Mariani B D, Slate D L, Schimke R T
Proc Natl Acad Sci U S A. 1981 Aug;78(8):4985-9. doi: 10.1073/pnas.78.8.4985.
We investigated the cell cycle modulation of dihydrofolate reductase (DHFR; tetrahydrofolate dehydrogenase, 7,8-dihydroxyfolate:NADP+ oxidoreductase, EC 1.5.1.3) levels in methotrexate-resistant Chinese hamster ovary cells synchronized by mitotic selection. DNA content and DHFR concentration were analyzed throughout the cell cycle by standard biochemical techniques and by double fluorescence staining utilizing the fluorescence-activated cell sorter. We found an S phase-specific period of DHFR biosynthetic activity. Commencing within hour 2 of S phase and continuing throughout the duration of S phase, there is a 90% increase in DHFR specific activity. This results from an approximately 2.5-fold increase in the level of DHFR, while total soluble protein increases 50% during the same period. This increase is the result of new synthesis of DHFR molecules initiated after the cell is physiologically committed to DNA replication. This increase in DHFR activity through S phage parallels the increasing rate of [3H]thymidine incorporation during the same interval. The maximum peak of DHFR activity is coincident with the maximum rate of DNA synthesis, both activities occurring during the bulk of DNA replication within the last stages of the 6.5-hr S phase.
我们研究了通过有丝分裂选择同步化的甲氨蝶呤抗性中国仓鼠卵巢细胞中二氢叶酸还原酶(DHFR;四氢叶酸脱氢酶,7,8 - 二羟基叶酸:NADP⁺氧化还原酶,EC 1.5.1.3)水平的细胞周期调节。通过标准生化技术以及利用荧光激活细胞分选仪的双荧光染色,在整个细胞周期中分析DNA含量和DHFR浓度。我们发现了DHFR生物合成活性的S期特异性阶段。在S期开始后2小时内开始并持续整个S期,DHFR比活性增加90%。这是由于DHFR水平大约增加了2.5倍,而同期总可溶性蛋白增加了50%。这种增加是细胞在生理上开始进行DNA复制后启动的DHFR分子新合成的结果。在S期期间DHFR活性的这种增加与同一时间段内[³H]胸苷掺入速率的增加平行。DHFR活性的最大峰值与DNA合成的最大速率一致,这两种活性都发生在6.5小时S期最后阶段的大部分DNA复制过程中。