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首页> 外文期刊>Molecular and Cellular Biology >Evidence for transcriptional and post-transcriptional control of the cellular thymidine kinase gene.
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Evidence for transcriptional and post-transcriptional control of the cellular thymidine kinase gene.

机译:细胞胸苷激酶基因转录和转录后控制的证据。

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We have studied the cell cycle-regulated expression of the thymidine kinase (TK) gene in mammalian tissue culture cells. TK mRNA and enzyme levels are low in resting, G0-phase cells, but increase dramatically (10- to 20-fold) during the S phase in both serum-stimulated and simian virus 40-infected cells. To determine whether an increase in the rate of TK gene transcription is responsible for this induction, nuclear run-on transcription assays were performed at various times after serum stimulation or simian virus 40 infection of growth-arrested simian CV1 cells. When assays were performed at 12-h intervals, a small (two- to threefold) but reproducible increase in TK transcription was detected during the S phase. When time points were chosen to span the G1-S interface a larger (six- to sevenfold) increase in transcriptional activity was observed in serum-stimulated cells but not in simian virus 40-infected cells. The large increase in TK mRNA levels and the relatively small increase in transcription rates in growth-stimulated cells suggest that TK gene expression is controlled at both a transcriptional and post-transcriptional level during the mammalian cell cycle. To identify the DNA sequences required for cell cycle-regulated expression, several TK cDNA clones were transfected into Rat-3 TK- cells, and their expression was examined in resting and serum-stimulated cultures. These experiments indicated that the body of the TK cDNA is sufficient to insure cell cycle-regulated expression regardless of the promoter or polyadenylation signal used.
机译:我们已经研究了哺乳动物组织培养细胞中胸苷激酶(TK)基因的细胞周期调节表达。在静止的G0期细胞中,TK mRNA和酶水平较低,但是在S期中,经血清刺激和猿猴病毒40感染的细胞均急剧增加(10至20倍)。为了确定TK基因转录速率的增加是否是引起这种诱导的原因,在血清刺激或猿猴病毒40感染生长停滞的猿猴CV1细胞感染后的不同时间进行了核转录转录试验。当每隔12小时进行一次测定时,在S期中检测到TK转录有少量(两倍至三倍)但可重现的增加。当时间点选择为跨越G1-S接口在转录活性的较大的(六到七倍)增加在血清刺激的细胞中观察到但不在猿猴病毒40感染的细胞。在生长刺激的细胞中,TK mRNA水平的大量增加和转录速率的相对较小的增加表明,在哺乳动物细胞周期中,TK基因的表达在转录水平和转录后水平都受到控制。为了鉴定细胞周期调节表达所需的DNA序列,将几个TK cDNA克隆转染到Rat-3 TK-细胞中,并在静息和血清刺激的培养物中检查了它们的表达。这些实验表明,不管所用的启动子或聚腺苷酸化信号如何,TK cDNA的主体都足以确保细胞周期调节的表达。

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