Mannervik M, Fan S, Ström A C, Helin K, Akusjärvi G
BMC, Uppsala University, Box 582, Uppsala, 751 23, Sweden.
Virology. 1999 Apr 10;256(2):313-21. doi: 10.1006/viro.1999.9663.
Previous studies have shown that the cell cycle-regulated E2F transcription factor is subjected to both positive and negative control by phosphorylation. Here we show that in transient transfection experiments, adenovirus E1A activation of the viral E2 promoter is abrogated by coexpression of the viral E4 open reading frame 4 (E4-ORF4) protein. This effect does not to require the retinoblastoma protein that previously has been shown to regulate E2F activity. The inhibitory activity of E4-ORF4 appears to be specific because E4-ORF4 had little effect on, for example, E4-ORF6/7 transactivation of the E2 promoter. We further show that the repressive effect of E4-ORF4 on E2 transcription works mainly through the E2F DNA-binding sites in the E2 promoter. In agreement with this, we find that E4-ORF4 inhibits E2F-1/DP-1-mediated transactivation. We also show that E4-ORF4 inhibits E2 mRNA expression during virus growth. E4-ORF4 has previously been shown to bind to and activate the cellular protein phosphatase 2A. The inhibitory effect of E4-ORF4 was relieved by okadaic acid, which inhibits protein phosphatase 2A activity, suggesting that E4-ORF4 represses E2 transcription by inducing transcription factor dephosphorylation. Interestingly, E4-ORF4 did not inhibit the transactivation capacity of a Gal4-E2F hybrid protein. Instead, E4-ORF4 expression appears to result in reduced stability of E2F/DNA complexes.
先前的研究表明,细胞周期调控的E2F转录因子受到磷酸化的正负调控。在此我们表明,在瞬时转染实验中,病毒E4开放阅读框4(E4-ORF4)蛋白的共表达可消除腺病毒E1A对病毒E2启动子的激活作用。这种效应不需要先前已证明可调节E2F活性的视网膜母细胞瘤蛋白。E4-ORF4的抑制活性似乎具有特异性,因为E4-ORF4对例如E2启动子的E4-ORF6/7反式激活作用影响很小。我们进一步表明,E4-ORF4对E2转录的抑制作用主要通过E2启动子中的E2F DNA结合位点起作用。与此一致,我们发现E4-ORF4抑制E2F-1/DP-1介导的反式激活。我们还表明,E4-ORF4在病毒生长过程中抑制E2 mRNA表达。先前已证明E4-ORF4可结合并激活细胞蛋白磷酸酶2A。冈田酸可缓解E4-ORF4的抑制作用,冈田酸可抑制蛋白磷酸酶2A的活性,这表明E4-ORF4通过诱导转录因子去磷酸化来抑制E2转录。有趣的是,E4-ORF4并未抑制Gal4-E2F杂合蛋白的反式激活能力。相反,E4-ORF4的表达似乎导致E2F/DNA复合物的稳定性降低。