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腺病毒2型感染期间二氢叶酸还原酶(DHFR)基因表达的转录后调控

Posttranscriptional control of DHFR gene expression during adenovirus 2 infection.

作者信息

Yoder S S, Berget S M

出版信息

J Virol. 1985 Apr;54(1):72-7. doi: 10.1128/JVI.54.1.72-77.1985.

Abstract

The effects of productive adenovirus infection on host gene expression were studied by using a line of methotrexate-resistant HeLa cells with amplified dihydrofolate reductase (DHFR) genes. We have previously reported that synthesis of DHFR is induced threefold early in infection and is shut off late in infection (Yoder et al., Mol. Cell. Biol. 3:819-828, 1983). These changes in DHFR protein synthesis are accompanied by changes in both the steady-state cytoplasmic levels of DHFR mRNA and in the rate of appearance of DHFR mRNA in the cytoplasm. In this report, we examined the mechanism of nuclear control of DHFR mRNA levels. Transcription of DHFR-specific sequences continued at a constant rate throughout infection, representing 0.015% of the total transcriptional activity. In contrast, nuclear steady-state levels of DHFR sequences changed in correspondence to the changing rate of appearance of DHFR mRNA in the cytoplasm. That is, nuclear levels of DHFR-specific sequences rose 2.5-fold early in infection and declined to a level below that found in uninfected cells late in infection. Thus, the relative nuclear stability of DHFR sequences changed throughout the course of infection such that during the time of induction, DHFR sequences were preferentially stabilized. This stabilization was transient, however, and was no longer observed by the time of shutoff. These data indicate that posttranscriptional nuclear events are important in the regulation of DHFR gene expression by adenovirus.

摘要

利用具有扩增二氢叶酸还原酶(DHFR)基因的甲氨蝶呤抗性海拉细胞系,研究了有生产性腺病毒感染对宿主基因表达的影响。我们之前报道过,感染早期DHFR的合成被诱导增加三倍,而在感染后期则被关闭(约德等人,《分子与细胞生物学》3:819 - 828,1983)。DHFR蛋白质合成的这些变化伴随着DHFR mRNA的稳态细胞质水平以及DHFR mRNA在细胞质中出现速率的变化。在本报告中,我们研究了DHFR mRNA水平的核控制机制。在整个感染过程中,DHFR特异性序列的转录以恒定速率持续进行,占总转录活性的0.015%。相比之下,DHFR序列的核稳态水平随着DHFR mRNA在细胞质中出现速率的变化而改变。也就是说,DHFR特异性序列的核水平在感染早期上升2.5倍,并在感染后期下降到低于未感染细胞中的水平。因此,DHFR序列的相对核稳定性在感染过程中发生了变化,使得在诱导期,DHFR序列被优先稳定。然而,这种稳定是短暂的,在关闭期时就不再观察到。这些数据表明,转录后核事件在腺病毒对DHFR基因表达的调控中很重要。

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