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Catalytic activation of β-arrestin by GPCRs

机译:GPCR催化活化β-arrestin

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摘要

β-arrestins are critical regulator and transducer proteins for G protein-coupled receptors (GPCRs). Cellular β-arrestin function is presently thought to require stable and stoichiometric GPCR/β-arrestin scaffold complex formation driven by the phosphorylated GPCR tail. We demonstrate a distinct and additional mechanism that does not require stable GPCR/β-arrestin scaffolding or the GPCR tail. Instead, it is activated by transient engagement of the GPCR core that destabilizes a conserved inter-domain charge network in β-arrestin. This promotes capture of β-arrestin at the plasma membrane and accumulation in clathrin-coated endocytic structures (CCSs) after GPCR dissociation, requiring a series of β-arrestin interactions with membrane phosphoinositides and CCS lattice proteins. β-arrestin clustering in CCSs without its upstream activating GPCR is associated with a β-arrestin-dependent component of the cellular ERK (Extracellular signal-regulated kinase) response. These results delineate a discrete mechanism of cellular β-arrestin function that is activated catalytically by GPCRs.
机译:β-arrestin是G蛋白偶联受体(GPCR)的关键调节剂和传感器蛋白。目前认为细胞β-arrestin功能需要稳定和化学计量的GPCR /β-arrestin支架复合物,其由磷酸化的GPCR尾巴驱动。我们证明了一种独特的和额外的机制,不需要稳定的GPCR /β-arrestin支架或GPCR尾巴。取而代之的是,它通过GPCR核心的瞬时参与被激活,这使β-arrestin中保守的域间电荷网络不稳定。这会促进GPCR解离后在质膜上捕获β-arrestin,并在网格蛋白包被的内吞结构(CCS)中积累,这需要一系列β-arrestin与膜磷酸肌醇和CCS晶格蛋白的相互作用。没有上游激活GPCR的CCS中的β-arrestin聚集与细胞ERK(细胞外信号调节激酶)反应的β-arrestin依赖性成分相关。这些结果描述了由GPCR催化激活的细胞β-arrestin功能的离散机制。

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