Biology and Bioinformatics of Signaling Systems (BIOS) Group, Unité Mixtes de Recherche 85, Unité Physiologie de la Reproduction et des Comportements, Institut National de la Recherche Agronomique (INRA), Nouzilly, France.
Centre National de la Recherche Scientifique (CNRS), Unité Mixte de Recherche 7247, Nouzilly, France.
FASEB J. 2018 Mar;32(3):1154-1169. doi: 10.1096/fj.201700763R. Epub 2018 Jan 3.
Many interaction partners of β-arrestins intervene in the control of mRNA translation. However, how β-arrestins regulate this cellular process has been poorly explored. In this study, we show that β-arrestins constitutively assemble a p70S6K/ribosomal protein S6 (rpS6) complex in HEK293 cells and in primary Sertoli cells of the testis. We demonstrate that this interaction is direct, and experimentally validate the interaction interface between β-arrestin 1 and p70S6K predicted by our docking algorithm. Like most GPCRs, the biological function of follicle-stimulating hormone receptor (FSHR) is transduced by G proteins and β-arrestins. Upon follicle-stimulating hormone (FSH) stimulation, activation of G protein-dependent signaling enhances p70S6K activity within the β-arrestin/p70S6K/rpS6 preassembled complex, which is not recruited to the FSHR. In agreement, FSH-induced rpS6 phosphorylation within the β-arrestin scaffold was decreased in cells depleted of Gα. Integration of the cooperative action of β-arrestin and G proteins led to the translation of 5' oligopyrimidine track mRNA with high efficacy within minutes of FSH input. Hence, this work highlights new relationships between G proteins and β-arrestins when acting cooperatively on a common signaling pathway, contrasting with their previously shown parallel action on the ERK MAP kinase pathway. In addition, this study provides insights into how GPCR can exert trophic effects in the cell.-Tréfier, A., Musnier, A., Landomiel, F., Bourquard, T., Boulo, T., Ayoub, M. A., León, K., Bruneau, G., Chevalier, M., Durand, G., Blache, M.-C., Inoue, A., Fontaine, J., Gauthier, C., Tesseraud, S., Reiter, E., Poupon, A., Crépieux, P. G protein-dependent signaling triggers a β-arrestin-scaffolded p70S6K/ rpS6 module that controls 5'TOP mRNA translation.
许多β-arrestin 的相互作用伙伴参与了 mRNA 翻译的控制。然而,β-arrestin 如何调节这一细胞过程还没有得到很好的探索。在这项研究中,我们表明β-arrestin 在 HEK293 细胞和睾丸中的初级支持细胞中组成性地组装 p70S6K/核糖体蛋白 S6(rpS6) 复合物。我们证明这种相互作用是直接的,并通过实验验证了我们的对接算法预测的β-arrestin 1 和 p70S6K 之间的相互作用界面。与大多数 GPCR 一样,卵泡刺激素受体 (FSHR) 的生物学功能是通过 G 蛋白和β-arrestin 转导的。在卵泡刺激素 (FSH) 刺激下,G 蛋白依赖性信号的激活增强了β-arrestin/p70S6K/rpS6 预组装复合物内的 p70S6K 活性,而该复合物不会被招募到 FSHR 上。一致地,在 Gα 耗尽的细胞中,FSH 诱导的 rpS6 在β-arrestin 支架内的磷酸化减少。β-arrestin 和 G 蛋白的协同作用的整合导致在 FSH 输入后的几分钟内以高效翻译 5'寡嘧啶跟踪 mRNA。因此,这项工作突出了 G 蛋白和β-arrestin 在共同信号通路中协同作用时的新关系,与它们以前在 ERK MAP 激酶途径中表现出的平行作用形成对比。此外,这项研究提供了关于 GPCR 如何在细胞中发挥营养作用的见解。-特弗里尔,A.,穆斯尼尔,A.,兰多米尔,F.,布尔夸德,T.,布洛,T.,阿尤布,M. A.,莱昂,K.,布罗诺,G.,谢瓦利埃,M.,杜兰德,G.,布拉谢,M.-C.,井上,A.,丰泰,J.,高蒂尔,C.,特塞劳德,S.,赖特,E.,普蓬,A.,克雷皮厄,P. G 蛋白依赖性信号触发β-arrestin 支架 p70S6K/rpS6 模块,该模块控制 5'TOP mRNA 翻译。