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首页> 外文期刊>The Prostate >Deregulation of FoxO3a accelerates prostate cancer progression in TRAMP mice
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Deregulation of FoxO3a accelerates prostate cancer progression in TRAMP mice

机译:FoxO3a的失控加速TRAMP小鼠的前列腺癌进展

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BACKGROUND Forkhead box, class "O" (FoxO) transcription factors are involved in multiple signaling pathways and possess tumor suppressor functions. Loss of PTEN and activation of PI3K/Akt is frequently observed in prostate cancer, which may potentially inactivate FoxO activity. We therefore investigated the role of FoxO transcription factors in prostate cancer progression, in particular FoxO3a, in transgenic adenocarcinoma of the mouse prostate (TRAMP) mice, which mimics progressive forms of human disease. METHODS Prostate cancer progression in TRAMP mice was followed from 8 to 28 weeks. Expression patterns of Akt, FoxO1a, FoxO3a, FoxO4, and their phosphorylated form, DNA binding activity and downstream signaling molecules during different stages of disease progression were examined by immunoblotting, immunoprecipitation, enzyme-linked immunoabsorbant assay (ELISA), and immunohistochemistry. Inhibition of FoxO3a activity was attained by using FoxO3a peptide treatment to TRAMP mice. RESULTS In TRAMP mice, FoxO3a activity is negatively regulated by Akt/PKB through post-translational modification. Progressive increase in Akt activation during prostate cancer progression led to increase phosphorylation of FoxO3a and binding with 14-3-3, which potentially affected its transcriptional activity in age-specific manner. Furthermore, blocking FoxO3a activity resulted in accelerated prostate cancer progression in these mice, which was associated with the loss of cell cycle control and increased proliferation and survival markers. CONCLUSIONS Restoration of FoxO3a activity represents an attractive therapeutic target in the chemoprevention and possibly in inhibition of progression of prostate cancer.
机译:背景技术“ O”类前叉箱(FoxO)转录因子参与多种信号途径并具有肿瘤抑制功能。在前列腺癌中经常观察到PTEN的丢失和PI3K / Akt的激活,这可能会导致FoxO活性失活。因此,我们研究了FoxO转录因子在小鼠前列腺癌(TRAMP)小鼠的转基因腺癌​​中模仿前列腺疾病进展的过程,特别是FoxO3a在前列腺癌进展中的作用。方法追踪TRAMP小鼠的前列腺癌进展8至28周。通过免疫印迹,免疫沉淀,酶联免疫吸附测定(ELISA)和免疫组化检查了Akt,FoxO1a,FoxO3a,FoxO4的表达模式及其磷酸化形式,DNA结合活性和下游信号分子在疾病进展的不同阶段。通过使用FoxO3a肽处理TRAMP小鼠获得FoxO3a活性的抑制。结果在TRAMP小鼠中,FoxO3a活性通过翻译后修饰被Akt / PKB负调节。前列腺癌进展过程中Akt激活的逐渐增加导致FoxO3a的磷酸化增加并与14-3-3结合,从而可能以年龄特异性方式影响其转录活性。此外,阻断FoxO3a活性导致这些小鼠的前列腺癌进展加快,这与细胞周期控制的丧失以及增殖和存活标志物的增加有关。结论FoxO3a活性的恢复代表了化学预防中可能有吸引力的治疗靶标,并且可能抑制了前列腺癌的进展。

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