So Christopher H, Verma Vaneeta, Alijaniaram Mohammad, Cheng Regina, Rashid Asim J, O'Dowd Brian F, George Susan R
Department of Pharmacology, University of Toronto, and the Centre for Addiction and Mental Health, Toronto, Ontario, Canada.
Mol Pharmacol. 2009 Apr;75(4):843-54. doi: 10.1124/mol.108.051805. Epub 2009 Jan 26.
In this report, we investigated whether the D5 dopamine receptor, given its structural and sequence homology with the D1 receptor, could interact with the D2 receptor to mediate a calcium signal similar to the G(q/11) protein-linked phospholipase C-mediated calcium signal resulting from the coactivation of D1 and D2 dopamine receptors within D1-D2 receptor heterooligomers. Fluorescent resonance energy transfer experiments demonstrated close colocalization of cell surface D5 and D2 receptors (<100 A), indicating hetero-oligomerization of D5 and D2 receptors in cells coexpressing both receptors. Coactivation of D5 and D2 receptors within the D5-D2 hetero-oligomers activated a calcium signal. However, unlike what is observed for D1 receptors, which activate extensive calcium mobilization only within a complex with the D2 receptors, a robust calcium signal was triggered by D5 receptors expressed alone. Hetero-oligomerization with the D2 receptor attenuated the ability of the D5 receptor to trigger a calcium signal. The D5 and D5-D2-associated calcium signals were G(q/11) protein-linked and phospholipase C-mediated but were also critically dependent on the influx of extracellular calcium through store-operated calcium channels, unlike the calcium release triggered by D1-D2 heterooligomers. Collectively, these results demonstrate that calcium signaling through D5-D2 receptor hetero-oligomers occurred through a distinct mechanism to achieve an increase in intracellular calcium levels.
在本报告中,鉴于D5多巴胺受体与D1受体在结构和序列上具有同源性,我们研究了它是否能与D2受体相互作用,以介导一种类似于由D1 - D2受体异源寡聚体内D1和D2多巴胺受体共激活所产生的G(q/11)蛋白偶联磷脂酶C介导的钙信号。荧光共振能量转移实验表明,细胞表面的D5和D2受体紧密共定位(<100 Å),这表明在同时表达这两种受体的细胞中,D5和D2受体形成了异源寡聚体。D5 - D2异源寡聚体内D5和D2受体的共激活激活了一个钙信号。然而,与D1受体不同,D1受体仅在与D2受体形成的复合物中激活广泛的钙动员,而单独表达的D5受体就能触发强烈的钙信号。与D2受体的异源寡聚化减弱了D5受体触发钙信号的能力。D5以及与D5 - D2相关的钙信号是由G(q/11)蛋白偶联且由磷脂酶C介导的,但也严重依赖于细胞外钙通过储存性钙通道的内流,这与D1 - D2异源寡聚体触发的钙释放不同。总的来说,这些结果表明,通过D5 - D2受体异源寡聚体的钙信号传导是通过一种独特的机制发生的,以实现细胞内钙水平的升高。