变构调节
G蛋白偶联受体
化学
变构调节剂
生物物理学
受体
钠通道
细胞内
离子通道
变构酶
螺旋(腹足类)
钠
细胞生物学
生物化学
生物
生态学
有机化学
蜗牛
作者
Xianqiang Sun,Geneviève Laroche,Xu Wang,Hans Ågren,Gregory R. Bowman,Patrick M. Giguère,Yaoquan Tu
标识
DOI:10.1002/chem.201605575
摘要
Allosteric sodium in the helix bundle of a G protein-coupled receptor (GPCR) can modulate the receptor activation on the intracellular side. This phenomenon has confounded the GPCR community for decades. In this work, we present a theoretical model that reveals the mechanism of the allosteric modulation induced by sodium in the δ-opioid receptor. We found that the allosteric sodium ion exploits a distinct conformation of the key residue Trp2746.48 to propagate the modulation to helices 5 and 6, which further transmits along the helices and regulates their positions on the intracellular side. This mechanism is supported by subsequent functional assays. Remarkably, our results highlight the contrast between the allosteric effects towards two GPCR partners, the G protein and β-arrestin, as indicated by the fact that the allosteric modulation initiated by the sodium ion significantly affects the β-arrestin recruitment, while it alters the G protein signaling only moderately. We believe that the mechanism revealed in this work can be used to explain allosteric effects initiated by sodium in other GPCRs since the allosteric sodium is highly conserved across GPCRs.
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