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转录和转录后机制调节血清刺激细胞中鼠胸苷激酶基因的表达。

Transcriptional and posttranscriptional mechanisms regulate murine thymidine kinase gene expression in serum-stimulated cells.

作者信息

Lieberman H B, Lin P F, Yeh D B, Ruddle F H

机构信息

Department of Biology, Yale University, New Haven, Connecticut 06511.

出版信息

Mol Cell Biol. 1988 Dec;8(12):5280-91. doi: 10.1128/mcb.8.12.5280-5291.1988.

Abstract

We previously isolated and characterized the structure of murine thymidine kinase (tk) genomic and cDNA sequences to begin a study designed to identify regions of the tk gene important for regulated expression during the transition of cells from G0 to a proliferating state. In this report, we describe the stable transfection of the cloned gene into L-M(TK-) cells and show that both thymidine kinase (TK) enzyme activity and DNA synthesis increase in parallel when transfectants in G0 arrest are stimulated by serum. To define promoter and regulatory regions more precisely, we have constructed a series of tk minigenes and have examined their expression in stable transfectants after serum stimulation. We have identified a 291-base-pair DNA fragment at the 5' end of the tk gene that has promoter function, and we have determined its sequence. In addition, we have found that DNA sequences which mediate serum-induced expression of TK are transcribed, since expression of the murine tk cDNA, fused to a promoter from either the murine tk gene, the simian virus 40 early region, or the herpes simplex virus tk gene, is stimulated by serum. Our constructs also reveal that the murine tk polyadenylation signal is not required for regulation, nor is most of the 3' untranslated region. RNA dot blot analysis indicates that murine cytoplasmic tk mRNA levels always parallel TK enzyme activity. Nuclear runon transcription assays show less than a 2-fold increase in transcription from the cloned tk gene in serum-stimulated transfectants, but an 11-fold increase in mouse L929 cells, which are inherently TK+. These results taken together suggest that the murine tk gene is controlled in serum-stimulated cells by a transcriptional mechanism influenced by DNA sequences that flank tk and also by a posttranscriptional system linked to gene sequences that are transcribed.

摘要

我们先前分离并鉴定了小鼠胸苷激酶(tk)基因组和cDNA序列的结构,以此开始一项旨在识别tk基因中对细胞从G0期转变为增殖状态期间的调控表达至关重要区域的研究。在本报告中,我们描述了将克隆基因稳定转染至L-M(TK-)细胞中,并表明当G0期停滞的转染子受到血清刺激时,胸苷激酶(TK)酶活性和DNA合成会平行增加。为了更精确地确定启动子和调控区域,我们构建了一系列tk微型基因,并检测了它们在血清刺激后的稳定转染子中的表达。我们在tk基因的5'端鉴定出一个具有启动子功能的291个碱基对的DNA片段,并确定了其序列。此外,我们发现介导血清诱导TK表达的DNA序列会被转录,因为与来自小鼠tk基因、猿猴病毒40早期区域或单纯疱疹病毒tk基因的启动子融合的小鼠tk cDNA的表达会受到血清刺激。我们的构建体还表明,小鼠tk聚腺苷酸化信号对于调控并非必需,3'非翻译区的大部分区域也是如此。RNA斑点印迹分析表明,小鼠细胞质tk mRNA水平始终与TK酶活性平行。核转录分析显示,在血清刺激的转染子中,克隆的tk基因转录增加不到2倍,但在固有TK+的小鼠L929细胞中增加了11倍。综合这些结果表明,小鼠tk基因在血清刺激的细胞中受转录机制控制,该转录机制受tk侧翼的DNA序列影响,也受与转录的基因序列相关的转录后系统影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8be4/365630/7a0c6c3a0251/molcellb00072-0239-a.jpg

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