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Nodal pathway activation due to Akt1 suppression is a molecular switch for prostate cancer cell epithelial-to-mesenchymal transition and metastasis

机译:由于AKT1抑制引起的节点途径激活是前列腺癌细胞上皮对间充质转换和转移的分子开关

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Several studies have unraveled the negative role of Akt1 in advanced cancers, including metastatic prostate cancer (mPCa). Hence, understanding the consequences of targeting Akt1 in the mPCa and identifying its downstream novel targets is essential. We studied how Akt1 deletion in PC3 and DU145 cells activates the Nodal pathway and promotes PCa epithelial-to-mesenchymal transition (EMT) and metastasis. Here we show that Akt1 loss increases Nodal expression in PCa cells accompanied by activation of FoxO1/3a, and EMT markers Snail and N-cadherin as well as loss of epithelial marker E-cadherin. Treatment with FoxO inhibitor AS1842856 abrogated the Nodal expression in Akt1 deleted PCa cells. Akt1 deficient PCa cells exhibited enhanced cell migration and invasion in vitro and lung metastasis in vivo, which were attenuated by treatment with Nodal pathway inhibitor SB505124. Interestingly, Nodal mRNA analysis from two genomic studies in cBioportal showed a positive correlation between Nodal expression and Gleason score indicating the positive role of Nodal in human mPCa. Collectively, our data demonstrate Akt1-FoxO3a-Nodal pathway as an important mediator of PCa metastasis and present Nodal as a potential target to treat mPCa patients.
机译:几项研究已经解开了AKT1在晚期癌症中的负面作用,包括转移前列腺癌(MPCA)。因此,了解在MPCA中瞄准AKT1并识别其下游新型目标的后果至关重要。我们研究了PC3和DU145细胞中Akt1缺失如何激活节点途径,并促进PCA上皮 - 间充质转换(EMT)和转移。在这里,我们表明AKT1损失增加了PCA细胞中的节点表达,伴随着FoxO1 / 3A的激活,EMT标记蜗牛和N-Cadherin以及上皮标记物E-Cadherin的损失。用FOXO抑制剂的处理AS1842856废除了AKT1缺失的PCA细胞中的节点表达。 AKT1缺陷型PCA细胞在体内表现出增强的细胞迁移和侵袭,并通过用节点途径抑制剂SB505124治疗衰减。有趣的是,Cbioportal中的两个基因组研究的节点mRNA分析显示Nodal表达与Gleason评分之间的正相关,表明节点在人MPCA中的积极作用。集体,我们的数据证明了AKT1-FOXO3A-Nodal途径作为PCA转移的重要介体,并作为治疗MPCA患者的潜在靶标,表达康达。

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