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G 蛋白信号转导激活因子 3 的易位到高尔基体对受体激活的反应及其对反式高尔基网络的影响。

Translocation of activator of G-protein signaling 3 to the Golgi apparatus in response to receptor activation and its effect on the trans-Golgi network.

机构信息

Department of Cell and Molecular Pharmacology and Experimental Therapeutics, Medical University of South Carolina, Charleston, South Carolina 29425, USA.

出版信息

J Biol Chem. 2013 Aug 16;288(33):24091-103. doi: 10.1074/jbc.M112.444505. Epub 2013 Jun 14.

Abstract

Group II activators of G-protein signaling play diverse functional roles through their interaction with Gαi, Gαt, and Gαo via a G-protein regulatory (GPR) motif that serves as a docking site for Gα-GDP. We recently reported the regulation of the AGS3-Gαi signaling module by a cell surface, seven-transmembrane receptor. Upon receptor activation, AGS3 reversibly dissociates from the cell cortex, suggesting that it may function as a signal transducer with downstream signaling implications, and this question is addressed in the current report. In HEK-293 and COS-7 cells expressing the α2A/D-AR and Gαi3, receptor activation resulted in the translocation of endogenous AGS3 and AGS3-GFP from the cell cortex to a juxtanuclear region, where it co-localized with markers of the Golgi apparatus (GA). The agonist-induced translocation of AGS3 was reversed by the α2-AR antagonist rauwolscine. The TPR domain of AGS3 was required for agonist-induced translocation of AGS3 from the cell cortex to the GA, and the translocation was blocked by pertussis toxin pretreatment or by the phospholipase Cβ inhibitor U73122. Agonist-induced translocation of AGS3 to the GA altered the functional organization and protein sorting at the trans-Golgi network. The regulated movement of AGS3 between the cell cortex and the GA offers unexpected mechanisms for modulating protein secretion and/or endosome recycling events at the trans-Golgi network.

摘要

G 蛋白信号转导的 II 组激活剂通过其与 Gαi、Gαt 和 Gαo 的相互作用,发挥多种功能作用,通过 G 蛋白调节 (GPR) 基序作为 Gα-GDP 的对接位点。我们最近报道了细胞表面的七跨膜受体对 AGS3-Gαi 信号模块的调节。受体激活后,AGS3 可从细胞皮质可逆解离,这表明它可能作为信号转导子发挥作用,具有下游信号转导意义,本报告探讨了这个问题。在表达 α2A/D-AR 和 Gαi3 的 HEK-293 和 COS-7 细胞中,受体激活导致内源性 AGS3 和 AGS3-GFP 从细胞皮质易位到核周区域,与高尔基体(GA)的标志物共定位。AGS3 的 TPR 结构域对于 AGS3 从细胞皮质到 GA 的激动剂诱导易位是必需的,AGS3 的易位被百日咳毒素预处理或磷脂酶 Cβ抑制剂 U73122 阻断。AGS3 到 GA 的激动剂诱导易位改变了反式高尔基体网络的功能组织和蛋白质分选。AGS3 在细胞皮质和 GA 之间的调节运动为调节反式高尔基体网络中的蛋白质分泌和/或内体再循环事件提供了意想不到的机制。

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