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Regulation of G-Protein Signaling by RKTG via Sequestration of the Gβγ Subunit to the Golgi Apparatus

机译:RKTG通过将Gβγ亚基螯合至高尔基体来调节G蛋白信号传导

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Upon ligand binding, G-protein-coupled receptors (GPCRs) impart the signal to heterotrimeric G proteins composed of α, β, and γ subunits, leading to dissociation of the Gα subunit from the Gβγ subunit. While the Gα subunit is imperative for downstream signaling, the Gβγ subunit, in its own right, mediates a variety of cellular responses such as GPCR desensitization via recruiting GRK to the plasma membrane and AKT stimulation. Here we report a mode of spatial regulation of the Gβγ subunit through alteration in subcellular compartmentation. RKTG (Raf kinase trapping to Golgi apparatus) is a newly characterized membrane protein specifically localized at the Golgi apparatus. The N terminus of RKTG interacts with Gβ and tethers Gβγ to the Golgi apparatus. Overexpression of RKTG impedes the interaction of Gβγ with GRK2, abrogates the ligand-induced change of subcellular distribution of GRK2, reduces isoproterenol-stimulated phosphorylation of the β2-adrenergic receptor (β2AR), and alters β2AR desensitization. In addition, RKTG inhibits Gβγ- and ligand-mediated AKT phosphorylation that is enhanced in cells with downregulation of RKTG. Silencing of RKTG also alters GRK2 internalization and compromises ligand-induced Gβ translocation to the Golgi apparatus. Taken together, our results reveal that RKTG can modulate GPCR signaling through sequestering Gβγ to the Golgi apparatus and thereby attenuating the functions of Gβγ.
机译:配体结合后,G蛋白偶联受体(GPCR)将信号传递给由α,β和γ亚基组成的异三聚体G蛋白,导致Gα亚基与Gβγ亚基解离。尽管Gα亚基对于下游信号传导是必不可少的,但Gβγ亚基本身可以介导多种细胞反应,例如通过将GRK募集到质膜和AKT刺激来使GPCR脱敏。在这里,我们报告通过改变亚细胞区隔的Gβγ亚基的空间调节模式。 RKTG( R af k inase t 敲击到 G olgi装置)是一种新表征的膜蛋白,专门位于高尔基体。 RKTG的N末端与Gβ相互作用,而系链Gβγ与高尔基体连接。 RKTG的过表达阻碍了Gβγ与GRK2的相互作用,消除了配体诱导的GRK2亚细胞分布的变化,减少了异丙肾上腺素刺激的β2-肾上腺素能受体(β2AR)的磷酸化,并改变了β2AR脱敏。另外,RKTG抑制了Gβγ和配体介导的AKT磷酸化,而RKTG的下调增强了该磷酸化。 RKTG沉默也会改变GRK2的内在化并损害配体诱导的Gβ向高尔基体的转运。两者合计,我们的结果表明,RKTG可以通过隔离Gβγ到高尔基体来调节GPCR信号传导,从而减弱Gβγ的功能。

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