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HeLa cell beta-tubulin gene transcription is stimulated by adenovirus 5 in parallel with viral early genes by an E1a-dependent mechanism.

机译:腺病毒5通过依赖E1a的机制与病毒早期基因并行刺激HeLa细胞的β-微管蛋白基因转录。

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摘要

We report that the rate of transcription of cellular beta-tubulin genes increases during the early phase of adenovirus infection of HeLa cells, with kinetics very similar to those routinely found for viral genes. This activation depends upon adenovirus early region E1a, which encodes products that activate early virus transcription. To compare the responses of viral and cellular genes to E1a, we infected HeLa cells with dl312, a transcriptionally inactive deletion mutant that lacks a functional E1a gene. We then superinfected the cells with a helper virus, dl327, which encodes active E1a products, and measured changes in the rates of transcription of various cell and viral genes. Early region E3 of dl312 was activated 0 to 6 h postinfection and then repressed at 8 h postinfection, thus reproducing the two-step kinetics characteristic of a wild-type infection. Synthesis of beta-tubulin nuclear RNA was also transiently induced two- to six-fold, rising and falling in a manner similar to E3 transcription. An increase in helper virus multiplicity gave an increase in beta-tubulin stimulation, but dl312 alone, even at a high multiplicity of infection, gave no induction, confirming the requirement for E1a. beta-Actin nuclear RNA was actively synthesized before infection, but it was not further stimulated by the virus. Cellular beta-globin gene transcription was not stimulated by the virus, although transcription of a transfected beta-globin plasmid was induced by the virus or from a cotransfected E1a expression plasmid. We conclude that adenovirus 5 can stimulate beta-tubulin gene transcription. We discuss the significance for the viral life cycle of viral stimulation of cell genes and consider possible mechanisms in the light of the results obtained with beta-actin and beta-tubulin.
机译:我们报告说,在腺病毒感染HeLa细胞的早期阶段,细胞β-微管蛋白基因的转录速率增加,其动力学与病毒基因的常规动力学非常相似。这种激活取决于腺病毒早期区域E1a,该区域编码激活早期病毒转录的产物。为了比较病毒和细胞基因对E1a的反应,我们用dl312感染HeLa细胞,dl312是缺乏功能性E1a基因的转录失活删除突变体。然后,我们用辅助病毒dl327对细胞进行超级感染,该辅助病毒编码活性E1a产物,并测量了各种细胞和病毒基因的转录速率变化。感染后0至6小时激活dl312的早期区域E3,然后在感染后8小时被抑制,从而再现了野生型感染的两步动力学特征。 β-微管蛋白核RNA的合成也被短暂诱导了2到6倍,以类似于E3转录的方式上升和下降。辅助病毒多样性的增加导致β-微管蛋白刺激的增加,但是即使在高感染复数的情况下,单独的dl312也没有诱导作用,从而证实了对E1a的需求。 β-肌动蛋白核RNA在感染前已被主动合成,但并未被病毒进一步刺激。尽管病毒或共转染的E1a表达质粒诱导了转染的β-珠蛋白质粒的转录,但病毒并未刺激细胞的β-珠蛋白基因转录。我们得出结论,腺病毒5可以刺激β微管蛋白基因转录。我们讨论病毒刺激细胞基因的病毒生命周期的意义,并根据用β-肌动蛋白和β-微管蛋白获得的结果考虑可能的机制。

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