Renner K, Sock E, Gerber J K, Wegner M
Zentrum für Molekulare Neurobiologie, Universität Hamburg, Germany.
DNA Cell Biol. 1996 Dec;15(12):1057-62. doi: 10.1089/dna.1996.15.1057.
Human papovavirus JC exhibits a strong tropism for glial cells in vivo. To a large extent, this effect is due to the pronounced glia specificity of viral gene expression, which is mediated by the specific interaction of glial transcription factors such as Tst-1/Oct6/SCIP with viral promoter sequences. Here we show that, in return, expression of the glial transcription factor Tst-1/Oct6/SCIP can be strongly activated by T antigen, the early gene product of JC virus, in a dose-dependent manner. In transient transfection experiments, stimulation by T antigen was entirely dependent on a 335-bp segment of the Tst-1/Oct6/SCIP gene promoter that included the transcriptional start site. The same fragment was also bound by purified T antigen in immunoprecipitation assays due to the presence of three closely spaced and tandemly oriented GAGGC pentamers. However, when this array of pentamers was mutated so that binding of T antigen was strongly reduced, T-antigen-dependent transcriptional activation remained unaffected. Thus, similar to viral late gene expression, transcriptional stimulation of the Tst-1/Oct6/SCIP gene by T antigen was not dependent on binding to GAGGC pentamers present within the promoter. Nevertheless, our data provide strong support for a model in which JC virus influences gene expression of its host cell via its early gene product in a manner favourable for its own propagation.
人乳头多瘤空泡病毒JC在体内对神经胶质细胞表现出强烈的嗜性。在很大程度上,这种效应归因于病毒基因表达明显的神经胶质细胞特异性,这是由神经胶质转录因子如Tst-1/Oct6/SCIP与病毒启动子序列的特异性相互作用介导的。在此我们表明,作为回报,神经胶质转录因子Tst-1/Oct6/SCIP的表达可被JC病毒的早期基因产物T抗原以剂量依赖的方式强烈激活。在瞬时转染实验中,T抗原的刺激完全依赖于Tst-1/Oct6/SCIP基因启动子的一个335bp片段,该片段包含转录起始位点。由于存在三个紧密间隔且串联排列的GAGGC五聚体,相同的片段在免疫沉淀实验中也能与纯化的T抗原结合。然而,当这个五聚体阵列发生突变,使得T抗原的结合大幅减少时,T抗原依赖的转录激活仍然不受影响。因此,与病毒晚期基因表达类似,T抗原对Tst-1/Oct6/SCIP基因的转录刺激并不依赖于与启动子内存在的GAGGC五聚体的结合。尽管如此,我们的数据为一种模型提供了有力支持,即JC病毒通过其早期基因产物以有利于自身繁殖的方式影响其宿主细胞的基因表达。