首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >Expression profiling identifies three pathways altered in cellular immortalization: interferon, cell cycle, and cytoskeleton.
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Expression profiling identifies three pathways altered in cellular immortalization: interferon, cell cycle, and cytoskeleton.

机译:表达谱分析确定了细胞永生化的三种途径:干扰素,细胞周期和细胞骨架。

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Abrogation of cellular senescence, resulting in immortalization, is a necessary step in the tumorigenic transformation of a cell. Four independent, spontaneously immortalized Li-Fraumeni syndrome (LFS) cell lines were used to analyze the gene expression changes that may have given these cell lines the growth advantage required to become immortal. A cellular senescence-like phenotype can be induced in immortal LFS cells by treating them with the DNA methyltransferase (DNMT) inhibitor 5-aza-deoxycytidine. We hypothesized, therefore, that genes epigenetically silenced by promoter methylation are potentially key regulators of senescence. We used microarrays to compare the epigenetic gene expression profiles of precrisis LFS cells with immortal LFS cells. Gene ontology analysis of the expression data revealed a statistically significant contribution of interferon pathway, cell cycle, and cytoskeletal genes in the process of immortalization. The identification of the genes and pathways regulating immortalization will lead to a better understanding of cellular immortalization and molecular targets in cancer and aging.
机译:终止细胞衰老,导致永生化,是细胞致瘤转化的必要步骤。四个独立的,自发永生的Li-Fraumeni综合征(LFS)细胞系用于分析基因表达的变化,这些变化可能已赋予这些细胞系永生所需的生长优势。通过用DNA甲基转移酶(DNMT)抑制剂5-氮杂-脱氧胞苷处理它们,可以在永生LFS细胞中诱导出细胞衰老样表型。因此,我们假设启动子甲基化在表观遗传上沉默的基因可能是衰老的关键调控因子。我们使用微阵列比较了前期LFS细胞与永生LFS细胞的表观遗传基因表达谱。表达数据的基因本体分析显示,在永生化过程中,干扰素途径,细胞周期和细胞骨架基因在统计学上具有重要意义。对调节永生化的基因和途径的鉴定将导致对癌症和衰老中细胞永生化和分子靶标的更好理解。

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