Cress W D, Nevins J R
Department of Genetics, Howard Hughes Medical Institute, Duke University Medical Center, Durham, North Carolina 27710.
J Virol. 1994 Jul;68(7):4213-9. doi: 10.1128/JVI.68.7.4213-4219.1994.
Recent experiments demonstrate that a family of related proteins constitute the E2F transcription factor activity and that the interaction of two of these gene products, E2F1 and DP1, generates a heterodimer with DNA binding and transcriptional activating capacity. Previous experiments have shown that the adenovirus E4 19-kDa protein facilitates the formation of a stable E2F dimer on the adenovirus E2 promoter. We now show that coexpression of the E2F1 and DP1 products in transfected SAOS-2 cells, together with the E4 product, generates a multicomponent complex with specificity to the adenovirus E2 promoter. Using a yeast two-hybrid assay system, we find that the E2F1 hydrophobic heptad repeat (E2F1 amino acid residues 206 to 283) allows interaction with a corresponding domain of the DP1 protein (amino acids 196 to 245). We also find that the adenovirus E4 protein interacts with the DP1 hydrophobic heptad repeat domain, but we could not detect a direct interaction between E2F1 and E4. Additional assays demonstrate that the E4 protein can dimerize. Since our previous experiments have shown that mutations within the E2F1 hydrophobic heptad repeat element abolish the E4-mediated transcription enhancement in transfection assays, we conclude that the E4 protein likely interacts with the E2F1-DP1 heterodimer by directly binding to the DP1 product. As a consequence of the ability of E4 to dimerize, we propose that the stable complex formed on the two E2F sites within the E2 promoter is composed of two E2F1-DP1 heterodimers held together by an E4 dimer.
最近的实验表明,一族相关蛋白构成了E2F转录因子活性,并且这些基因产物中的两种,即E2F1和DP1的相互作用产生了具有DNA结合和转录激活能力的异二聚体。先前的实验已经表明,腺病毒E4 19-kDa蛋白促进了腺病毒E2启动子上稳定的E2F二聚体的形成。我们现在表明,在转染的SAOS-2细胞中共表达E2F1和DP1产物,以及E4产物,会产生对腺病毒E2启动子具有特异性的多组分复合物。使用酵母双杂交检测系统,我们发现E2F1疏水七肽重复序列(E2F1氨基酸残基206至283)允许与DP1蛋白的相应结构域(氨基酸196至245)相互作用。我们还发现腺病毒E4蛋白与DP1疏水七肽重复结构域相互作用,但我们未检测到E2F1和E4之间的直接相互作用。额外的检测表明E4蛋白可以二聚化。由于我们先前的实验已经表明,E2F1疏水七肽重复元件内的突变在转染检测中消除了E4介导的转录增强,我们得出结论,E4蛋白可能通过直接结合DP1产物与E2F1-DP1异二聚体相互作用。由于E4具有二聚化的能力,我们提出在E2启动子内的两个E2F位点上形成的稳定复合物由通过E4二聚体结合在一起的两个E2F1-DP1异二聚体组成。