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Hippo Stabilises Its Adaptor Salvador by Antagonising the HECT Ubiquitin Ligase Herc4

机译:河马通过拮抗HECT泛素连接酶Herc4来稳定其适配器萨尔瓦多。

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摘要

Signalling through the Hippo (Hpo) pathway involves a kinase cascade, which leads to the phosphorylation and inactivation of the pro-growth transcriptional co-activator Yorkie (Yki). Despite the identification of a large number of pathway members and modulators, our understanding of the molecular events that lead to activation of Hpo and the downstream kinase Warts (Wts) remain incomplete. Recently, targeted degradation of several Hpo pathway components has been demonstrated as a means of regulating pathway activity. In particular, the stability of scaffold protein Salvador (Sav), which is believed to promote Hpo/Wts association, is crucially dependent on its binding partner Hpo. In a cell-based RNAi screen for ubiquitin regulators involved in Sav stability, we identify the HECT domain protein Herc4 (HECT and RLD domain containing E3 ligase) as a Sav E3 ligase. Herc4 expression promotes Sav ubiquitylation and degradation, while Herc4 depletion stabilises Sav. Interestingly, Hpo reduces Sav/Herc4 interaction in a kinase-dependent manner. This suggests the existence of a positive feedback loop, where Hpo stabilises its own positive regulator by antagonising Herc4-mediated degradation of Sav.
机译:通过河马(Hpo)途径的信号涉及激酶级联反应,从而导致促生长转录共激活因子Yorkie(Yki)的磷酸化和失活。尽管已鉴定了大量的途径成员和调节剂,但我们对导致Hpo和下游激酶Warts(Wts)活化的分子事件的理解仍然不完整。最近,已经证明了几种Hpo途径组分的靶向降解是调节途径活性的一种手段。特别地,据信促进Hpo / Wts结合的支架蛋白Salvador(Sav)的稳定性至关重要地取决于其结合伴侣Hpo。在涉及Sav稳定性的泛素调节剂的基于细胞的RNAi筛选中,我们将HECT域蛋白Herc4(含有E3连接酶的HECT和RLD域)识别为Sav E3连接酶。 Herc4表达促进Sav泛素化和降解,而Herc4耗尽则稳定Sav。有趣的是,Hpo以激酶依赖性方式降低了Sav / Herc4的相互作用。这表明存在正反馈回路,Hpo通过拮抗Herc4介导的Sav降解来稳定其自身的正调节剂。

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