Staudenbauer W L
Mol Gen Genet. 1976 Dec 8;149(2):151-8. doi: 10.1007/BF00332883.
The role of the three E. coli DNA polymerases (pol I, II, and III) in the replication of Col E1 DNA and other small plasmids with similar replicative properties was investigated in a soluble in vitro system prepared by freeze-thaw lysis of chloramphenicol-treated cells (Staudenbauer, 1976). Extracts from isogenic mutants of the polA, polB and polC gene loci deficient in pol I, II, and III respectively were examined for their replicative capacity. It was found that polA and polC extracts are deficient in the synthesis of supercoiled plasmid DNA, whereas the polB mutation has not effect. Deficient extracts could be complemented by addition of purified pol I and pol III holoenzyme. Analysis of the in vitro synthesized DNA by alkaline gradient centrifugation indicates that pol I is involved in an early step of the replication cycle whereas pol III is required at a later stage. These conclusions are confirmed by inhibition studies employing arabionsylcytosine triphosphate (aCTP) which is shown to interfere with pol III as well as pol II. The strong inhibitory effect of aCTP on plasmid replication is not influenced by the polB mutation and mimicks the effects of thermal inactivation of polC extracts. It is suggested that aCTP blocks plasmid ENA replication in vitro by interfering with pol III function
利用氯霉素处理过的细胞经冻融裂解制备的可溶性体外系统,研究了三种大肠杆菌DNA聚合酶(聚合酶I、II和III)在Col E1 DNA及其他具有相似复制特性的小质粒复制中的作用(施陶登鲍尔,1976年)。分别检测了来自polA、polB和polC基因位点的同基因缺失突变体提取物,这些突变体分别缺乏聚合酶I、II和III,检测其复制能力。发现polA和polC提取物在超螺旋质粒DNA合成方面存在缺陷,而polB突变则没有影响。通过添加纯化的聚合酶I和聚合酶III全酶,可以补充有缺陷的提取物。通过碱性梯度离心对体外合成的DNA进行分析表明,聚合酶I参与复制周期的早期步骤,而聚合酶III在后期发挥作用。这些结论通过使用三磷酸阿拉伯糖胞嘧啶(aCTP)的抑制研究得到了证实,结果表明aCTP会干扰聚合酶III以及聚合酶II。aCTP对质粒复制的强烈抑制作用不受polB突变的影响,并且模拟了polC提取物热失活的效果。有人提出,aCTP通过干扰聚合酶III的功能来阻断体外质粒DNA的复制。