首页> 美国卫生研究院文献>Cell Regulation >Downstream E-Box–mediated Regulation of the Human Telomerase Reverse Transcriptase (hTERT) Gene Transcription: Evidence for an Endogenous Mechanism of Transcriptional Repression
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Downstream E-Box–mediated Regulation of the Human Telomerase Reverse Transcriptase (hTERT) Gene Transcription: Evidence for an Endogenous Mechanism of Transcriptional Repression

机译:下游电子信箱介导的人类端粒酶逆转录酶(hTERT)基因转录的调节:转录抑制的内源性机制的证据。

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摘要

Regulation of the hTERT gene encoding the telomerase catalytic subunit plays an important role in human cell senescence, immortalization, and carcinogenesis. By examining the activity of various deleted or mutated hTERT promoter fragments, we show that an E-box element downstream of the transcription initiation site is critical to differential hTERT transcription between the telomerase/hTERT-positive renal cell carcinoma cell line (RCC23) and its telomerase/hTERT-negative counterpart containing a transferred, normal chromosome 3 (RCC23+3). This E-box element mediated repression of hTERT transcription in RCC23+3 but not in RCC23. A copy number–dependent enhancement of the repression suggested active repression, rather than loss of activation, in RCC23+3. Endogenous expression levels of c-Myc or Mad1, which could activate or repress hTERT transcription when overexpressed, did not account for the differential hTERT transcription. Gel mobility shift assays identified the upstream stimulatory factors (USFs) as a major E-box–binding protein complex in both RCC23 and RCC23+3 and, importantly, detected an RCC23+3-specific, E-box–binding factor that was distinct from the USF and Myc/Mad families. The E-box–mediated repression was also active in normal human fibroblasts and epithelial cells and inactive in some, but not all, telomerase/hTERT-positive cancer cells. These findings provide evidence for an endogenous, repressive mechanism that actively functions in telomerase/hTERT-negative normal cells and becomes defective during carcinogenic processes, e.g., by an inactivation of the telomerase repressor gene on chromosome 3.
机译:编码端粒酶催化亚基的hTERT基因的调控在人类细胞衰老,永生化和致癌作用中起着重要作用。通过检查各种缺失或突变的hTERT启动子片段的活性,我们表明转录起始位点下游的E-box元件对于端粒酶/ hTERT阳性肾细胞癌细胞系(RCC23)和其端粒酶之间的差异hTERT转录至关重要端粒酶/ hTERT阴性对应物,包含已转移的正常3号染色体(RCC23 + 3)。该E-box元件在RCC23 + 3中介导了hTERT转录的阻遏,但在RCC23中却没有。拷贝数依赖性的抑制作用增强表明在RCC23 + 3中是主动抑制作用,而不是失去激活作用。 c-Myc或Mad1的内源性表达水平(过表达时可以激活或抑制hTERT转录)不能解释hTERT转录的差异。凝胶迁移率变动分析确定了上游刺激因子(USF)是RCC23和RCC23 + 3中的主要E-box结合蛋白复合物,并且重要的是,检测到了一个独特的RCC23 + 3特异性E-box结合因子来自USF和Myc / Mad家庭。 E-box介导的抑制在正常人成纤维细胞和上皮细胞中也有活性,在某些但不是全部端粒酶/ hTERT阳性癌细胞中无活性。这些发现为内源性抑制机制提供了证据,该机制可在端粒酶/ hTERT阴性正常细胞中活跃发挥作用,并在致癌过程中变得有缺陷,例如通过灭活3号染色体上的端粒酶阻遏物基因。

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