首页> 美国卫生研究院文献>Nucleic Acids Research >Adenovirus infection of differentiated F9 cells results in a global shut-off of differentiation-induced gene expression.
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Adenovirus infection of differentiated F9 cells results in a global shut-off of differentiation-induced gene expression.

机译:腺病毒感染分化的F9细胞会导致分化诱导的基因表达全面关闭。

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摘要

Previous experiments have demonstrated a link between transcriptional regulatory mechanisms acting during F9 cell differentiation and transcription control by the adenovirus E1A gene. We have isolated a number of differentiation-specific genes by cDNA cloning to determine if E1A exerts a coordinated control over differentiation specific gene expression. The mRNAs encoded by these cDNAs were undetectable or only barely detectable in undifferentiated cells but then rose in concentration upon differentiation. Analysis of transcription rates in isolated nuclei revealed that all but one of the genes was transcriptionally regulated during differentiation. Interestingly, alpha 2-type IV collagen expression was activated by a post-transcriptional mechanism since the gene was transcribed in both undifferentiated and differentiated cells whereas the cytoplasmic mRNA was undetectable in undifferentiated cells but rose in abundance in parallel with other regulated transcripts. Adenovirus infection of differentiated F9 cells reduced the cytoplasmic mRNA levels of each of the differentiation specific genes to near that found in the undifferentiated cell. Of those genes that were transcriptionally activated by differentiation, adenovirus infection specifically inhibited transcription. In contrast, although the alpha 2 collagen mRNA levels were reduced by adenovirus infection similar to the other mRNAs, the control was post-transcriptional since transcription of the gene was unaffected. Thus, the mechanism for loss of gene expression mediated by E1A reflects the mechanism by which the gene was activated during differentiation. Based on these results we suggest that E1A controls the expression of the F9 cell phenotype by targeting a regulatory activity acting early in the differentiation program.
机译:先前的实验表明,在F9细胞分化过程中起作用的转录调控机制与腺病毒E1A基因的转录控制之间存在联系。我们已经通过cDNA克隆分离了许多分化特异性基因,以确定E1A是否对分化特异性基因表达施加了协调控制。这些cDNA编码的mRNA在未分化的细胞中是不可检测的或仅几乎不可检测的,但是在分化后浓度升高。对分离出的细胞核中转录速率的分析表明,除一个基因外,所有基因都在分化过程中受到转录调控。有趣的是,由于该基因在未分化和分化的细胞中均被转录,而胞质mRNA在未分化细胞中却未检测到,但与其他调控转录产物平行时,其丰度上升,因此转录后的机制激活了α2型IV胶原的表达。分化的F9细胞的腺病毒感染使每个分化特异性基因的胞浆mRNA水平降低至接近未分化细胞中的水平。在分化中被转录激活的那些基因中,腺病毒感染特异性地抑制了转录。相反,尽管腺病毒感染使α2胶原mRNA水平降低,与其他mRNA相似,但由于该基因的转录不受影响,因此该对照是转录后的。因此,由E1A介导的基因表达丧失的机制反映了分化过程中基因被激活的机制。基于这些结果,我们建议E1A通过靶向在分化程序中早期起作用的调节活性来控制F9细胞表型的表达。

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