Fonseca Jacqueline M, Lambert Nevin A
Department of Pharmacology and Toxicology, Medical College of Georgia, Augusta, 30912-2300, USA.
Mol Pharmacol. 2009 Jun;75(6):1296-9. doi: 10.1124/mol.108.053876. Epub 2009 Mar 9.
The quaternary structure of G protein-coupled receptors (GPCRs) can influence their trafficking and ability to transduce signals. GPCR oligomers are generally portrayed as long-lived entities, although the stability of these complexes has not been studied. Here we show that D2 dopamine receptor protomers interact transiently at a specific oligomer interface. Selective immobilization of cyan fluorescent protein-D2 receptors (C-D2Rs) in the plasma membrane failed to completely immobilize coexpressed D2-venus receptors (D2R-Vs), suggesting that the two did not form stable oligomers with each other. Oxidative cross-linking stabilized C-D2R-D2R-V oligomers such that immobilization of C-D2R also immobilized D2R-V. This stabilization required the presence in both C-D2R and D2R-V of a cysteine residue in transmembrane domain 4 (TM4), a region identified as a putative oligomer interface in these and other class A GPCRs. These results suggest that the interaction of D2 receptor protomers at TM4 is transient unless stabilized and that the quaternary structure of these receptors may thus be subject to physiological or pharmacological regulation.
G蛋白偶联受体(GPCRs)的四级结构会影响其运输和信号转导能力。GPCR寡聚体通常被描绘为寿命较长的实体,尽管这些复合物的稳定性尚未得到研究。在此,我们表明D2多巴胺受体原聚体在特定的寡聚体界面处短暂相互作用。将青色荧光蛋白-D2受体(C-D2Rs)选择性固定在质膜中未能完全固定共表达的D2-维纳斯受体(D2R-Vs),这表明两者并未相互形成稳定的寡聚体。氧化交联使C-D2R-D2R-V寡聚体稳定,从而使C-D2R的固定也能固定D2R-V。这种稳定作用需要跨膜结构域4(TM4)中的半胱氨酸残基同时存在于C-D2R和D2R-V中,该区域在这些及其他A类GPCR中被确定为假定的寡聚体界面。这些结果表明,除非得到稳定,D2受体原聚体在TM4处的相互作用是短暂的,因此这些受体的四级结构可能受到生理或药理调节。