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EBNA-1和E2F转录因子对爱泼斯坦-巴尔病毒BamHI-F启动子的相互调节

Reciprocal regulation of the Epstein-Barr virus BamHI-F promoter by EBNA-1 and an E2F transcription factor.

作者信息

Sung N S, Wilson J, Davenport M, Sista N D, Pagano J S

机构信息

UNC Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill 27599, USA.

出版信息

Mol Cell Biol. 1994 Nov;14(11):7144-52. doi: 10.1128/mcb.14.11.7144-7152.1994.

Abstract

The Epstein-Barr virus BamHI-F promoter (Fp) is one of three used to transcribe the EBNA latency proteins, in particular, EBNA-1, the only viral gene product needed for episomal replication. Fp is distinguished by possession of the only EBNA-1 binding sites (the Q locus) in the Epstein-Barr virus genome outside oriP. Activity of Fp is negatively autoregulated by interaction of EBNA-1 at two sites in the Q locus, which is situated downstream of the RNA start site. We demonstrate in transient assays that this EBNA-1-mediated repression of Fp can be overcome by an E2F transcription factor which interacts with the DNA at a site centered between the two EBNA-1 binding sites within the Q locus. An E2F-1 fusion protein protects the sequence 5'-GGATGGCGGGTAATA-3' from DNase I digestion, and a DNA probe containing this sequence binds an E2F-specific protein complex from cell extracts, although this region is only loosely homologous with known consensus binding sites for E2F transcription factors. In mobility shift assays, E2F can displace the binding of EBNA-1 from the Q locus but not from oriP, where the E2F binding site is not present. E2F also activates expression of Fp in epithelial cells. These findings identify a potentially new binding site for members of the E2F family of transcription factors and suggest that such a factor is important for expression of EBNA-1 in lymphoid and epithelial cells by displacing EBNA-1 from the Q locus. In addition, the possibility that Fp activity is under cell cycle control is raised. Since the supply of functional E2F varies during the cell cycle and since in these assays overexpression of E2F can overcome repression of Fp by EBNA-1, control of transcription of EBNA-1 mRNA by cell cycle regulatory factors may help to bring about ordered replication of episomes.

摘要

爱泼斯坦 - 巴尔病毒BamHI - F启动子(Fp)是用于转录EBNA潜伏蛋白的三个启动子之一,特别是EBNA - 1,它是游离型复制所需的唯一病毒基因产物。Fp的独特之处在于它拥有爱泼斯坦 - 巴尔病毒基因组中oriP以外唯一的EBNA - 1结合位点(Q位点)。Fp的活性通过EBNA - 1在Q位点的两个位点相互作用而受到负向自动调节,Q位点位于RNA起始位点的下游。我们在瞬时分析中证明,这种由EBNA - 1介导的Fp抑制作用可以被一种E2F转录因子克服,该转录因子在Q位点内两个EBNA - 1结合位点之间的中心位点与DNA相互作用。一种E2F - 1融合蛋白可保护序列5'-GGATGGCGGGTAATA-3'不被DNase I消化,并且包含该序列的DNA探针可结合细胞提取物中的E2F特异性蛋白复合物,尽管该区域与已知的E2F转录因子共有结合位点仅有松散的同源性。在迁移率变动分析中,E2F可以从Q位点取代EBNA - 1的结合,但不能从不存在E2F结合位点的oriP取代EBNA - 1的结合。E2F还可激活上皮细胞中Fp的表达。这些发现确定了E2F转录因子家族成员的一个潜在新结合位点,并表明这样一个因子通过从Q位点取代EBNA - 对淋巴样和上皮细胞中EBNA - 1的表达很重要。此外,还提出了Fp活性受细胞周期调控的可能性。由于功能性E2F的供应在细胞周期中会发生变化,并且在这些分析中E2F的过表达可以克服EBNA - 1对Fp的抑制,细胞周期调节因子对EBNA - 1 mRNA转录的控制可能有助于实现游离型染色体的有序复制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ba2/359248/95dab46caf5d/molcellb00011-0121-a.jpg

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