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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >The lymphoma-associated NPM-ALK oncogene elicits a p16INK4a/pRb-dependent tumor-suppressive pathway.
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The lymphoma-associated NPM-ALK oncogene elicits a p16INK4a/pRb-dependent tumor-suppressive pathway.

机译:淋巴瘤相关的NPM-ALK癌基因引发p16INK4a / pRb依赖性肿瘤抑制途径。

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摘要

Oncogene-induced senescence (OIS) is a barrier for tumor development. Oncogene-dependent DNA damage and activation of the ARF/p53 pathway play a central role in OIS and, accordingly, ARF and p53 are frequently mutated in human cancer. A number of leukemia/lymphoma-initiating oncogenes, however, inhibit ARF/p53 and only infrequently select for ARF or p53 mutations, suggesting the involvement of other tumor-suppressive pathways. We report that NPM-ALK, the initiating oncogene of anaplastic large cell lymphomas (ALCLs), induces DNA damage and irreversibly arrests the cell cycle of primary fibroblasts and hematopoietic progenitors. This effect is associated with inhibition of p53 and is caused by activation of the p16INK4a/pRb tumor-suppressive pathway. Analysis of NPM-ALK lymphomagenesis in transgenic mice showed p16INK4a-dependent accumulation of senescent cells in premalignant lesions and decreased tumor latency in the absence of p16INK4a. Accordingly, human ALCLs showed no expression of either p16INK4a or pRb. Up-regulation of the histone-demethylase Jmjd3 and de-methylation at the p16INK4a promoter contributed to the effect of NPM-ALK on p16INK4a, which was transcriptionally regulated. These data demonstrate that p16INK4a/pRb may function as an alternative pathway of oncogene-induced senescence, and suggest that the reactivation of p16INK4a expression might be a novel strategy to restore the senescence program in some tumors.
机译:癌基因诱导的衰老(OIS)是肿瘤发展的障碍。癌基因依赖性DNA损伤和ARF / p53途径的激活在OIS中起着核心作用,因此,ARF和p53在人类癌症中经常发生突变。然而,许多引发白血病/淋巴瘤的致癌基因会抑制ARF / p53,并且很少选择ARF或p53突变,这提示其他肿瘤抑制途径的参与。我们报告说,NPM-ALK,间变性大细胞淋巴瘤(ALCLs)的起始癌基因,诱导DNA损伤,并不可逆地阻止初级成纤维细胞和造血祖细胞的细胞周期。该作用与p53的抑制有关,并且是由p16INK4a / pRb肿瘤抑制途径的激活引起的。对转基因小鼠中NPM-ALK淋巴瘤的分析表明,p16INK4a依赖于衰老细胞在癌前病变中的积累,并且在不存在p16INK4a的情况下减少了肿瘤潜伏期。因此,人ALCL显示p16INK4a或pRb均不表达。 p16INK4a启动子上的组蛋白脱甲基酶Jmjd3的上调和去甲基化有助于NPM-ALK对p16INK4a的作用,而p16INK4a受到转录调控。这些数据表明,p16INK4a / pRb可能是癌基因诱导的衰老的另一种途径,并且表明p16INK4a表达的重新激活可能是恢复某些肿瘤中衰老程序的新策略。

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