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c-Abl antagonizes the YAP oncogenic function

机译:c-Abl拮抗YAP致癌功能

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YES-associated protein (YAP) is a central transcription coactivator that functions as an oncogene in a number of experimental systems. However, under DNA damage, YAP activates pro-apoptotic genes in conjunction with p73. This program switching is mediated by c-Abl (Abelson murine leukemia viral oncogene) via phosphorylation of YAP at the Y357 residue (pY357). YAP as an oncogene coactivates the TEAD (transcriptional enhancer activator domain) family transcription factors. Here we asked whether c-Abl regulates the YAP-TEAD functional module. We found that DNA damage, through c-Abl activation, specifically depressed YAP-TEAD-induced transcription. Remarkably, c-Abl counteracts YAP-induced transformation by interfering with the YAP-TEAD transcriptional program. c-Abl induced TEAD1 phosphorylation, but the YAP-TEAD complex remained unaffected. In contrast, TEAD coactivation was compromised by phosphomimetic YAP Y357E mutation but not Y357F, as demonstrated at the level of reporter genes and endogenous TEAD target genes. Furthermore, YAP Y357E also severely compromised the role of YAP in cell transformation, migration, anchorage-independent growth, and epithelial-to-mesenchymal transition (EMT) in human mammary MCF10A cells. These results suggest that YAP pY357 lost TEAD transcription activation function. Our results demonstrate that YAP pY357 inactivates YAP oncogenic function and establish a role for YAP Y357 phosphorylation in cell-fate decision.
机译:YES相关蛋白(YAP)是一种中央转录共激活因子,在许多实验系统中均起癌基因的作用。然而,在DNA损伤下,YAP与p73一起激活促凋亡基因。该程序切换由c-Abl(阿贝尔森鼠白血病病毒癌基因)通过Y357残基处的YAP磷酸化(pY357)介导。 YAP作为一种癌基因可以共同激活TEAD(转录增强子激活域)家族的转录因子。在这里,我们问c-Abl是否调节YAP-TEAD功能模块。我们发现通过c-Abl激活,DNA损伤特别抑制了YAP-TEAD诱导的转录。值得注意的是,c-Abl通过干扰YAP-TEAD转录程序来抵消YAP诱导的转化。 c-Abl诱导TEAD1磷酸化,但YAP-TEAD复合物仍然不受影响。相反,如报道基因和内源TEAD靶基因的水平所证实,TEAD共激活受拟磷酸酶YAP Y357E突变而不是Y357F的损害。此外,YAP Y357E还严重破坏了YAP在人乳腺MCF10A细胞中的细胞转化,迁移,不依赖贴壁的生长以及上皮-间充质转化(EMT)中的作用。这些结果表明YAP pY357丧失了TEAD转录激活功能。我们的结果表明,YAP pY357可以使YAP致癌功能失活,并在细胞命运决定中确立YAP Y357磷酸化的作用。

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