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Differential Cellular Requirements for Activation of Herpes Simplex Virus Type 1 Early (tk) and Late (gC) Promoters by ICP4

机译:ICP4激活1型单纯疱疹病毒早期(tk)和晚期(gC)启动子的不同细胞要求

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摘要

The herpes simplex virus type 1 immediate-early protein, ICP4, activates the transcription of viral early and late genes and is essential for viral growth. It has been shown to bind DNA and interact with components of the general transcription machinery to activate or repress viral transcription, depending upon promoter context. Since early and late gene promoters have different architectures and cellular metabolism may be very different at early and late times after infection, the cellular requirements for ICP4-mediated activation of early and late genes may differ. This hypothesis was tested using tk and gC as representative early and late promoters, respectively. Nuclear extracts and phosphocellulose column fractions derived from nuclear extracts were able to reconstitute basal and ICP4-activated transcription of both promoters in vitro. When examining the contribution of the general transcription factors on the ability of ICP4 to activate transcription, the fraction containing the general transcription factor TFIIA was not essential for ICP4 activation of the gC promoter, but it was required for efficient activation of the tk promoter. The addition of recombinant TFIIA restored the ability of ICP4 to efficiently activate the tk promoter, but it had no net effect on activation of the gC promoter. The dispensability of TFIIA for ICP4 activation of the gC promoter required an intact INR element. In addition, microarray and Northern blot analysis indicated that TFIIA abundance may be reduced at late times of infection. This decrease in TFIIA expression during infection and its dispensability for activation of late but not early genes suggest one of possibly many mechanisms for the transition from viral early to late gene expression.
机译:单纯疱疹病毒1型即刻早期蛋白ICP4激活病毒早期和晚期基因的转录,对于病毒的生长至关重要。已显示其结合DNA并与通用转录机制的成分相互作用以激活或抑制病毒转录,这取决于启动子的情况。由于早期和晚期基因启动子具有不同的结构,并且在感染后的早期和晚期细胞代谢可能会非常不同,因此,ICP4介导的早期和晚期基因激活的细胞需求可能会有所不同。使用tk和gC分别作为代表性的早期和晚期启动子测试了该假设。核提取物和核提取物衍生的磷酸纤维素柱馏分能够在体外重建两个启动子的基础和ICP4激活的转录。在检查通用转录因子对ICP4激活转录能力的贡献时,含有通用转录因子TFIIA的馏分对于gC启动子的ICP4激活不是必需的,但对tk启动子的有效激活是必需的。重组TFIAA的添加恢复了ICP4有效激活tk启动子的能力,但对gC启动子的激活没有净作用。 TFIIA对于gC启动子的ICP4激活的可分配性需要完整的INR元件。另外,微阵列和Northern印迹分析表明,感染后期TFIIA的丰度可能降低。感染期间TFIIA表达的下降及其对晚期而非早期基因激活的可分配性表明,可能是从病毒早期基因向晚期基因表达过渡的许多机制之一。

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