptamine 2A (5-HT(2A)) receptor in the mouse frontal cortex. Substitution of these residues (Ala-677(4.40), Ala-681(4.44), and Ala-685(4.48)) leads to absence of 5-HT(2A)·mGlu2 receptor complex formation, an effect that is associated with a decrease in their heteromeric ligand binding interaction. Disruption of heteromeric expression with mGlu2 attenuates the psychosis-like effects induced in mice by hallucinogenic 5-HT(2A) agonists. Furthermore, the ligand binding interaction between the components of the 5-HT(2A)·mGlu2 receptor heterocomplex is up-regulated in the frontal cortex of schizophrenic subjects as compared with controls. Together, these findings provide structural evidence for the unique behavioral function of a GPCR heteromer.

摘要

血清素和谷氨酸 G 蛋白偶联受体 (GPCR) 神经递质影响人类和啮齿动物的认知和感知。GPCR 能够形成异源二聚体复合物,从而改变细胞信号转导,但这种结构排列在调节行为中的作用尚不清楚。在这里,我们确定了三个位于跨膜结构域四的细胞内末端的残基,这些残基对于代谢型谷氨酸 2(mGlu2)受体与 5-羟色胺 5-羟色胺 2A(5-HT(2A))受体在小鼠前额叶皮层组装为 GPCR 异源二聚体是必需的。这些残基(Ala-677(4.40)、Ala-681(4.44)和 Ala-685(4.48))的取代导致 5-HT(2A)·mGlu2 受体复合物的形成缺失,这种作用与它们的异源配体结合相互作用减少有关。用 mGlu2 破坏异源表达会减弱致幻 5-HT(2A)激动剂在小鼠中引起的精神病样效应。此外,与对照组相比,精神分裂症患者前额叶皮层中 5-HT(2A)·mGlu2 受体异源复合物成分之间的配体结合相互作用上调。这些发现共同为 GPCR 异源二聚体的独特行为功能提供了结构证据。

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