Yukawa K, Butz K, Yasui T, Kikutani H, Hoppe-Seyler F
Institute for Molecular and Cellular Biology, Osaka University, Japan.
J Virol. 1996 Jan;70(1):10-6. doi: 10.1128/JVI.70.1.10-16.1996.
Human papillomavirus (HPV) early gene expression is closely linked to the differentiation status of infected epithelial cells. Typically, HPV type 16 (HPV16) or HPV18 E6 and E7 transcripts are only barely detectable within the undifferentiated basal cell layer, but their levels increase concomitantly with higher degrees of epithelial cell differentiation in suprabasal cells. A similar differentiation-dependent distribution of expression has been reported for the recently cloned epithelial cell specific transcription factor Epoc-1/skn-1a. We therefore examined whether Epoc-1/skn-1a may be directly involved in the activation of HPV E6/E7 transcription. Transient transfection studies showed that Epoc-1/skn-1a specifically stimulated the HPV16 and HPV18 E6/E7 promoters. Moreover, ectopically expressed Epoc-1/skn-1a was sufficient to stimulate HPV transcription also in nonepithelial cells. By deletion analyses, the Epoc-1/skn-1a-responsive element was mapped to the promoter-proximal portion of the HPV18 transcriptional control region. Footprint analyses and gel retardation assays demonstrated direct binding of Epoc-1/skn-1a to a hitherto uncharacterized site within this region. Mutation of the Epoc-1/skn-1a recognition site within the context of the complete HPV18 upstream regulatory region inhibited Epoc-1/skn-1a-mediated transactivation. These results show that Epoc-1/skn-1a can directly activate the E6/E7 promoter by binding to the viral transcriptional control region. Thus, Epoc-1/skn-1a may be involved in the differentiation-dependent regulation of HPV transcription.
人乳头瘤病毒(HPV)早期基因表达与受感染上皮细胞的分化状态密切相关。通常,在未分化的基底细胞层中几乎检测不到16型人乳头瘤病毒(HPV16)或18型人乳头瘤病毒(HPV18)的E6和E7转录本,但它们的水平会随着基底上层细胞中上皮细胞分化程度的提高而相应增加。最近克隆的上皮细胞特异性转录因子Epoc-1/skn-1a也有类似的依赖分化的表达分布报道。因此,我们研究了Epoc-1/skn-1a是否可能直接参与HPV E6/E7转录的激活。瞬时转染研究表明,Epoc-1/skn-1a特异性地刺激了HPV16和HPV18的E6/E7启动子。此外,异位表达的Epoc-1/skn-1a也足以在非上皮细胞中刺激HPV转录。通过缺失分析,Epoc-1/skn-1a反应元件被定位到HPV18转录控制区的启动子近端部分。足迹分析和凝胶阻滞试验证明Epoc-1/skn-1a直接结合到该区域内一个迄今未被鉴定的位点。在完整的HPV18上游调控区域内,Epoc-1/skn-1a识别位点的突变抑制了Epoc-1/skn-1a介导的反式激活。这些结果表明,Epoc-1/skn-1a可以通过与病毒转录控制区结合直接激活E6/E7启动子。因此,Epoc-1/skn-1a可能参与了HPV转录的分化依赖性调控。