Gallo C J, Koza R A, Herbst E J
Biochem J. 1986 Aug 15;238(1):37-42. doi: 10.1042/bj2380037.
HeLa cells were synchronized for S-phase DNA synthesis by the double thymidine-block procedure. A comparison was made of the polyamine content and S-phase DNA synthesis in cells from control cultures and cultures to which an inhibitor of polyamine biosynthesis, alpha-difluoromethylornithine, was added to the synchronization medium. Control cells showed a peak of synchronous DNA synthesis at 3 h and a maximum concentration of polyamines at 6-9 h after release of the second thymidine block. Cells from cultures containing the inhibitor were severely inhibited in the synthesis of DNA and contained no putrescine and only traces of spermidine while the spermine content was lowered by as much as 80%. Supplementation of cultures containing alpha-difluoromethylornithine with a polyamine, at the time of release of the second thymidine block, replenished the intracellular pool of the administered polyamine and partially restored S-phase DNA synthesis, with a lag of 3-6 h. Almost complete restoration of DNA synthesis in cells depleted of polyamines was achieved by the addition of a polyamine to cultures at least 10 h before release of the second thymidine block. The lag in initiation of synchronous S-phase DNA synthesis was eliminated in these cells. It is concluded that reversal by polyamines of the deficiency in S-phase DNA synthesis, in polyamine-depleted HeLa cells, is a time-dependent process indicative of the necessity for the replenishment of replication factors or their organization into an active replication complex.
通过双胸腺嘧啶核苷阻断法使HeLa细胞同步于S期DNA合成。对来自对照培养物的细胞以及在同步培养基中添加了多胺生物合成抑制剂α-二氟甲基鸟氨酸的培养物中的多胺含量和S期DNA合成进行了比较。对照细胞在第二次胸腺嘧啶核苷阻断释放后3小时出现同步DNA合成峰值,在6 - 9小时出现多胺浓度最大值。含有抑制剂的培养物中的细胞DNA合成受到严重抑制,不含腐胺,仅含有痕量的亚精胺,而精胺含量降低了多达80%。在第二次胸腺嘧啶核苷阻断释放时,用多胺补充含有α-二氟甲基鸟氨酸的培养物,补充了所施用多胺的细胞内池,并部分恢复了S期DNA合成,有3 - 6小时的延迟。通过在第二次胸腺嘧啶核苷阻断释放前至少10小时向培养物中添加多胺,实现了多胺耗尽细胞中DNA合成的几乎完全恢复。这些细胞中同步S期DNA合成起始的延迟被消除。结论是,多胺对多胺耗尽的HeLa细胞中S期DNA合成缺陷的逆转是一个时间依赖性过程,表明有必要补充复制因子或将它们组织成一个活性复制复合体。