Demeret C, Desaintes C, Yaniv M, Thierry F
Département des Biotechnologies, URA 1644 du CNRS, Institut Pasteur, Paris, France.
J Virol. 1997 Dec;71(12):9343-9. doi: 10.1128/JVI.71.12.9343-9349.1997.
Transcription of the human papillomavirus type 18 (HPV18) E6 and E7 oncogenes is repressed by the viral E2 protein. In C33 cells, we have previously shown that of the four E2 binding sites (E2 BS) present in the HPV18 long control region (LCR), only the binding site adjacent to the TATA box (E2 BS 1) was involved in E2-mediated repression. In the present study, we sought to determine whether this phenomenon was conserved in other cell lines. We first showed that all three E2 BS proximal to the P105 promoter were required for full repression of its activity in HeLa and HaCaT cells. Repression by E2 at E2 BS 2 occurred through the displacement of Sp1. Second, a truncated E2 product, lacking the N-terminal transactivation domain, repressed transcription more efficiently than the full-length protein. Repression was abolished when the N-terminal domain of E2 was replaced by the activation domain of VP16. The VP16-E2 chimeric protein could activate transcription from an LCR mutated in its TATA box. DNA-protein binding studies showed that E2 associates with its four binding sites in the LCR with similar affinities. However, challenge of such complexes with excess binding sites demonstrated that interaction with E2 BS 4 was the most stable while interaction with E2 BS 1 was the least stable. Furthermore, complexes with the full-length E2 were less stable than those formed with the N-terminally truncated protein.
人乳头瘤病毒18型(HPV18)E6和E7癌基因的转录受病毒E2蛋白的抑制。在C33细胞中,我们之前已经表明,HPV18长控制区(LCR)中存在的四个E2结合位点(E2 BS)中,只有与TATA框相邻的结合位点(E2 BS 1)参与E2介导的抑制作用。在本研究中,我们试图确定这种现象在其他细胞系中是否保守。我们首先表明,P105启动子近端的所有三个E2 BS对于在HeLa和HaCaT细胞中完全抑制其活性是必需的。E2在E2 BS 2处的抑制作用是通过Sp1的置换发生的。其次,一种缺少N端反式激活结构域的截短E2产物比全长蛋白更有效地抑制转录。当E2的N端结构域被VP16的激活结构域取代时,抑制作用被消除。VP16-E2嵌合蛋白可以从其TATA框发生突变的LCR激活转录。DNA-蛋白质结合研究表明,E2以相似的亲和力与其在LCR中的四个结合位点结合。然而,用过量结合位点对这种复合物进行挑战表明,与E2 BS 4的相互作用最稳定,而与E2 BS 1的相互作用最不稳定。此外,与全长E2形成的复合物比与N端截短蛋白形成的复合物更不稳定。