首页> 外文期刊>International journal of oral science >E2FBP1 antagonizes the p16INK4A|[hyphen]|Rb tumor suppressor machinery for growth suppression and cellular senescence by regulating promyelocytic leukemia protein stability
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E2FBP1 antagonizes the p16INK4A|[hyphen]|Rb tumor suppressor machinery for growth suppression and cellular senescence by regulating promyelocytic leukemia protein stability

机译:E2FBP1通过调节早幼粒细胞白血病蛋白的稳定性,拮抗p16INK4A | [连字符] | Rb肿瘤抑制因子的生长抑制和细胞衰老。

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Cellular senescence is an irreversible cell cycle arrest triggered by the activation of oncogenes or mitogenic signaling as well as the enforced expression of tumor suppressors such as p53, p16INK4A and promyelocytic leukemia protein (PML) in normal cells. E2F‐binding protein 1 (E2FBP1), a transcription regulator for E2F, induces PML reduction and suppresses the formation of PML‐nuclear bodies, whereas the down‐regulation of E2FBP1 provokes the PML‐dependent premature senescence in human normal fibroblasts. Here we report that the depletion of E2FBP1 induces the accumulation of PML through the Ras‐dependent activation of MAP kinase signaling. The cellular levels of p16INK4A and p53 are elevated during premature senescence induced by depletion of E2FBP1, and the depletion of p16INK4A, but not p53 rescued senescent cells from growth arrest. Therefore, the premature senescence induced by E2FBP1 depletion is achieved through the p16INK4A‐Rb pathway. Similar to human normal fibroblasts, the growth inhibition induced by E2FBP1 depletion is also observed in human tumor cells with intact p16INK4A and Rb. These results suggest that E2FBP1 functions as a critical antagonist to the p16INK4A‐Rb tumor suppressor machinery by regulating PML stability.
机译:细胞衰老是不可逆的细胞周期停滞,由正常基因中癌基因或有丝分裂信号的激活以及肿瘤抑制因子(如p53,p16INK4A和早幼粒细胞白血病蛋白(PML))的强制表达触发。 E2F结合蛋白1(E2FBP1)是E2F的转录调节因子,可诱导PML降低并抑制PML核小体的形成,而E2FBP1的下调会引起人正常成纤维细胞中PML依赖的早衰。在这里,我们报道E2FBP1的耗竭通过MAP激酶信号的Ras依赖性激活诱导PML的积累。 p16INK4A和p53的细胞水平在E2FBP1耗尽和p16INK4A耗尽诱导的早衰过程中升高,但p53不能将衰老细胞从生长停滞中拯救出来。因此,通过p16INK4A-Rb途径可实现E2FBP1耗尽诱导的早衰。与人正常成纤维细胞相似,在具有完整p16INK4A和Rb的人肿瘤细胞中也观察到E2FBP1耗尽诱导的生长抑制。这些结果表明,E2FBP1通过调节PML稳定性,成为p16INK4A-Rb肿瘤抑制机制的关键拮抗剂。

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