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鉴定单纯疱疹病毒 1 型晚期基因编码区中 ICP27 反应元件。

Identification of an ICP27-responsive element in the coding region of a herpes simplex virus type 1 late gene.

机构信息

Department of Microbiology, University of Minnesota Medical School, Minneapolis, Minnesota 55455, USA.

出版信息

J Virol. 2010 Mar;84(6):2707-18. doi: 10.1128/JVI.02005-09. Epub 2009 Dec 30.

Abstract

During productive herpes simplex virus type 1 (HSV-1) infection, a subset of viral delayed-early (DE) and late (L) genes require the immediate-early (IE) protein ICP27 for their expression. However, the cis-acting regulatory sequences in DE and L genes that mediate their specific induction by ICP27 are unknown. One viral L gene that is highly dependent on ICP27 is that encoding glycoprotein C (gC). We previously demonstrated that this gene is posttranscriptionally transactivated by ICP27 in a plasmid cotransfection assay. Based on our past results, we hypothesized that the gC gene possesses a cis-acting inhibitory sequence and that ICP27 overcomes the effects of this sequence to enable efficient gC expression. To test this model, we systematically deleted sequences from the body of the gC gene and tested the resulting constructs for expression. In so doing, we identified a 258-bp "silencing element" (SE) in the 5' portion of the gC coding region. When present, the SE inhibits gC mRNA accumulation from a transiently transfected gC gene, unless ICP27 is present. Moreover, the SE can be transferred to another HSV-1 gene, where it inhibits mRNA accumulation in the absence of ICP27 and confers high-level expression in the presence of ICP27. Thus, for the first time, an ICP27-responsive sequence has been identified in a physiologically relevant ICP27 target gene. To see if the SE functions during viral infection, we engineered HSV-1 recombinants that lack the SE, either in a wild-type (WT) or ICP27-null genetic background. In an ICP27-null background, deletion of the SE led to ICP27-independent expression of the gC gene, demonstrating that the SE functions during viral infection. Surprisingly, the ICP27-independent gC expression seen with the mutant occurred even in the absence of viral DNA synthesis, indicating that the SE helps to regulate the tight DNA replication-dependent expression of gC.

摘要

在单纯疱疹病毒 1 型(HSV-1)的生产性感染期间,病毒的延迟早期(DE)和晚期(L)基因的一个亚组需要立即早期(IE)蛋白 ICP27 才能表达。然而,介导 ICP27 特异性诱导的 DE 和 L 基因中的顺式作用调节序列尚不清楚。一个高度依赖 ICP27 的病毒 L 基因是编码糖蛋白 C(gC)的基因。我们之前证明,在质粒共转染测定中,该基因通过 ICP27 进行转录后反式激活。基于我们过去的结果,我们假设 gC 基因具有顺式作用抑制序列,而 ICP27 克服了该序列的影响,从而能够有效地表达 gC。为了检验这一模型,我们系统地从 gC 基因的主体中删除序列,并测试了产生的构建体的表达。这样,我们在 gC 编码区的 5'部分鉴定出一个 258 个碱基对的“沉默元件”(SE)。当存在时,SE 会抑制瞬时转染的 gC 基因中 gC mRNA 的积累,除非存在 ICP27。此外,SE 可以转移到另一个 HSV-1 基因中,在没有 ICP27 的情况下抑制 mRNA 积累,并在存在 ICP27 的情况下赋予高水平表达。因此,首次在生理相关的 ICP27 靶基因中鉴定出 ICP27 反应性序列。为了观察 SE 在病毒感染过程中是否起作用,我们构建了缺乏 SE 的 HSV-1 重组体,无论是在野生型(WT)还是 ICP27 缺失遗传背景下。在 ICP27 缺失背景下,SE 的缺失导致 gC 基因的 ICP27 非依赖性表达,证明 SE 在病毒感染过程中起作用。令人惊讶的是,与突变体相关的 ICP27 非依赖性 gC 表达甚至在没有病毒 DNA 合成的情况下发生,表明 SE 有助于调节 gC 的紧密依赖 DNA 复制的表达。

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