Kanalas J J, Suttle D P
J Biol Chem. 1984 Feb 10;259(3):1848-53.
The levels of UMP synthase protein and mRNA are increased in rat hepatoma cells that have acquired resistance to pyrazofurin, a potent inhibitor of pyrimidine biosynthesis. A cDNA plasmid library was prepared from partially purified poly(A)+ mRNA isolated from the resistant cell line. Recombinant plasmids with inserts complementary to UMP synthase mRNA were selected by differential hybridization with cDNA prepared from wild type and resistant cell mRNA and analysis of hybrid-selected mRNA by in vitro translation reactions. One plasmid, pUMPS-2, contains a 850-base pair insert and was used to analyze UMP synthase gene sequences in the wild type and resistant cell lines. Blot hybridization of restricted genomic DNA demonstrated amplification of the UMP synthase gene in the resistant cells. The number of UMP synthase genes is increased 15-fold as determined by a modified dot hybridization procedure. Previous studies have shown that the resistant cells have a 16-fold increase in UMP synthase mRNA but a 40-fold increase in synthase activity (Suttle, D.P. (1983) J. Biol. Chem. 258, 7707-7713). To further investigate this discrepancy between the amount of increase in DNA and mRNA versus the increase in enzyme activity, we have determined the relative rate of synthesis and degradation of UMP synthase. The rate of synthesis was 13-fold faster in the resistant cells. The degradation rate was not significantly different between the two cell lines. These data indicate that gene amplification is the major factor contributing to the enzyme overproduction in the pyrazofurin-resistant cells.
对嘧啶生物合成的强效抑制剂吡唑呋喃产生抗性的大鼠肝癌细胞中,尿苷酸合酶蛋白和mRNA水平升高。从抗性细胞系中分离的部分纯化的聚腺苷酸加尾mRNA制备了cDNA质粒文库。通过与野生型和抗性细胞mRNA制备的cDNA进行差异杂交,以及通过体外翻译反应分析杂交选择的mRNA,筛选出与尿苷酸合酶mRNA互补的插入片段的重组质粒。一个质粒pUMPS - 2含有一个850个碱基对的插入片段,用于分析野生型和抗性细胞系中的尿苷酸合酶基因序列。限制性基因组DNA的印迹杂交表明抗性细胞中尿苷酸合酶基因发生了扩增。通过改良的点杂交程序确定,尿苷酸合酶基因的数量增加了15倍。先前的研究表明,抗性细胞中尿苷酸合酶mRNA增加了16倍,但合酶活性增加了40倍(萨特尔,D.P.(1983年)《生物化学杂志》258卷,7707 - 7713页)。为了进一步研究DNA和mRNA增加量与酶活性增加之间的这种差异,我们测定了尿苷酸合酶的相对合成和降解速率。抗性细胞中的合成速率快13倍。两种细胞系之间的降解速率没有显著差异。这些数据表明基因扩增是导致吡唑呋喃抗性细胞中酶过量产生的主要因素。