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ATM kinase enables the functional axis of YAP, PML and p53 to ameliorate loss of Werner protein-mediated oncogenic senescence

机译:ATM激酶可使YAP,PML和p53的功能轴改善Werner蛋白介导的致癌衰老的丧失

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摘要

Werner syndrome (WS) results from dysfunction of the WRN protein, and is associated with premature aging and early death. Here we report that loss of WRN function elicits accumulation of the Yes-associated protein (YAP protein), a major effector of the Hippo tumor suppressor pathway, both experimentally and in WS-derived fibroblasts. YAP upregulation correlates with slower cell proliferation and accelerated senescence, which are partially mediated by the formation of a complex between YAP and the PML protein, whose activity promotes p53 activation. The ATM kinase is necessary for YAP and PML accumulation in WRN-depleted cells. Notably, the depletion of either YAP or PML partially impairs the induction of senescence following WRN loss. Altogether, our findings reveal that loss of WRN activity triggers the activation of an ATM-YAP-PML-p53 axis, thereby accelerating cellular senescence. The latter has features of SASP (senescence-associated secretory phenotype), whose protumorigenic properties are potentiated by YAP, PML and p53 depletion.
机译:Werner综合征(WS)是WRN蛋白功能异常导致的,与过早衰老和早期死亡有关。在这里,我们报告说,WRN功能的丧失会引起Yes相关蛋白(YAP蛋白)的积累,Yes相关蛋白是河马肿瘤抑制途径的主要效应物,无论是在实验中还是在WS衍生的成纤维细胞中。 YAP上调与细胞增殖减慢和衰老加速有关,后者部分由YAP和PML蛋白之间复合物的形成介导,后者的活性促进p53活化。 ATM激酶对于WRN耗尽的细胞中的YAP和PML积累是必需的。值得注意的是,YAP或PML的耗竭在一定程度上削弱了WRN丢失后对衰老的诱导。总而言之,我们的发现表明WRN活性的丧失会触发ATM-YAP-PML-p53轴的激活,从而加速细胞衰老。后者具有SASP(衰老相关的分泌表型)的特征,其致瘤性可通过YAP,PML和p53耗尽得到增强。

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