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首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Selective inhibition of proliferation in colorectal carcinoma cell lines expressing mutant APC or activated B-Raf.
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Selective inhibition of proliferation in colorectal carcinoma cell lines expressing mutant APC or activated B-Raf.

机译:在表达突变APC或激活的B-Raf的结直肠癌细胞系中选择性抑制增殖。

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Tumor-derived cell lines are indispensable tools for understanding the contribution of activated signaling pathways to the cancer phenotype and for the design and testing of targeted signal therapies. In our study, we characterize 10 colorectal carcinoma cell lines for the presence of mutations in the wnt, Ras/MAPK, PI3K and p53 pathways. The mutational spectrum found in this panel of cell lines is similar to that detected in primary CRC, albeit with higher frequency of mutation in the beta-catenin and B-Raf genes. We have monitored activation of the wnt and Ras/MAPK pathways in these cells and analyzed their sensitivity to selective signaling inhibitors. Using beta-catenin subcellular distribution as a marker, we show that cells harboring APC mutations have low-level activated wnt signaling, which can be blocked by the extracellular wnt inhibitor DKK-1, suggesting autocrine activation of this pathway; proliferation of these cells is also blocked by DKK-1. In contrast, cells with beta-catenin mutations are unresponsive to extracellular wnt inhibition. Constitutive phosphorylation of MAPK is present in the majority of the cell lines and correlates with B-Raf but not K-Ras mutations; correspondingly, the proliferation of cells harboring mutations in B-Raf, but not K-Ras, is exquisitely sensitive inhibition of the MAPK pathway. We find no correlation between PI3K mutation or loss of PTEN expression and increased sensitivity to PI3K inhibitors. Our study discloses clear-cut differences in responsiveness to signaling inhibitors between individual mutations within an activated signaling pathway and suggests likely targets for signal-directed therapy of colorectal carcinomas.
机译:肿瘤来源的细胞系是了解激活的信号通路对癌症表型的贡献以及靶向信号疗法的设计和测试必不可少的工具。在我们的研究中,我们针对wnt,Ras / MAPK,PI3K和p53途径中突变的存在,对10种大肠癌细胞系进行了表征。在这组细胞系中发现的突变谱类似于在原发性CRC中检测到的突变谱,尽管β-catenin和B-Raf基因的突变频率更高。我们已经监测了这些细胞中wnt和Ras / MAPK途径的激活,并分析了它们对选择性信号抑制剂的敏感性。使用β-catenin亚细胞分布作为标记物,我们表明具有APC突变的细胞具有低水平的激活的wnt信号传导,可被细胞外wnt抑制剂DKK-1阻断,表明该途径的自分泌激活。这些细胞的增殖也被DKK-1阻断。相反,具有β-catenin突变的细胞对细胞外Wnt抑制无反应。 MAPK的组成型磷酸化存在于大多数细胞系中,并且与B-Raf突变相关,但与K-Ras突变无关。相应地,具有B-Raf突变但不包含K-Ras突变的细胞的增殖是对MAPK途径的非常敏感的抑制。我们发现PI3K突变或PTEN表达缺失与对PI3K抑制剂的敏感性增加之间没有相关性。我们的研究揭示了激活的信号通路内单个突变之间对信号抑制剂反应的明确差异,并提出了大肠癌信号导向治疗的可能靶标。

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