Hubert Walter G, Laimins Laimonis A
Department of Dermatology, University of Arkansas for Medical Sciences, Little Rock, AR 72205, USA.
J Virol. 2002 Mar;76(5):2263-73. doi: 10.1128/jvi.76.5.2263-2273.2002.
The E1 and E2 proteins are both required for papillomavirus DNA replication, and replication efficiency is controlled by the abundance of these factors. In human papillomaviruses (HPVs), the regulation of E1 and E2 expression and its effect on viral replication are not well understood. In particular, it is not known if E1 and E2 modulate their own expression and how posttranscriptional mechanisms may affect the levels of the replication proteins. Previous studies have implicated splicing within the E6 open reading frame (ORF) as being important for modulating replication of HPV type 31 (HPV31) through altered expression of E1 and E2. To analyze the function of the E6 intron in viral replication more specifically, we examined the effects of E6 splicing mutations in the context of entire viral genomes in transient assays. HPV31 genomes which had mutations in the splice donor site (E6SD) or the splice acceptor site (E6SA), a deletion of the intron (E6ID), or substituted heterologous intron sequences (E6IS) were constructed. Compared to wild-type (wt) HPV31, pHPV31-E6SD, -E6SA, and -E6IS replicated inefficiently while pHPV31-E6ID replicated at an intermediate level. Cotransfection of the E6 mutant genomes with an E1 expression vector strongly activated their replication levels, indicating that efficient expression of E1 requires E6 internal splicing. In contrast, replication was activated only moderately with an E2 expression vector. Replacing the wt E6 intron in HPV31 with a heterologous intron from simian virus 40 (E6SR2) resulted in replication levels similar to that of the wt in the absence of expression vectors, suggesting that mRNA splicing upstream of the E1 ORF is important for high-level replication. To examine the effects of E6 intron splicing on E1 and E2 expression directly, we constructed reporter DNAs in which the luciferase coding sequences were fused in frame to the E1 (E1Luc) or E2 (E2Luc) gene. Reporter activities were then analyzed in transient assays with cotransfected E1 or E2 expression vectors. Both reporters were moderately activated by E1 in a dose-dependent manner. In addition, E1Luc was activated by low doses of E2 but was repressed at high doses. In contrast, E2 had little effect on E2Luc activity. These data indicate that E1 expression and that of E2 are interdependent and regulated differentially. When the E6 splicing mutations were analyzed in both reporter backgrounds, only E1Luc activities correlated with splicing competence in the E6 ORF. These findings support the hypothesis that the E6 intron primarily regulates expression of E1. Finally, in long-term replication assays, none of the E6 mutant genomes could be stably maintained. However, cotransfection of the E6 splicing mutant genomes with pHPV31-E7NS, which contains a nonsense mutation in the E7 coding sequence, restored stable replication of some mutants. Our observations indicate that E1 expression and that of E2 are differentially regulated at multiple levels and that efficient expression of E1 is required for transient and stable viral replication. These regulatory mechanisms likely act to control HPV copy number during the various phases of the viral life cycle.
乳头瘤病毒DNA复制需要E1和E2蛋白,复制效率受这些因子丰度的控制。在人乳头瘤病毒(HPV)中,E1和E2表达的调控及其对病毒复制的影响尚不清楚。特别是,尚不清楚E1和E2是否调节自身表达以及转录后机制如何影响复制蛋白的水平。先前的研究表明,E6开放阅读框(ORF)内的剪接对于通过改变E1和E2的表达来调节31型人乳头瘤病毒(HPV31)的复制很重要。为了更具体地分析E6内含子在病毒复制中的功能,我们在瞬时分析中检测了整个病毒基因组背景下E6剪接突变的影响。构建了在剪接供体位点(E6SD)或剪接受体位点(E6SA)有突变、内含子缺失(E6ID)或替换异源内含子序列(E6IS)的HPV31基因组。与野生型(wt)HPV31相比,pHPV31-E6SD、-E6SA和-E6IS复制效率低下,而pHPV31-E6ID以中等水平复制。E6突变基因组与E1表达载体共转染强烈激活了它们的复制水平,表明E1的有效表达需要E6内部剪接。相比之下,用E2表达载体仅适度激活复制。用来自猿猴病毒40的异源内含子(E6SR2)替换HPV31中的wt E6内含子,在没有表达载体的情况下导致复制水平与wt相似,这表明E1 ORF上游的mRNA剪接对于高水平复制很重要。为了直接检测E6内含子剪接对E1和E2表达的影响,我们构建了报告DNA,其中荧光素酶编码序列与E1(E1Luc)或E2(E2Luc)基因读框融合。然后在与共转染的E1或E2表达载体的瞬时分析中分析报告活性。两种报告基因均被E1以剂量依赖性方式适度激活。此外,E1Luc被低剂量的E2激活,但在高剂量时被抑制。相比之下,E2对E