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Nuclear PTEN regulates the APC-CDH1 tumor-suppressive complex in a phosphatase-independent manner

机译:核PTEN以磷酸酶非依赖性方式调节APC-CDH1肿瘤抑制复合物

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PTEN is a frequently mutated tumor suppressor gene that opposes the PI3K/AKT pathway through dephosphorylation of phosphoinositide-3,4,5- triphosphate. Recently, nuclear compartmentalization of PTEN was found as a key component of its tumor-suppressive activity; however its nuclear function remains poorly defined. Here we show that nuclear PTEN interacts with APC/C, promotes APC/C association with CDH1, and thereby enhances the tumor-suppressive activity of the APC-CDH1 complex. We find that nuclear exclusion but not phosphatase inactivation of PTEN impairs APC-CDH1. This nuclear function of PTEN provides a straightforward mechanistic explanation for the fail-safe cellular senescence response elicited by acute PTEN loss and the tumor-suppressive activity of catalytically inactive PTEN. Importantly, we demonstrate that PTEN mutant and PTEN null states are not synonymous as they are differentially sensitive to pharmacological inhibition of APC-CDH1 targets such as PLK1 and Aurora kinases. This finding identifies a strategy for cancer patient stratification and, thus, optimization of targeted therapies. PaperClip
机译:PTEN是一种经常突变的抑癌基因,它通过-3,4,5-三磷酸磷酸肌醇的去磷酸化来对抗PI3K / AKT途径。最近,发现PTEN的核区室化是其抑癌活性的关键组成部分。但是它的核功能仍然不清楚。在这里,我们显示核PTEN与APC / C相互作用,促进APC / C与CDH1缔合,从而增强APC-CDH1复合物的肿瘤抑制活性。我们发现PTEN的核排斥而不是磷酸酶的失活会损害APC-CDH1。 PTEN的这种核功能为急性PTEN丢失和催化失活的PTEN的肿瘤抑制活性引发的故障安全细胞衰老反应提供了直接的机械解释。重要的是,我们证明PTEN突变体和PTEN空状态不是同义的,因为它们对APC-CDH1目标(例如PLK1和Aurora激酶)的药理抑制作用具有不同的敏感性。这一发现确定了癌症患者分层的策略,从而优化了靶向疗法。回形针

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