Huang Jin-Sheng, Dong Lanlan, Le Breton Guy C
Department of Pharmacology, College of Medicine, University of Illinois at Chicago, 835 S. Wolcott Ave. (mail code 868), Chicago, IL 60612, USA.
Cell Signal. 2006 Apr;18(4):564-76. doi: 10.1016/j.cellsig.2005.06.011. Epub 2005 Aug 24.
The present study provides evidence that G protein coupled receptor (GPCR) signaling pathways participate in an interactive signaling network governed by the principles of mass action. Using an inducible thromboxane A2 receptor (TPR)/platelet activating factor receptor (PAFR) co-expressing cell model, TPR or PAFR expression was independently up-regulated. Immunostaining and radioligand binding experiments demonstrated that this receptor up-regulation resulted in increased GPCR:G protein mass ratios. This increase in mass ratio impacted both TPR and PAFR ligand affinity. Specifically, up-regulating TPR expression not only decreased TPR ligand affinity, but also decreased the ligand affinity of PAFRs. A similar effect on ligand affinities was observed when PAFRs were up-regulated. In addition, increasing the GPCR:G protein mass ratio for TPRs led to desensitization of the calcium mobilization response to PAFR activation, and increasing PAFR mass desensitized the TPR-mediated calcium response. Finally, it was observed that an increased TPR:G protein mass ratio was associated with a shift in the TPR signaling response, and revealed an additional TPR signaling pathway through G(S). Collectively, these results describe a novel mechanism, i.e., mass-dependent GPCR signaling, by which cells can modulate their GPCR signaling pathways and signaling priorities.
本研究提供了证据,表明G蛋白偶联受体(GPCR)信号通路参与了一个由质量作用原理支配的交互式信号网络。使用可诱导的血栓素A2受体(TPR)/血小板活化因子受体(PAFR)共表达细胞模型,TPR或PAFR的表达被独立上调。免疫染色和放射性配体结合实验表明,这种受体上调导致GPCR:G蛋白质量比增加。质量比的这种增加影响了TPR和PAFR的配体亲和力。具体而言,上调TPR表达不仅降低了TPR配体亲和力,还降低了PAFRs的配体亲和力。当PAFRs上调时,观察到对配体亲和力有类似影响。此外,增加TPRs的GPCR:G蛋白质量比导致对PAFR激活的钙动员反应脱敏,而增加PAFR质量则使TPR介导的钙反应脱敏。最后,观察到TPR:G蛋白质量比增加与TPR信号反应的转变有关,并揭示了一条通过G(S)的额外TPR信号通路。总的来说,这些结果描述了一种新机制,即质量依赖性GPCR信号传导,通过该机制细胞可以调节其GPCR信号通路和信号优先级。