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Intact MDM2 E3 ligase activity is required for the cytosolic localization and function of β-arrestin2

机译:完整的MDM2 E3连接酶活性对于β-arrestin2的胞质定位和功能是必需的

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摘要

β-arrestins are well known for their roles in desensitization and sequestration of G protein–coupled receptors. Unlike β-arrestin1, β-arrestin2 exhibits a predominant cytoplasmic distribution at steady state. However, the mechanism and functional significance underlying the regulation of β-arrestin2 subcellular localization remains undefined. Here we report that the subcellular localization and function of β-arrestin2 is tightly regulated by Mdm2 E3 ligase activity. Inhibition of Mdm2 E3 ligase activity either by expressing Mdm2 RING finger mutants or using specific Mdm2 E3 ligase inhibitor is sufficient to stabilize the Mdm2/β-arrestin2 complex and cause abnormal nuclear localization of β-arrestin2. Next we demonstrate that lysine residues at position 11 and 12 of β-arrestin2 are required for the interaction between Mdm2 RING finger mutant H457S (Mdm2H457S) and β-arrestin2, mutation of which prevents Mdm2H457S/β-arrestin2 interaction and subsequent nuclear localization of β-arrestin2. Finally, β-arrestin2–dependent signalings, such as receptor internalization and extracellular signal–regulated protein kinase activation, are found to be impaired once the β-arrestin2 is sequestered in the nuclei by Mdm2H457S. Our findings depict the essential role of Mdm2 E3 ligase activity in determining β-arrestin2 subcellular localization and corresponding signaling.
机译:β-arrestin在脱敏和螯合G蛋白偶联受体方面的作用众所周知。与β-arrestin1不同,β-arrestin2在稳态下显示出主要的细胞质分布。但是,尚不清楚β-arrestin2亚细胞定位调控的机制和功能意义。在这里我们报告说,β-arrestin2的亚细胞定位和功能受到Mdm2 E3连接酶活性的严格调控。通过表达Mdm2 RING手指突变体或使用特定的Mdm2 E3连接酶抑制剂抑制Mdm2 E3连接酶活性足以稳定Mdm2 /β-arrestin2复合物并引起β-arrestin2异常核定位。接下来,我们证明了Mdm2 RING手指突变体H457S(Mdm2 H457S )和β-arrestin2之间的相互作用需要β-arrestin2的11和12位赖氨酸残基,该突变阻止Mdm2 H457S /β-arrestin2相互作用及随后的β-arrestin2核定位。最后,发现一旦Mdm2 H457S 将β-arrestin2螯合在细胞核中,依赖于β-arrestin2的信号传导(例如受体内化和细胞外信号调节的蛋白激酶激活)就会受到损害。我们的发现描述了Mdm2 E3连接酶活性在确定β-arrestin2亚细胞定位和相应信号传导中的重要作用。

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