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G protein 尾纬 translocation to the Golgi apparatus activates MAPK via p110纬-p101 heterodimers

机译:G蛋白尾纬Golgi装置的易位通过P110纬-P101异二聚体激活MAPK

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The Golgi apparatus (GA) is a cellular organelle that plays a critical role in the processing of proteins for secretion. Activation of G protein–coupled receptors at the plasma membrane (PM) induces the translocation of G protein βγ dimers to the GA. However, the functional significance of this translocation is largely unknown. Here, we study PM-GA translocation of all 12?Gγ subunits in response to chemokine receptor CXCR4 activation and demonstrate that Gγ9 is a unique Golgi-translocating Gγ subunit. CRISPR-Cas9–mediated knockout of Gγ9 abolishes activation of extracellular signal-regulated kinase 1 and 2 (ERK1/2), two members of the mitogen-activated protein kinase family, by CXCR4. We show that chemically induced recruitment to the GA of Gβγ dimers containing different Gγ subunits activates ERK1/2, whereas recruitment to the PM is ineffective. We also demonstrate that pharmacological inhibition of phosphoinositide 3-kinase γ (PI3Kγ) and depletion of its subunits p110γ and p101 abrogate ERK1/2 activation by CXCR4 and Gβγ recruitment to the GA. Knockout of either Gγ9 or PI3Kγ significantly suppresses prostate cancer PC3 cell migration, invasion, and metastasis. Collectively, our data demonstrate a novel function for Gβγ translocation to the GA, via activating PI3Kγ heterodimers p110γ-p101, to spatiotemporally regulate mitogen-activated protein kinase activation by G protein–coupled receptors and ultimately control tumor progression.
机译:Golgi装置(Ga)是一种细胞细胞器,其在处理蛋白质的分泌中发挥着关键作用。在质膜(PM)处的G蛋白偶联受体激活诱导G蛋白βγ二聚体的易位。然而,这种易位的功能意义在很大程度上是未知的。在这里,我们研究所有12?Gγ亚基的PM-GA易位响应趋化因子受体CXCR4活化,并证明Gγ9是一种独特的高胆管转移Gγ亚基。 CARPR-CAS9介导的Gγ9的敲除,通过CXCR4取消了细胞外信号调节激酶1和2(ERK1 / 2)的激活,其中丝裂原激活的蛋白激酶系列的两个成员。我们表明,化学诱导募集含有不同Gγ亚基的Gβγ二聚体的Ga激活ERK1 / 2,而对PM的募集是无效的。我们还证明,通过CXCR4和Gβγ募集到GA的CXCR4和Gβγ和P101废除ERK1 / 2的药理学抑制和其亚基P110γ和P101废除ERK1 / 2的耗尽。 Gγ9或PI3kγ的敲除显着抑制前列腺癌PC3细胞迁移,侵袭和转移。集体,我们的数据通过激活Pi3kγ异二二聚体P110γ-P101,通过激活Pi3kγ异二二聚体P110γ-P101来表明Gβγ易位的新功能,以发挥G蛋白偶联受体的发偶丝溶丝丝溶型蛋白激酶活化,并最终控制肿瘤进展。

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