Waqar M A, Evans M J, Huberman J A
Nucleic Acids Res. 1978 Jun;5(6):1933-46. doi: 10.1093/nar/5.6.1933.
We have studied the effects of the nucleotide analogue, 2',3'-dideoxythymidine-5'-triphosphate (ddTTP) on replicative DNA synthesis in HeLa cell lysates. As previously demonstrated (1), such lysates carry out extensive DNA synthesis in vitro, at rates and in a fashion similar to in vivo DNA replication. We report here that all aspects of DNA synthesis in such lysates (total dNTP incorporation, elongation of continuous nascent strands, and the initiation, elongation, and joining of Okazaki pieces) are only slightly inhibited by concentrations of ddTTP as high as 100-500 micrometer when the dTTP concentration is maintained at 10 micrometer. This finding is consistent with the report by Edenberg, Anderson, and DePamphilis (2) that all aspects of replicative in vitro simian virus 40 DNA synthesis are also resistant to ddTTP. We also find, in agreement with Edenberg, Anderson, and DePamphilis (2), that DNA synthesis catalyzed by DNA polymerases beta or gamma is easily inhibited by ddTTP, while synthesis catalyzed by DNA polymerase alpha is very resistant. These observations suggest that DNA polymerase alpha may be the only DNA polymerase required for all aspects of cellular DNA synthesis.
我们研究了核苷酸类似物2',3'-双脱氧胸苷-5'-三磷酸(ddTTP)对HeLa细胞裂解物中复制性DNA合成的影响。如先前所示(1),此类裂解物在体外能进行广泛的DNA合成,其速率和方式与体内DNA复制相似。我们在此报告,当dTTP浓度维持在10微摩尔时,高达100 - 500微摩尔的ddTTP浓度仅轻微抑制此类裂解物中DNA合成的各个方面(总dNTP掺入、连续新生链的延伸以及冈崎片段的起始、延伸和连接)。这一发现与Edenberg、Anderson和DePamphilis(2)的报告一致,即体外复制性猿猴病毒40 DNA合成的各个方面也对ddTTP具有抗性。我们还发现,与Edenberg、Anderson和DePamphilis(2)一致,由DNA聚合酶β或γ催化的DNA合成很容易被ddTTP抑制,而由DNA聚合酶α催化的合成则具有很强的抗性。这些观察结果表明,DNA聚合酶α可能是细胞DNA合成各个方面所需的唯一DNA聚合酶。