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Citron kinase interacts with LATS2 and inhibits its activity by occluding its hydrophobic phosphorylation motif

机译:柚子激酶与LATS2相互作用并通过阻断其疏水性磷酸化基序来抑制其活性

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The inhibitory effect of large tumor suppressor kinase (LATS1/2) on the activity of the oncoprotein yes-associated protein (YAP) is crucial to maintain tissue homeostasis. Proteomic studies have identified several new regulators of this process. Recently, citron kinase (CIT) was listed as a potential binding candidate of Hippo-related components, suggesting a new connection between CIT and the Hippo pathway. Aside from CIT’s role in cytokinesis, the molecular crosstalk between CIT and the Hippo pathway is largely unknown. Here, we demonstrate a role for CIT as a scaffold protein linking LATS2 and YAP. More importantly, CIT interacts with LATS2 to directly suppress LATS2 phosphorylation at the hydrophobic motif—targeted by MST1, leading to LATS2 inactivation and YAP activation. By studying their genetic interactions, we found that Sticky, the CIT homolog in Drosophila melanogaster , functions with Warts to control Drosophila eye development. Together, our study confirms citron kinase as a novel regulator of the Hippo pathway.
机译:大肿瘤抑制激酶(LATS1 / 2)对癌蛋白与相关蛋白(YAP)活性的抑制作用对于维持组织动态平衡至关重要。蛋白质组学研究已经确定了该过程的几个新的调控因子。最近,柚子激酶(CIT)被列为Hippo相关成分的潜在结合候选物,表明CIT和Hippo途径之间存在新的联系。除了CIT在胞质分裂中的作用外,CIT和Hippo途径之间的分子串扰在很大程度上尚不清楚。在这里,我们证明了CIT作为连接LATS2和YAP的支架蛋白的作用。更重要的是,CIT与LATS2相互作用以直接抑制LATS2在MST1靶向的疏水基序上的磷酸化,从而导致LATS2失活和YAP激活。通过研究它们的遗传相互作用,我们发现果蝇的CIT同源物Sticky与疣共同起作用,以控制果蝇的眼睛发育。总之,我们的研究证实了柚子激酶是河马途径的新型调节剂。

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