首页> 美国卫生研究院文献>Journal of Virology >Telomerase Activation by Human Papillomavirus Type 16 E6 Protein: Induction of Human Telomerase Reverse Transcriptase Expression through Myc and GC-Rich Sp1 Binding Sites
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Telomerase Activation by Human Papillomavirus Type 16 E6 Protein: Induction of Human Telomerase Reverse Transcriptase Expression through Myc and GC-Rich Sp1 Binding Sites

机译:人乳头瘤病毒16型E6蛋白的端粒酶激活:通过Myc和富含GC的Sp1结合位点诱导人端粒酶逆转录酶表达。

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摘要

High-risk human papillomaviruses (HPVs) immortalize keratinocytes by disrupting the retinoblastoma protein (Rb)/p16 pathway and activating telomerase. The E7 oncoprotein targets Rb, while the E6 oncoprotein induces telomerase activity in human keratinocytes. This study has examined the mechanism by which E6 activates telomerase. Expression of human telomerase reverse transcriptase (hTERT), the catalytic subunit of telomerase, was found to be increased in keratinocytes stably expressing HPV type 16 E6, suggesting that E6 acts to increase hTERT transcription. hTERT expression and telomerase activity were activated to significantly higher levels in cells expressing both E6 and E7 than in cells expressing E6 alone. This indicates that E7 may augment E6-mediated activation of hTERT transcription. In transient-transfection assays using hTERT reporters, the induction of hTERT expression by E6 was found to be mediated by a 258-bp fragment of the hTERT promoter, proximal to the ATG initiation codon. Previous studies have demonstrated that overexpression of Myc can activate hTERT expression, suggesting that Myc may be a mediator of E6-mediated hTERT induction. However, in cells stably expressing E6, no strict correlation between the level of Myc and the activation of hTERT was found. Consistent with this observation, mutation of the two Myc binding sites in the hTERT promoter only modestly reduced responsiveness to E6 in transient reporter assays. This indicates that activation of Myc-dependent transcription is not essential for E6-mediated upregulation of hTERT expression. The hTERT promoter also contains five GC-rich elements that can bind Sp1. Mutation of these sites within the 258-bp fragment partially reduced hTERT induction by E6. However, when mutations in the Sp1 sites were combined with the mutated Myc binding sites, all activation by E6 was lost. This indicates that it is the combinatorial binding of factors to Myc and Sp1 cis elements that is responsible for hTERT induction by E6.
机译:高危人类乳头瘤病毒(HPV)通过破坏成视网膜细胞瘤蛋白(Rb)/ p16途径并激活端粒酶来使角质形成细胞永生。 E7癌蛋白靶向Rb,而E6癌蛋白诱导人角质形成细胞中的端粒酶活性。这项研究检查了E6激活端粒酶的机制。发现在稳定表达HPV 16型E6的角质形成细胞中,人类端粒酶逆转录酶(hTERT)(端粒酶的催化亚基)的表达增加,这表明E6起到增加hTERT转录的作用。在表达E6和E7的细胞中,hTERT表达和端粒酶活性被激活到比单独表达E6的细胞高得多的水平。这表明E7可能会增强E6介导的hTERT转录激活。在使用hTERT报告基因的瞬时转染测定中,发现E6对hTERT表达的诱导是由靠近ATG起始密码子的hTERT启动子的258-bp片段介导的。以前的研究表明Myc的过表达可以激活hTERT的表达,这表明Myc可能是E6介导的hTERT诱导的介质。但是,在稳定表达E6的细胞中,未发现Myc的水平与hTERT的激活之间存在严格的相关性。与该观察结果一致,在瞬时报告子测定中,hTERT启动子中两个Myc结合位点的突变仅适度降低了对E6的响应性。这表明Myc依赖性转录的激活对于E6介导的hTERT表达上调不是必需的。 hTERT启动子还包含五个可以结合Sp1的富含GC的元件。 258 bp片段中这些位点的突变部分降低了E6对hTERT的诱导作用。但是,当Sp1位点的突变与突变的Myc结合位点结合时,E6的所有激活都丢失了。这表明,因子与Myc和Sp1顺式元件的组合结合是E6诱导hTERT的原因。

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