Yoshida S, Suzuki R, Masaki S, Koiwai O
J Biochem. 1985 Aug;98(2):427-33. doi: 10.1093/oxfordjournals.jbchem.a135297.
It has been shown that DNA primase activity is tightly associated with 10S DNA polymerase alpha from calf thymus and that the ribonucleotide-dependent DNA synthesis is more sensitive to araCTP than DNA-primed DNA synthesis (Yoshida, S., et al. (1983) Biochim. Biophys. Acta 741, 348-357). Here we measured DNA primase activity using poly(dT) template or M13 bacteriophage single-stranded DNA template and primer RNA synthesis was coupled to the reaction by Escherichia coli DNA polymerase I Klenow fragment. By this method, the primer RNA synthesis can be measured independently of the associating DNA polymerase alpha. Using poly(dT) template, it was found that arabinosyladenine 5'-triphosphate (araATP) strongly inhibited DNA primase in competition with rATP. The apparent Ki for araATP was 21 microM and the ratio of Ki/Km (for rATP) was as low as 0.015. With poly(dI, dT) or M13 DNA, it was shown that araCTP also inhibited DNA primase in the similar manner. Product analysis using [alpha-32P]rATP showed that araATP inhibited the elongation of primer RNA. However, it is not likely that arabinosylnucleotides act as chain-terminators, since incubation of primer RNA with araATP did not abolish its priming activity. From these results, it is suggested that arabinosylnucleotide inhibits the initiation as well as elongation of Okazaki fragments in mammalian cells.
已表明,DNA引发酶活性与来自小牛胸腺的10S DNA聚合酶α紧密相关,并且核糖核苷酸依赖性DNA合成比DNA引发的DNA合成对araCTP更敏感(吉田,S.等人(1983年)《生物化学与生物物理学报》741卷,348 - 357页)。在这里,我们使用聚(dT)模板或M13噬菌体单链DNA模板测量DNA引发酶活性,并且通过大肠杆菌DNA聚合酶I Klenow片段将引物RNA合成与反应偶联。通过这种方法,可以独立于相关的DNA聚合酶α测量引物RNA合成。使用聚(dT)模板,发现阿拉伯糖基腺嘌呤5'-三磷酸(araATP)在与rATP竞争时强烈抑制DNA引发酶。araATP的表观Ki为21微摩尔,Ki/Km(对于rATP)的比值低至0.015。使用聚(dI,dT)或M13 DNA表明,araCTP也以类似方式抑制DNA引发酶。使用[α-32P]rATP进行的产物分析表明,araATP抑制引物RNA的延伸。然而,阿拉伯糖基核苷酸不太可能作为链终止剂,因为引物RNA与araATP一起温育并没有消除其引发活性。从这些结果表明,阿拉伯糖基核苷酸抑制哺乳动物细胞中冈崎片段的起始以及延伸。