Fridovich-Keil J L, Gudas J M, Dou Q P, Bouvard I, Pardee A B
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts.
Cell Growth Differ. 1991 Feb;2(2):67-76.
As a first step toward elucidating the biochemical basis of gene regulation at the G1-S boundary of the cell cycle, we have identified regions of the murine thymidine kinase (TK) promoter sufficient to confer appropriately growth-responsive expression to a heterologous gene. Using a series of TK promoter-chloramphenicol acetyltransferase (CAT) gene fusion constructs, we have identified sequences located between -174 base pairs upstream and +159 base pairs downstream of the TK translation initiation site that are sufficient to drive efficient S phase-specific expression of the CAT reporter gene in transfected murine fibroblasts. Both deletion analysis and site-specific mutagenesis experiments indicated that an Sp1 consensus binding site is critical to the activity of this promoter. Synchronized populations of BALB/c 3T3 cells stably transfected with either TK promoter-CAT fusion constructs or TK promoter-beta-globin fusion constructs expressed their respective reporter genes in an S phase-specific manner following serum stimulation. In each case, reporter gene expression was reduced during quiescence and G1 and rose upon entry of cells into S phase. The TK sequences included in these constructs therefore contained information sufficient to confer S phase-specific regulation to these two reporter genes. These results set the stage for a more detailed analysis of the sequences and trans-acting factors responsible for regulating murine TK gene expression and may lead to insights into the control of proliferation in normal and transformed cells.
作为阐明细胞周期G1-S边界基因调控生化基础的第一步,我们已鉴定出鼠胸苷激酶(TK)启动子中足以赋予异源基因适当生长反应性表达的区域。利用一系列TK启动子-氯霉素乙酰转移酶(CAT)基因融合构建体,我们鉴定出位于TK翻译起始位点上游-174碱基对和下游+159碱基对之间的序列,这些序列足以驱动转染的鼠成纤维细胞中CAT报告基因的高效S期特异性表达。缺失分析和位点特异性诱变实验均表明,一个Sp1共有结合位点对该启动子的活性至关重要。用TK启动子-CAT融合构建体或TK启动子-β-珠蛋白融合构建体稳定转染的BALB/c 3T3细胞同步群体,在血清刺激后以S期特异性方式表达其各自的报告基因。在每种情况下,报告基因表达在静止期和G1期降低,在细胞进入S期时升高。因此,这些构建体中包含的TK序列含有足以赋予这两个报告基因S期特异性调控的信息。这些结果为更详细分析负责调控鼠TK基因表达的序列和反式作用因子奠定了基础,并可能有助于深入了解正常细胞和转化细胞中的增殖控制。