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The Human ARF Cell Cycle Regulatory Gene Promoter Is a CpG Island Which Can Be Silenced by DNA Methylation and Down-Regulated by Wild-Type p53

机译:人类ARF细胞周期调控基因启动子是一个CpG岛,可被DNA甲基化沉默并被野生型p53下调

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摘要

The INK4a/ARF locus encodes two proteins involved in tumor suppression in a manner virtually unique in mammalian cells. Distinct first exons, driven from separate promoters, splice onto a common exon 2 and 3 but utilize different reading frames to produce two completely distinct proteins, both of which play roles in cell cycle control. INK4a, a critical element of the retinoblastoma gene pathway, binds to and inhibits the activities of CDK4 and CDK6, while ARF, a critical element of the p53 pathway, increases the level of functional p53 via interaction with MDM2. Here we clone and characterize the promoter of the human ARF gene and show that it is a CpG island characteristic of a housekeeping gene which contains numerous Sp1 sites. Both ARF and INK4a are coordinately expressed in cells except when their promoter regions become de novo methylated. In one of these situations, ARF transcription could be reactivated by treatment with the DNA methylation inhibitor 5-aza-2′-deoxycytidine, and the reactivation kinetics of ARF and INK4a were found to differ slightly in a cell line in which both genes were silenced by methylation. The ARF promoter was also found to be highly responsive to E2F1 expression, in keeping with previous results at the RNA level. Lastly, transcription from the ARF promoter was down-regulated by wild-type p53 expression, and the magnitude of the effect correlated with the status of the endogenous p53 gene. This finding points to the existence of an autoregulatory feedback loop between p53, MDM2, and ARF, aimed at keeping p53 levels in check.
机译:INK4a / ARF基因座以哺乳动物细胞实际上独特的方式编码参与肿瘤抑制的两种蛋白质。由不同启动子驱动的不同的第一个外显子剪接到一个共同的外显子2和3上,但是利用不同的阅读框来产生两种完全不同的蛋白质,这两种蛋白质均在细胞周期控制中发挥作用。视网膜母细胞瘤基因途径的关键要素INK4a结合并抑制CDK4和CDK6的活性,而p53途径的关键要素ARF通过与MDM2的相互作用提高功能性p53的水平。在这里,我们克隆并表征了人类ARF基因的启动子,并表明它是包含许多Sp1位点的管家基因的CpG岛特征。 ARF和INK4a均在细胞中协同表达,除非它们的启动子区域从头甲基化。在这些情况之一中,可以通过用DNA甲基化抑制剂5-aza-2'-脱氧胞苷处理来重新激活ARF转录,并且在两个基因都沉默的细胞系中,发现ARF和INK4a的重新激活动力学略有不同。通过甲基化。还发现ARF启动子对E2F1表达高度敏感,与先前在RNA水平上的结果一致。最后,野生型p53表达下调了ARF启动子的转录,其作用强度与内源性p53基因的状态有关。这一发现表明,p53,MDM2和ARF之间存在自动调节反馈回路,旨在控制p53水平。

著录项

  • 作者单位
  • 年度 1998
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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  • 入库时间 2022-08-20 20:40:27

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