Abbott Diagnostics Division, Max-Planck-Ring 2, 65205 Wiesbaden, Germany.
Neuropharmacology. 2013 Jul;70:296-305. doi: 10.1016/j.neuropharm.2013.02.005. Epub 2013 Mar 4.
Important functional interactions between the metabotropic glutamate 2 (mGlu2) and 5-hydroxytryptamine2A (5-HT₂A) neurotransmitter receptors have been established based on electrophysiological, biochemical and behavioral evidence. Over the last several years, dimerization between 5-HT₂A and mGlu2 receptors has been proposed to account for the functional cross-talk between these two receptors in the prefrontal cortex. The pros and cons for the existence of a heteromeric complex between 5-HT₂A and mGlu2 receptors will be reviewed here. First, the fundamental criteria needing to establish evidence for heteromeric complexes will be reviewed. Then, the in vitro evidence for and against heteromeric complexes between 5-HT₂A and mGlu2 receptors will be discussed in regard to physical and functional interactions. Finally, the data with native in situ mGlu2 and 5-HT₂A receptors will be discussed with respect to whether heteromeric complexes or a simple functional interaction between two distinct GPCRs based on brain network activity is the more simple explanation for a range of in vivo data.
基于电生理学、生物化学和行为学证据,已确立代谢型谷氨酸 2(mGlu2)和 5-羟色胺 2A(5-HT₂A)神经递质受体之间的重要功能相互作用。在过去的几年中,5-HT₂A 和 mGlu2 受体的二聚化被提出用于解释这两种受体在前额叶皮层中的功能串扰。在这里,我们将回顾 5-HT₂A 和 mGlu2 受体之间存在异源二聚体复合物的优缺点。首先,将回顾需要建立异源复合物证据的基本标准。然后,将讨论体外证据支持和反对 5-HT₂A 和 mGlu2 受体之间的异源复合物,涉及物理和功能相互作用。最后,将讨论具有天然原位 mGlu2 和 5-HT₂A 受体的数据,以确定基于大脑网络活动的异源复合物或两个不同 GPCR 之间的简单功能相互作用是否更简单地解释了一系列体内数据。