Stack G, Gorski J
Endocrinology. 1984 Sep;115(3):1141-50. doi: 10.1210/endo-115-3-1141.
Isolated uterine nuclei incorporate [3H]deoxythymidine-5'-triphosphate into acid-precipitable material for 60 min. The rate and extent of incorporation is markedly enhanced by prior treatment of rats with estradiol-17 beta. This stimulation is dose dependent and follows a time course which parallels that which is observed in intact uteri. The maximum response occurs 24 h after an injection of estradiol-17 beta when the DNA synthesis rate has shown an 8.5 +/- 0.9-fold average stimulation over 34 experiments. When a small dose of estradiol-17 beta was injected directly into one uterine horn, DNA synthesis was stimulated in nuclei isolated from that horn but not in nuclei from the vehicle-injected contralateral horn. This suggests that the mitogenic effect of estrogen is direct and not mediated by systemic factors. As shown by diethylaminoethyl-cellulose chromatography and inhibition studies with N-ethylmaleimide and 2':3'-dioxythymidine-5'-triphosphate, the uterine nuclei contain both DNA polymerases alpha and beta; however, alpha-polymerase alone appears to be responsible for the estrogen-stimulated DNA synthesis. When soluble DNA polymerase alpha-activity and endogenous DNA synthesis rates were simultaneously measured, both were found to be initially stimulated between 12 and 15 h after an injection of estradiol-17 beta. However, because the fold-stimulation of alpha-polymerase activity was only half that of DNA synthesis, it appears that DNA synthesis is not merely a simple function of polymerase activity.
分离出的子宫细胞核能将[3H]脱氧胸苷-5'-三磷酸掺入酸不溶性物质中达60分钟。用17β-雌二醇预先处理大鼠后,掺入的速率和程度显著增强。这种刺激呈剂量依赖性,且其时间进程与在完整子宫中观察到的相似。在注射17β-雌二醇后24小时出现最大反应,此时在34次实验中DNA合成速率平均受到了8.5±0.9倍的刺激。当将小剂量的17β-雌二醇直接注射到一个子宫角时,从该子宫角分离出的细胞核中的DNA合成受到刺激,而注射溶剂的对侧子宫角分离出的细胞核中的DNA合成未受刺激。这表明雌激素的促有丝分裂作用是直接的,而非由全身因素介导。如通过二乙氨基乙基纤维素色谱法以及用N-乙基马来酰亚胺和2':3'-二氧胸苷-5'-三磷酸进行的抑制研究所示,子宫细胞核中同时含有DNA聚合酶α和β;然而,似乎只有α-聚合酶负责雌激素刺激的DNA合成。当同时测量可溶性DNA聚合酶α活性和内源性DNA合成速率时,发现两者在注射17β-雌二醇后12至15小时均最初受到刺激。然而,由于α-聚合酶活性的刺激倍数仅为DNA合成的一半,因此似乎DNA合成不仅仅是聚合酶活性的简单函数。