Guzowski J F, Singh J, Wagner E K
Department of Molecular Biology and Biochemistry, University of California, Irvine 92717.
J Virol. 1994 Dec;68(12):7774-89. doi: 10.1128/JVI.68.12.7774-7789.1994.
The herpes simplex virus (HSV) type 1 strict late (gamma) UL38 promoter contains three cis-acting transcriptional elements: a TATA box, a specific initiator element, and the downstream activation sequence (DAS). DAS is located between positions +20 and +33 within the 5' untranslated leader region and strongly influences transcript levels during productive infection. In this communication, we further characterize DAS and investigate its mechanism of action. DAS function has a strict spacing requirement, and DAS contains an essential 6-bp core element. A similarly positioned element from the gamma gC gene (UL44) has partial DAS function within the UL38 promoter context, and the promoter controlling expression of the gamma US11 transcript contains an identically located element with functional and sequence similarity to UL38 DAS. These data suggest that downstream elements are a common feature of many HSV gamma promoters. Results with recombinant viruses containing modifications of the TATA box or initiator element of the UL38 promoter suggest that DAS functions to increase transcription initiation and not the efficiency of transcription elongation. In vitro transcription assays using uninfected HeLa nuclear extracts show that, as in productive infection with recombinant viruses, the deletion of DAS from the UL38 promoter dramatically decreases RNA expression. Finally, electrophoretic mobility shift assays and UV cross-linking experiments show that DAS DNA forms a specific, stable complex with a cellular protein (the DAS-binding factor) of approximately 35 kDa. These data strongly suggest that the interaction of cellular DAS-binding factor with DAS is required for efficient expression of UL38 and other HSV late genes.
单纯疱疹病毒1型(HSV-1)严格晚期(γ)UL38启动子包含三个顺式作用转录元件:一个TATA盒、一个特异性起始元件和下游激活序列(DAS)。DAS位于5'非翻译前导区内的+20至+33位之间,在增殖性感染期间强烈影响转录水平。在本通讯中,我们进一步对DAS进行了表征并研究了其作用机制。DAS功能有严格的间距要求,且DAS包含一个必需的6碱基核心元件。来自γ gC基因(UL44)的一个位置相似的元件在UL38启动子背景下具有部分DAS功能,而控制γ US11转录本表达的启动子包含一个位置相同且与UL38 DAS具有功能和序列相似性的元件。这些数据表明下游元件是许多HSV γ启动子的共同特征。含有UL38启动子TATA盒或起始元件修饰的重组病毒的结果表明,DAS的功能是增加转录起始,而非转录延伸效率。使用未感染的HeLa细胞核提取物进行的体外转录分析表明,与重组病毒的增殖性感染一样,从UL38启动子中删除DAS会显著降低RNA表达。最后,电泳迁移率变动分析和紫外线交联实验表明,DAS DNA与一种约35 kDa的细胞蛋白(DAS结合因子)形成特异性、稳定的复合物。这些数据有力地表明,细胞DAS结合因子与DAS的相互作用是UL38和其他HSV晚期基因高效表达所必需的。