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首页> 外文期刊>Oncogene >The AKT|[sol]|I|[kappa]|B kinase pathway promotes angiogenic|[sol]|metastatic gene expression in colorectal cancer by activating nuclear factor-|[kappa]|B and |[beta]|-catenin
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The AKT|[sol]|I|[kappa]|B kinase pathway promotes angiogenic|[sol]|metastatic gene expression in colorectal cancer by activating nuclear factor-|[kappa]|B and |[beta]|-catenin

机译:Akt | [溶胶] | [Kappa] I | [Kappa] I | [Kappa] I | [Kappa1]通过激活核因子 - κ| [κB1]促进结肠直肠癌中的血管生成基因表达

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Our laboratory has delineated that the phosphatidylinositol 3' kinase (PI3K)/AKT/IB kinase (IKK) pathway positively regulates NFB and -catenin, both important transcriptional regulators in colorectal cancer (CRC). Therefore, we investigated the effect of inhibiting the PI3K/AKT/IKK pathway in regulating the inappropriate constitutive activation of NFB and -catenin in CRC cell lines. SW480 and RKO CRC cell lines demonstrate constitutive activation of AKT as well as both NFB- and -catenin-dependent transcription. The constitutive activation of NFB- and -catenin-dependent transcription is inhibited by transiently transfecting either kinase dead (KD) IKK, which blocks IKK kinase activity, KD AKT, which blocks AKT activity, or wildtype (WT) PTEN, which inhibits PI3K and AKT activity. The ability of KD IKK, KD AKT or WT PTEN to decrease -catenin-dependent transcription is independent of their effects on NFB. Inducible expression of either KD IKK or WT PTEN strongly inhibits both the constitutive NFB- and -catenin-dependent promoter and endogenous gene activation. Targeted array-based gene expression analysis of this inducible system reveals that many of the genes downregulated upon inhibition of this pathway are involved in tumor angiogenesis and metastasis. The activation of this pathway and the expression of the three most repressed genes was further analysed in samples of CRC. These results indicate a role of this pathway in controlling gene expression important in tumor progression and metastasis.
机译:我们的实验室已经描绘了磷脂酰肌醇3'激酶(PI3K)/ AKT / IB激酶(IKK)途径呈正细胞癌(CRC)中的重要转录调节剂正常调节NFB和-Catenin。因此,我们研究了抑制PI3K / AKT / IKK途径在CRC细胞系中调节NFB和-Catenin的不恰当组成型活化的效果。 SW480和RKO CRC细胞系表明AKT的组成型激活以及NFB-和-Catenin依赖性转录。通过瞬时转染激酶死(Kd)Ikk来抑制NFB-和-Catenin依赖性转录的组成型激活,该激酶死(KD)IKK阻断IKK激酶活性,KD AKT,其阻断AKT活性,或野生型(WT)PTEN,其抑制PI3K和AKT活动。 KD IKK,KD AKT或WT PTEN降低-Catenin依赖性转录的能力与它们对NFB的影响无关。 KD IKK或WT PTEN的诱导表达强烈抑制组成的NFB-和-Catenin依赖性启动子和内源基因活化。基于阵列的基于阵列的基因表达分析揭示了在抑制该途径后下调的许多基因涉及肿瘤血管生成和转移。在CRC的样品中进一步分析了该途径的激活和三种最抑制基因的表达。这些结果表明该途径在控制肿瘤进展和转移中的基因表达中的作用。

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