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Dishevelled has a YAP nuclear export function in a tumor suppressor context-dependent manner

机译:Disheveled具有以肿瘤抑制因子为背景依存方式的YAP核输出功能

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摘要

Phosphorylation-dependent YAP translocation is a well-known intracellular mechanism of the Hippo pathway; however, the molecular effectors governing YAP cytoplasmic translocation remains undefined. Recent findings indicate that oncogenic YAP paradoxically suppresses Wnt activity. Here, we show that Wnt scaffolding protein Dishevelled (DVL) is responsible for cytosolic translocation of phosphorylated YAP. Mutational inactivation of the nuclear export signal embedded in DVL leads to nuclear YAP retention, with an increase in TEAD transcriptional activity. DVL is also required for YAP subcellular localization induced by E-cadherin, α-catenin, or AMPK activation. Importantly, the nuclear-cytoplasmic trafficking is dependent on the p53-Lats2 or LKB1-AMPK tumor suppressor axes, which determine YAP phosphorylation status. In vivo and clinical data support that the loss of p53 or LKB1 relieves DVL-linked reciprocal inhibition between the Wnt and nuclear YAP activity. Our observations provide mechanistic insights into controlled proliferation coupled with epithelial polarity during development and human cancer.
机译:磷酸化依赖性YAP易位是河马途径的众所周知的细胞内机制。然而,支配YAP细胞质易位的分子效应子仍然不确定。最近的发现表明,致癌的YAP自相矛盾地抑制了Wnt活性。在这里,我们显示Wnt脚手架蛋白Disheveled(DVL)负责磷酸化YAP的胞质易位。嵌入DVL中的核输出信号的突变失活导致核YAP保留,并增加了TEAD转录活性。由E-钙粘着蛋白,α-连环蛋白或AMPK激活诱导的YAP亚细胞定位也需要DVL。重要的是,核质运输取决于p53-Lats2或LKB1-AMPK肿瘤抑制因子轴,它们决定了YAP磷酸化状态。体内和临床数据支持p53或LKB1的丢失减轻了Wnt和核YAP活性之间DVL连锁的相互抑制。我们的观察结果提供了有关发育和人类癌症中受控增殖以及上皮极性的机制性见解。

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