Guidolin Diego, Tortorella Cinzia, Marcoli Manuela, Cervetto Chiara, De Caro Raffaele, Maura Guido, Agnati Luigi F
Department of Neuroscience, University of Padova, 35122 Padova, Italy.
Department of Pharmacy, University of Genova, 16126 Genova, Italy.
Pharmaceuticals (Basel). 2023 Oct 8;16(10):1427. doi: 10.3390/ph16101427.
Dopamine neurotransmission plays critical roles in regulating complex cognitive and behavioral processes including reward, motivation, reinforcement learning, and movement. Dopamine receptors are classified into five subtypes, widely distributed across the brain, including regions responsible for motor functions and specific areas related to cognitive and emotional functions. Dopamine also acts on astrocytes, which express dopamine receptors as well. The discovery of direct receptor-receptor interactions, leading to the formation of multimeric receptor complexes at the cell membrane and providing the cell decoding apparatus with flexible dynamics in terms of recognition and signal transduction, has expanded the knowledge of the G-protein-coupled receptor-mediated signaling processes. The purpose of this review article is to provide an overview of currently identified receptor complexes containing dopamine receptors and of their modulatory action on dopamine-mediated signaling between neurons and between neurons and astrocytes. Pharmacological possibilities offered by targeting receptor complexes in terms of addressing neuropsychiatric disorders associated with altered dopamine signaling will also be briefly discussed.
多巴胺神经传递在调节复杂的认知和行为过程中起着关键作用,这些过程包括奖赏、动机、强化学习和运动。多巴胺受体分为五种亚型,广泛分布于大脑中,包括负责运动功能的区域以及与认知和情感功能相关的特定区域。多巴胺也作用于星形胶质细胞,星形胶质细胞也表达多巴胺受体。直接受体 - 受体相互作用的发现,导致在细胞膜上形成多聚体受体复合物,并为细胞解码装置在识别和信号转导方面提供了灵活的动力学,这扩展了对G蛋白偶联受体介导的信号传导过程的认识。这篇综述文章的目的是概述目前已确定的含有多巴胺受体的受体复合物,以及它们对神经元之间以及神经元与星形胶质细胞之间多巴胺介导的信号传导的调节作用。还将简要讨论靶向受体复合物在解决与多巴胺信号改变相关的神经精神疾病方面所提供的药理学可能性。